CN1467901A - Flywheel generating, multifunctional system and manufacturing method and important component included in this system - Google Patents

Flywheel generating, multifunctional system and manufacturing method and important component included in this system Download PDF

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CN1467901A
CN1467901A CNA031431615A CN03143161A CN1467901A CN 1467901 A CN1467901 A CN 1467901A CN A031431615 A CNA031431615 A CN A031431615A CN 03143161 A CN03143161 A CN 03143161A CN 1467901 A CN1467901 A CN 1467901A
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magnetic
flywheel
winding
armature
magnetic pole
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CN100350717C (en
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吴震宇
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/16Mechanical energy storage, e.g. flywheels or pressurised fluids

Abstract

Flywheel generating multifunctional system comprising, a case subsystem, flywheel-bearing subsystem, energy conversion generating subsystem containing a multifunctional armature, power and propulsion subsystem. In the system, at least one of the following components is used, a flywheel including more than one pair of magnetic poles at the axial and radial positions respectively, a combination flywheel with enlarged magnetic pole excitation operating area, annular magnetic suspension bearing possessing constraining force of more than two two-dimensions, eccentric type ring shape magnetic suspension bearing, more than two multifunctional armatures using weak magnetic material as armature core, controllable movable armature winding with iron core made of soft magnetic material.

Description

Flywheel generating, multipotency system and manufacture method and be included in the important component of this system
Technical field:
The present invention relates to flywheel generating, multipotency system and manufacture method and be included in the important component of this system.
Flywheel generating, multipotency system are a kind of ideal, efficient, cleaning, are suitable for moving or fixing, and the mechanical energy high efficiency are converted into the system of electric energy.It can be used as flying wheel battery, also is applicable to energy storage, the power generation power system of various motor-driven things.Motor-driven thing is meant the machinery equipment that can turn round or move in this patent file; As the vehicles (motor vehicle, electric motor car, ship, aircraft, airship, aircraft), plant equipment, Electric Traction equipment, electric equipment etc.
Background technology:
1, generator system in the prior art, the generator of its core include rotor that permeability magnetic material constitutes or stator, armature winding, plain bearing etc., and the housing member that is made of cast iron, steel.Its transmission is a machine driving.It is very high to move the various losses that work together, and efficient is low.Fly wheel system in the prior art, comparatively advanced is energy storage system for magnetic floating flywheel at present, it is equivalent to a kind of special magnetic suspension rotary pole formula magneto.Fly wheel system comprises housing, permanent magnetism fly-wheel rotor, armature winding, magnetic suspension bearing and parts such as Electric Machine Control and output circuit.Its housing adopts the steel manufacturing, and the seal nipple of external vacuum extractor is arranged on the housing, and the housing internal gas pressure is near vacuum.Flywheel is made of permanent magnet, metal material, fiber reinforced plastic composite material.Make its magnetic suspension in housing by magnetic suspension bearing, be in the relative weight loss state,, when charging, drive permanent magnetism fly-wheel rotor high-speed rotation (limit speed is below 200,000 rev/mins), convert electrical energy into flywheel energy and store by armature and circuit for controlling motor.When discharge, then flywheel energy is converted to electric energy and outwards exports, its armature service position is fixed.Fly wheel system has reduced frictional dissipation because its flywheel rotating speed is high again in magnetic suspension state and vacuum working environment, so can store more energy, Energy Efficiency Ratio is very high.Because motor can improve the flywheel rotating speed by numerical value that increases the stator current frequency or the method that reduces number of pole-pairs, and the characteristics of motor instantaneous peak value power, make the flywheel high speed rotating in the fly wheel system reach quick charge and high-power output, and do not have chemical contamination, Energy Efficiency Ratio height, charging advantages such as use, all weather operations repeatedly fast, capable of circulation.But compare with existing secondary chemical storage batteries, the defective of existing fly wheel system maximum is that energy storage time is short, promptly during energy storage because of magnetic hysteresis loss etc., a large amount of flywheel energies of loss in vain; Its reason is: existing flywheel energy storage system, its permanent magnetism fly-wheel rotor are that rotary work is in the operational environment that magnetic hysteresis loss and eddy current loss take place; As the housing of armature core, steel formation and the parts that other permeability magnetic material constitutes; Above-mentioned parts energy storage phase and power supply phase all with the identical magnetic loss rate flywheel energy that dissipates continuously, its energy storage phase is starkly lower than the secondary chemical storage batteries.Its armature service position is fixed in addition, and produces magnetic hysteresis and eddy-current heating continuously and easily burn coil and should improve.Flywheel is at continuous dissipation kinetic energy of energy storage phase, be to adopt the air core coil winding in the prior art, absorb the flywheel energy of energy storage phase and power supply phase simultaneously, the energy storage phase is identical with the power output of power supply phase like this, not reaching flywheel needs the industrial requirements of the output electric energy of high-efficiency high-power in the power supply phase, even absorbed like this and can't be solved flywheel needs the output electric energy of high-efficiency high-power in the power supply phase problem, through patent retrieval, about patent application document solved housing that above-mentioned subproblem (1) constitutes steel be improved to constitute by diamagnetism and paramagnetic material that (2) be improved to fixing armature can the whole armature that moves.But the parts that diamagnetism and paramagnetic material constitute will produce magnetic hysteresis loss continuously, and other many loss factor, at the flywheel energy storage phase flywheel energy that will dissipate continuously, and this part flywheel energy loss still fails rationally to absorb, and kinetic energy wastes the flywheel energy storage phase in other words.
2, permanent magnet generator and magnetically levitated flywheel energy-storing and power-generating system in the prior art, the magnetic pole of its p-m rotor or flywheel rotor is distributed in one of axial location or radial position, magnetic pole arranges the position limited single, make its effective working excitation area be subjected to greatly restriction and the generating armature has only one, above defective makes its generating efficiency, power be subjected to very big restriction.
3, armature core adopts soft magnetic material usually in the prior art, and its magnetic hysteresis loss and eddy current loss of producing unshakable in one's determination greatly reduces generating efficiency.Superconductor has been found that or invents and use, but normal temperature superconduction magnetic core (including high magnetic conduction heart winding) and the high magnetic conduction heart of magnetic suspension winding are not invented yet.(the high magnetic conduction heart is meant: its permeability approaches or equals soft magnetic material, and the magnetic hysteresis loss and the eddy current loss of its generation are starkly lower than soft magnetic material, approach or equal non-ferromagnetic material).
4, the flywheel electricity generation system can only be exported electric energy in the prior art, the conversion efficiency limited about 65% of notice output electric energy, also could use behind the output electric energy through storage battery or power transformation, frequency conversion, and during the conversion lossy, motor-driven is lossy again, the magnetically levitated flywheel electricity generation system can not provide output function in the prior art, and output kinetic energy and electric energy selectable punction more can not be provided.Notice output kinetic energy conversion efficiency is up to more than 90%, and directly utilization does not need power consumption links such as power transformation, frequency conversion, motor-driven behind speed change gear, and cost is extremely low.
5, magnetic suspension bearing includes magnet ring in the prior art, and its single magnet ring can only produce radially or one of axial constraint power magnetic suspension rotor, and the restraining force that magnetic suspension rotor is produced the multiple degree of freedom forms constraint by a plurality of magnetic materials; Magnetic suspension bearing volume and quality are increased.
6, in the prior art magnetic suspension bearing to be operated in the rotating shaft vertical level also stable, but be operated in shaft parallel in horizontal plane because gravitational influence causes the rotating shaft disturbance.
7, in the prior art because flywheel (containing magnetically levitated flywheel) electricity generation system generating efficiency is also undesirable, reasons such as function singleness still can not get extensive use.
Summary of the invention:
Technical problem to be solved by this invention is: it is lower mainly to solve flywheel of the prior art (containing magnetically levitated flywheel) electricity generation system energy supply phase delivery efficiency, and the iron core of its armature winding is at flywheel energy storage phase magnetic hysteresis loss flywheel energy, the magnetic core generating efficiency of the armature winding that the employing non-ferromagnetic material constitutes is too low again, flywheel energy storage, the electricity generation system energy storage time is short, flywheel is at continuous dissipation kinetic energy of energy storage phase, even absorbed and can't be solved flywheel and needed the output kinetic energy of high-efficiency high-power and the problem of electric energy in the power supply phase, corresponding or have under the prerequisite of the above-mentioned function of mainly dealing with problems, solution is subjected to the direct acting member in flywheel rotating excitation magnetic field to produce the problem of magnetic hysteresis loss, solve its energy storage phase and short problem of power supply time phase, the magnetic pole that solves flywheel rotor distributes limited single, and the generating armature has only one, be subjected to the greatly problem of restriction, solve the problem of armature core magnetic hysteresis loss and eddy current loss, solve flywheel energy storage, electricity generation system can only be exported electric energy, the problem that function singleness and conversion efficiency are low, solution is included in the important component magnetic suspension bearing of this system, its single magnet ring can only to magnetic suspension rotor produce single restraining force and can not produce the multidimensional restraining force problem, solve magnetic suspension bearing and be operated in shaft parallel in horizontal plane, because gravitational influence causes the problem of rotating shaft disturbance, solve flywheel energy storage, the electricity generation system generating efficiency is also undesirable, and reasons such as function singleness still can not get the problem of extensive use.
More than technical problem to be solved by this invention promptly be task of the present invention: provide a kind of and include in flywheel energy supply phase delivery efficiency at least greater than the flywheel generating of the power conversion power generation sub-system of 75% multi-functional armature, the multipotency system, corresponding or have under the prerequisite of above-mentioned main task feature or function, be subjected to the direct acting member in flywheel rotating excitation magnetic field to remove armature outer and generally adopt solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, the energy storage phase of prolongation system and power supply phase, increase the magnetic pole distributing position of flywheel rotor, make multi-functional armature reach one or more, and generated output is increased, select to adopt high magnetic conduction heart winding to increase generated output, select to adopt the high magnetic conduction heart of magnetic suspension winding to increase generated output, select to adopt annular magnetic suspension bearing to reduce the volume and weight of magnetic suspension bearing with the above restraining force of two dimension, select to adopt centering type annular magnetic suspension bearing to reduce the volume and weight of magnetic suspension bearing and make the rotating shaft spin stabilization, select to adopt power output conversion device series to make it possess kinetic energy and electric energy output, apply the present invention to hydrogen manufacturing oxygen device widely, combustion hydrogen mixed type engine motor-car, combustion hydrogen mixed type powered maneuver ship, combustion hydrogen mixed type active flight device, many power electric motor cars, many power electrics ship, many active flights device, emergency power supply, flying wheel battery, generating equipment, motor vehicle, power-driven vessel, the space station, aerospace flight vehicle, plant equipment, be contained in air-powered car and electric motor car and combustion hydrogen-powered vehicle in the motor vehicle scope, be contained in passenger boat and freighter and naval vessels in the power-driven vessel scope, be contained in interior aircraft of aerospace flight vehicle scope and the application in the airship.
For solving the problems of the technologies described above, promptly solve and finish above-mentioned task, technical scheme of the present invention is as follows:
1, flywheel generating, multipotency system is characterized in that: this system includes following A, B, C, D, totally four subsystems at least;
A, housing subsystem; B, flywheel, bearing subsystem;
C, include in flywheel generating phase delivery efficiency at least greater than the power conversion power generation sub-system of 75% multi-functional armature;
D, power and driver sub-system;
2, it is characterized in that as the described flywheel generating of technical scheme 1, multipotency system: described A, B, C, D, totally four subsystems concrete feature respectively correspondence be contained in following A1 item, B1 item, B2 item, C1 item, D1 item, D2 item, E1 item;
Housing that A1, A item housing subsystem include and respective members feature include following 4 any 3 at least:
(1) in the housing subsystem, is subjected to direct acting housing in flywheel rotating excitation magnetic field and respective members to remove armature outer and generally adopts solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, (2) made except that armature outer adopts solid material by the housing of flywheel rotating excitation magnetic field indirectly-acting and respective members, (3) the housing impact resistance preferably and this system's flywheel fragment limit impulsive force adapt, (4) when system also includes power switching device, and when the power output includes sealing or vacuum magnetic drive, be subjected to direct acting housing in magnetic transmission magnetic field and respective members to adopt non-ferromagnetic material to make;
It is one of following 9 that the flywheel that B1, B item flywheel, bearing subsystem include includes at least:
(1) flywheel that includes a pair of or a pair of above magnetic pole in one of axial location or radial position, (2) one or more flywheel, and, include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions at least in its axial location or radial position and non axial non-radial position, (3) two or the compound flywheel more than two include a pair of magnetic pole at least, (4) the single novel flywheel that designs at " high magnetic conduction heart winding " specially, (5) the novel flywheel that designs at " the high magnetic conduction heart of magnetic suspension winding " specially, (6) include the flywheel of magnetic pole limit to the magnetic cup barrier, (7) include the flywheel of magnetic pole and magnetic guiding loop, (8) a kind of novel flywheel that enlarges the magnetic pole excitation work area, (9) a kind of compound flywheel that enlarges the magnetic pole excitation work area;
It is one of following 8 that the bearing subsystem that B2, B item flywheel, bearing subsystem include includes at least:
(1) annular magnetic suspension bearing subsystem, (4) controllable magnetic suspension bearing subsystem, (5) of the common magnetic suspension bearing subsystem in composite bearing subsystem, (2), (3) formed of magnetic suspension bearing and non-magnetic suspension bearing with the above restraining force of two dimension include centering type annular magnetic suspension bearing subsystem, (6) and include the magnetic suspension bearing limit is included super-conductive magnetic suspension bearing subsystem, (8) rolling or sliding bearing subsystem to magnetic suspension bearing subsystem, (7) of magnetic cup barrier;
C1, C item include in flywheel energy supply phase delivery efficiency at least greater than 75%, and have multi-functional armature that the power conversion power generation sub-system of the multi-functional armature that absorbs flywheel dissipation power function includes in the flywheel energy storage phase and include one of following 22 at least:
(1) includes the multi-functional armature of making the armature winding of controlled mobile core unshakable in one's determination of soft magnetic material, (2) include with soft magnetic material and make the armature winding of controlled mobile core unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of the air core or the vacuum heart, (3) include with soft magnetic material and make the armature winding of controlled mobile core unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of non-ferromagnetic material, (4) include with soft magnetic material and do controlled mobile armature winding unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of non-ferromagnetic material, (5) include with soft magnetic material and do controlled mobile armature winding unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of the air core or the vacuum heart, (6) include with soft magnetic material and make the combined multi-functional armature that becomes of controlled mobile armature winding unshakable in one's determination and " high magnetic conduction heart winding ", (7) include the multi-functional armature that enlarges the novel flywheel work of magnetic pole excitation work area corresponding to a kind of, (8) include the multi-functional armature that enlarges the compound flywheel work of magnetic pole excitation work area corresponding to a kind of, (9) include two plural multi-functional armatures making the heart of non-ferromagnetic material or air, (10) above-mentioned 1 to 9 described multi-functional armature one of at least with the combined multi-functional armature that becomes of " high magnetic conduction heart winding " multi-functional armature, (11) include with soft magnetic material and make the combined multi-functional armature that becomes of controlled mobile armature winding unshakable in one's determination and " the high magnetic conduction heart of magnetic suspension winding ", (12) include the multi-functional armature that superconductor constitutes winding and makes the heart of non-ferromagnetic material or air, (13) the multi-functional armature that includes " high magnetic conduction heart winding ", (14) above-mentioned 1 to 13 described multi-functional armature one of at least with the combined multi-functional armature that becomes of " the high magnetic conduction heart of magnetic suspension winding " multi-functional armature, (15) the multi-functional armature that includes " the high magnetic conduction heart of magnetic suspension winding ", (16) above-mentioned 1 to 15 one of at least the winding that includes of a described multi-functional armature be replaced by the multi-functional armature that tubulose heat radiation lead winding newly is combined into, (17) above-mentioned 1 to 16 described multi-functional armature one of at least with the combined multi-functional armature that becomes of heat abstractor, (18) include the two or more multi-functional armature that tubulose heat radiation lead constitutes winding and makes the heart of non-ferromagnetic material, (19) above-mentioned 1 to 18 one of at least the winding that includes of a described multi-functional armature arrange the new multi-functional armature that reaches the heat radiation purpose mutually with independent radiating tube again, (20) above-mentioned 1 to 19 one of at least the iron core that includes of a described multi-functional armature be replaced by and feed heat radiation by armature magnetic core sealed cavity and circulate material and reach the multi-functional armature that the heat radiation magnetic core of heat radiation purpose newly is combined into, (21) above-mentioned 1 to 20 described multi-functional armature one of at least with have the combined multi-functional armature that becomes of the device that drives flywheel and electricity generate function, (22) above-mentioned 1 to the 21 described multi-functional armature that multi-functional armature is combined into mutually more than; Above-mentioned 22 described multi-functional armatures all have in flywheel generating phase delivery efficiency at least at least greater than 75% function; The heart one refers in particular to armature core, magnetic core at this paper;
It is one of following 10 that power that D1, D item power and driver sub-system include or power set include at least:
(1) inherent down circulation of external natural power, (2) external non-natural power, (3) ideal operation ambient condition provides the inherent down circulation of power, (4) imperfect operational environment state to provide power, (5) free or optional power promptly only to establish power input or jockey at its subsystem, and power can be selected output conversion device, (10) power and electric energy input and output bi-directional conversion device by other peripheral apparatus decision, (6) power input and output bi-directional conversion device, (7) power output conversion device, (8) power and electric energy output conversion device, (9) power and electric energy;
It is one of following 7 that the driver sub-system that D2, D item power and driver sub-system include includes at least:
(1) includes the driver sub-system of mechanical drive mode, (2) include the driver sub-system of mode of electric drive, (3) include the driver sub-system of mechanical drive mode and mode of electric drive, (4) include the driver sub-system of the coaxial kind of drive that belongs to machinery or Electric Drive scope, (5) include belong to machinery or Electric Drive scope install the driver sub-system of the freewheel clutch kind of drive additional at drive disk assembly, (6) include the driver sub-system of the magnetic transmission kind of drive that belongs to machinery or Electric Drive scope, (7) include the driver sub-system that belongs to the closed of machinery or Electric Drive scope or the vacuum closed-type magnetic transmission kind of drive;
When E1, system were disturbed by external force, it is one of following 8 that A item housing subsystem can include, and B item flywheel, bearing subsystem can include following one of preceding 6:
(1) includes the composite bearing subsystem that magnetic suspension bearing and non-magnetic suspension bearing are formed, (2) include the device that can suppress the interference vibration, (3) include the device that to control the flywheel vibration, (4) include vibration absorber, (5) include the magnetic suspension vibration absorber, (6) include rolling or sliding bearing subsystem, (7) include when being changed limited angle or limited orientation in system, can both make the flywheel axis automatically restore to the device in former design angle or orientation, (8) include in system and be changed arbitrarily angled or during arbitrary orientation, can both make the flywheel axis automatically restore to the device in former design angle or orientation.
3, the manufacture method of a kind of flywheel generating, multipotency system, it is characterized in that: in system, be subjected to the direct acting member in flywheel rotating excitation magnetic field to remove armature outer and generally adopt solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, made except that armature outer adopts solid material by the member of flywheel rotating excitation magnetic field indirectly-acting; Employing has the power conversion power generation sub-system that includes greater than 75% the multi-functional armature system of manufacturing at least in flywheel generating phase delivery efficiency.
4, a kind of high magnetic conduction heart winding and its corresponding single novel flywheel is characterized in that: high magnetic conduction heart winding includes the high magnetic conduction heart and winding at least, the high magnetic conduction heart that is placed in the winding mainly is by shortening the length of magnetic circuit, and the magnetic resistance of its magnetic core and volume are reduced, improved the magnetic flux density of magnetic core and reduced magnetic hysteresis loss and eddy current loss, its winding should match with the high magnetic conduction heart and effectively shorten the length of magnetic circuit; Single novel flywheel include with the corresponding electromagnetic structure of high magnetic conduction heart winding be magnetic pole, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of high magnetic conduction heart winding, and the single i.e. magnetic pole excitation magnetic field space of a novel flywheel can independently hold high magnetic conduction heart winding at least and works alone; The high magnetic conduction heart includes one of following 4.1 5 at least, and winding includes one of following 4.2 5 at least; Single novel flywheel includes one of following 4.3 4 at least; 4.1, the high magnetic conduction heart includes one of following 5 at least:
(1) the high magnetic conduction heart, (3) that include soft magnetic material, the high magnetic conduction heart, (2) that include non-ferromagnetic material include by non-ferromagnetic material and the compound high magnetic conduction heart, (4) height of soft magnetic material lead air core, (5) can feed heat radiation and circulate the sealed cavity of material as the high magnetic conduction heart;
4.2, winding includes one of following 5 at least: (1) includes the winding of plain conductor, winding, (3) that (2) include banding pattern or flat type lead and includes refrigeration or the winding of heat abstractor, the winding that (4) include the superconductor lead, the winding that (5) include cellular conductor.
4.3, single novel flywheel is specially at the flywheel of " high magnetic conduction heart winding " design, which comprises at least one of following 4:
(1) single flywheel, (2) that includes a pair of or a pair of above magnetic pole in one of axial location or radial position is in its axial location or radial position and non axial non-radial position, and the single novel flywheel (3) that includes a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions includes the magnetic pole limit to the single novel flywheel of magnetic cup barrier, the single novel flywheel that (4) include magnetic pole and magnetic guiding loop at least; More than the magnetic pole excitation magnetic field space of 4 single novel flywheels can independently hold a high magnetic conduction heart winding at least and work alone.
5, a kind of magnetic suspension high magnetic conduction heart winding and its corresponding novel flywheel is characterized in that: the high magnetic conduction heart of magnetic suspension winding includes the high magnetic conduction heart and winding and corresponding magnetic levitation system V1 at least, and being placed on that high magnetic conduction pericardium in the winding contains mainly is by shortening the length of magnetic circuit; Also including less important is by shortening air gap length; And the magnetic resistance of its magnetic core and volume are reduced, and having improved the magnetic flux density of magnetic core and reduced magnetic hysteresis loss and eddy current loss, its winding should match with the high magnetic conduction heart and effectively shorten the length of magnetic circuit; Novel flywheel include at least flywheel T and with the magnetic levitation system V1 of the high magnetic conduction heart of the magnetic suspension winding magnetic levitation system V2 that is mutually related.
6, it is characterized in that as technical scheme 5 described a kind of magnetic suspension high magnetic conduction heart windings and its corresponding novel flywheel: the high magnetic conduction heart that the high magnetic conduction heart of magnetic suspension winding includes at least and the concrete feature of winding and corresponding magnetic levitation system V1 be corresponding respectively to be contained in one of following 6.1 5,6.2 one of 5,6.3 one of 2, the flywheel T that novel flywheel includes at least and be mutually related with the magnetic levitation system V1 of the high magnetic conduction heart of magnetic suspension winding that the concrete feature of magnetic levitation system V2 is corresponding respectively to be contained in one of following 6.4 5,6.5 one of 2;
6.1, the high magnetic conduction heart includes one of following 5 at least:
(1) the high magnetic conduction heart, (3) that include soft magnetic material, the high magnetic conduction heart, (2) that include non-ferromagnetic material include by non-ferromagnetic material and the compound high magnetic conduction heart, (4) height of soft magnetic material lead air core, (5) can feed heat radiation and circulate the sealed cavity of material as the high magnetic conduction heart;
6.2, winding includes one of following 5 at least: (1) includes the winding of plain conductor, winding, (3) that (2) include banding pattern or flat type lead and includes cooling or the winding of heat abstractor, the winding that (4) include the superconductor lead, the winding that (5) include cellular conductor;
6.3 item, corresponding magnetic levitation system V1 are installed in the high magnetic conduction heart of the magnetic suspension winding, corresponding magnetic levitation system V1 mainly be make the high magnetic conduction heart of magnetic suspension winding can be initiatively or passive magnetcisuspension float in the excitation space of its corresponding novel flywheel magnetic pole, it is one of following 2 that corresponding magnetic levitation system V1 includes at least:
(1) comprises corresponding magnetic levitation system V1, (2) and comprise corresponding magnetic levitation system V1 with more than one degree of freedom restraining forces with a kind of degree of freedom restraining force;
6.4 item, flywheel T are the flywheels that designs at " the high magnetic conduction heart of magnetic suspension winding " specially, flywheel T include with the corresponding electromagnetic structure of the high magnetic conduction heart of magnetic suspension winding be magnetic pole, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of the high magnetic conduction heart of magnetic suspension winding, and it is one of following 5 that flywheel T includes at least:
(1) one or more flywheel T in flywheel T, (2) that includes a pair of or a pair of above magnetic pole in one of axial location or radial position, and, include respectively in above-mentioned any two kinds of positions at least that a pair of or a pair of above magnetic pole, (3) two or the compound flywheel T more than two include a pair of magnetic pole at least, (4) include flywheel T, the flywheel T that (5) include magnetic pole and magnetic guiding loop of magnetic pole limit to the magnetic cup barrier in its axial location or radial position and non axial non-radial position;
6.5, magnetic levitation system V2 is installed near the position magnetic pole of flywheel T, the corresponding coupling of magnetic levitation system V2 with magnetic levitation system V1, it is one of following 2 that magnetic levitation system V2 includes at least:
(1) comprises corresponding magnetic levitation system V2, (2) and comprise corresponding magnetic levitation system V2 with more than one degree of freedom restraining forces with a kind of degree of freedom restraining force.
7, a kind of novel flywheel that enlarges the magnetic pole excitation work area is characterized in that: in axial location and the radial position and the non axial non-radial position of the novel flywheel that enlarges the magnetic pole excitation work area, in these three kinds of positions or any at least two kinds of positions include a pair of or a pair of above magnetic pole respectively, enlarge the magnetic pole excitation work area thereby reach, the particular location at its magnetic pole place correspondence at least is contained in one of following 5;
(1) includes a pair of or a pair of above magnetic pole respectively at axial location and radial position, (2) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, (3) in axial location and radial position and non axial non-radial position, include a pair of or a pair of above magnetic pole respectively in these three kinds of positions, (4) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of high magnetic conduction heart winding at least therein, it is worked in the magnetic pole and magnetic field of this position, (5) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of the high magnetic conduction heart of magnetic suspension winding at least therein, and it is worked in the magnetic pole and magnetic field of this position.
8, a kind of compound flywheel that enlarges the magnetic pole excitation work area is characterized in that: in the axial location of flywheel and radial position and non axial non-radial position and in the inside and outside two sides of the axial location of flywheel and the both side surface of radial position, in any at least two kinds of positions or at least the two sides of any one position include a pair of or a pair of above magnetic pole respectively, enlarge the magnetic pole excitation work area thereby reach, and constitute compound flywheel by two or more flywheels, the particular location at its magnetic pole place correspondence at least is contained in one of following 8;
(1) includes a pair of or a pair of above magnetic pole respectively at axial location and radial position, (2) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, (3) in axial location and radial position and non axial non-radial position, include a pair of or a pair of above magnetic pole respectively in these three kinds of positions, (4) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of high magnetic conduction heart winding at least therein, it is worked in the magnetic pole and magnetic field of this position, (5) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of the high magnetic conduction heart of magnetic suspension winding at least therein, it is worked in the magnetic pole and magnetic field of this position, (6) include a pair of or a pair of above magnetic pole respectively in the inside and outside two sides of axial location, (7) include a pair of or a pair of above magnetic pole respectively in the two sides of radial position, (8) in the inside and outside two sides of axial location and the both side surface of radial position, at least should be corresponding in the two sides of above-mentioned any one position with the magnetic structure of high magnetic conduction heart winding or the high magnetic conduction heart of magnetic suspension winding, it is worked in the magnetic pole and magnetic field of this position.
9, a kind of annular magnetic suspension bearing with the above restraining force of two dimension is characterized in that: the internal magnetic ring magnetcisuspension of this annular magnetic suspension bearing floats in the middle of the outer magnetic ring, inside and outside magnet ring all belongs to toroidal magnet, its toroidal magnet magnetic pole is outwards had angle radial radiation shape or by the center of circle in its toroidal magnet lateral angle radial radiation shape is arranged by the interior center of circle, be that the inboard of its toroidal magnet has angle restriction to become a magnetic pole and its toroidal magnet outside has angle restriction to become another magnetic pole, make it have two dimension or the above magnetic confinement power of two dimension.
10, a kind of centering type annular magnetic suspension bearing is characterized in that: the magnetic suspension bearing internal magnetic ring is concentric circular type, the magnetic suspension bearing outer magnetic ring that is fixed in casing or support is eccentric ring type, the internal magnetic ring magnetcisuspension that rotates floats in the middle of the fixing outer magnetic ring, the magnetic suspension bearing outer magnetic ring is that place, the earth's core is the thickest near ground, be that place, the earth's core is thin more away from ground more, be that the thickest top, its outer magnetic ring below is thin, overcome earth gravity and reduce bearing friction power thereby reach; Inside and outside magnet ring all belongs to toroidal magnet, and it is one of following 5 that the type of toroidal magnet includes at least:
(1) its magnetic pole toroidal magnet, (2) its magnetic pole of being axial distribution is radially-arranged toroidal magnet, (3) its magnetic pole and is toroidal magnet, (4) its magnetic pole that the angle axial distribution is arranged and is by the interior center of circle and the toroidal magnet, (5) of angle radial radiation shape outwards arranged by above 4 toroidal magnet that combines more than two or two.
11, a kind of flywheel generating, multipotency system include as technical scheme 1 described feature, it is characterized in that: also include one of 5 of following 11.1 power switching devices at least:
11.1, power switching device includes one of following 5 at least:
(1) power input and output bi-directional conversion device, (2) power output conversion device, (3) power and electric energy output conversion device, (4) power and electric energy can be selected output conversion device, (5) power and electric energy input and output bi-directional conversion device.
The present invention compared with prior art has following beneficial effect: one, the present invention has significantly improved at the flywheel rotating speed during greater than 6000r/min, flywheel generating phase delivery efficiency is at least greater than 75%, significantly improved the problem of the energy storage phase dissipation power that absorbs fly wheel system, make its when absorbing flywheel energy storage phase dissipation power hardly because of the other loss flywheel energy of magnetic hysteresis problem.
1, the present invention includes in flywheel generating phase delivery efficiency at least greater than 75%, and this technical characterictic that has the power conversion power generation sub-system of the multi-functional armature that absorbs flywheel dissipation power function in the flywheel energy storage phase is an essential characteristic, is that above 11 technical schemes should have or corresponding support.The multi-functional armature of indication of the present invention does not comprise all multi-functional armatures, and be meant that technical scheme 2 described C1 items include multi-functional armature at C item subsystem and include at least as described in the C1 item one of 1 to 22, statement: the described flywheel generating of the C item subsystem of technical scheme 1 phase delivery efficiency=(armature absorbed power/flywheel real output) 100%.Its generating phase delivery efficiency is that the flywheel rotating speed is during greater than 6000r/min greater than 75% condition of work at least; The flywheel real output is meant: flywheel during generating electricity because of the generating actual consumption power.Flywheel of the present invention generating, the described multipotency of multipotency system are to include at least: electric functions, storage flywheel energy function, power output function, electronic and electricity generate function, do one of flying wheel battery function.
2, when flywheel is in the energy storage phase (one of multipotency), ideal design is to wish that flywheel keeps kinetic energy that loss is reduced, absorb flywheel energy storage phase dissipation power simultaneously, the present invention be by: be subjected to the direct acting member in flywheel rotating excitation magnetic field to remove armature outer and generally adopt solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, the energy storage phase of prolongation system and power supply phase, selecting to adopt high magnetic conduction heart winding and the high magnetic conduction heart of magnetic suspension winding to increase generated output keeps flywheel energy to absorb flywheel energy storage phase dissipation power at flywheel energy storage phase reduction magnetic hysteresis loss and eddy current loss simultaneously, the magnetic hysteresis loss of selecting to adopt the flywheel that the magnetic pole limit is hindered to magnetic cup to reduce the pole pair housing promptly reduces the loss of flywheel energy storage phase, select to adopt annular magnetic suspension bearing with the above restraining force of two dimension or the volume and weight that centering type annular magnetic suspension bearing reduces magnetic suspension bearing to stablize the low flywheel energy storage phase loss of flywheel speed drop simultaneously, select to adopt and the magnetic suspension bearing limit to be reduced magnetic suspension shaft to the magnetic suspension bearing subsystem of magnetic cup barrier honour the magnetic hysteresis loss of housing and promptly reduce the loss of flywheel energy storage phase, one of adopt that the described C item of technique scheme 2 described C1 items subsystem includes 22 multi-functional armature all has in flywheel generating phase delivery efficiency at least greater than 75% function.(" selecting to adopt " in this article refers to and can select to adopt, and also can not adopt) two, the present invention have significantly improved the fail safe of flywheel (containing magnetically levitated flywheel) system.
1, the present invention selects to adopt high magnetic conduction heart winding or the high magnetic conduction heart of magnetic suspension winding to increase generated output to reduce magnetic hysteresis loss and eddy current loss simultaneously, has avoided because of eddy current loss heating burnout armature, has selected to adopt annular magnetic suspension bearing with the above restraining force of two dimension or volume and weight while flywheel rotating speed safety and stability that centering type annular magnetic suspension bearing reduces magnetic suspension bearing.
2, the present invention selects to adopt the composite bearing subsystem of (1) magnetic suspension bearing and non-magnetic suspension bearing composition, (2) common magnetic suspension bearing subsystem, (3) have the two dimension above restraining force annular magnetic suspension bearing subsystem, (4) controllable magnetic suspension bearing subsystem, (5) include centering type annular magnetic suspension bearing subsystem, (6) include the magnetic suspension bearing subsystem of magnetic suspension bearing limit to the magnetic cup barrier, (7) include super-conductive magnetic suspension bearing subsystem, (8) rolling or sliding bearing subsystem; More than 8 make one of at least the rotation of flywheel safety and stability.Three, the ground-breaking fly wheel system power output function of having invented of the present invention makes flywheel (containing magnetically levitated flywheel) system promptly have electric energy output and has the power output function again, and power output efficiency can reach more than 95%.1, to select to adopt power switching device to include at least one of following 5 in the present invention:
(1) power input and output bi-directional conversion device, (2) power output conversion device, (3) power and electric energy output conversion device, (4) power and electric energy can be selected output conversion device, (5) power and electric energy input and output bi-directional conversion device, reach the power output function.Four, the present invention invents and has designed high magnetic conduction heart winding and the high magnetic conduction heart of magnetic suspension winding, concurrent exposed installation meter a kind of and high magnetic conduction heart winding, the novel flywheel of the high magnetic conduction heart of magnetic suspension winding corresponding (single), significantly improved the electric energy delivery efficiency of magnetic bearing-supported flywheel system, peak efficiency reaches more than 85%.
1, high magnetic conduction heart winding mainly is the length by the shortening magnetic circuit, and the magnetic resistance of its magnetic core and volume are reduced, and has improved the magnetic flux density of magnetic core and has reduced magnetic hysteresis loss and eddy current loss; Cooling also can be installed heat radiation cooling device additional as need.
2, the high magnetic conduction heart of magnetic suspension winding includes the high magnetic conduction heart and winding and corresponding magnetic levitation system V1 at least, and being placed on that high magnetic conduction pericardium in the winding contains mainly is by shortening the length of magnetic circuit; Also including less important is by shortening air gap length; And the magnetic resistance of its magnetic core and volume are reduced; Improved the magnetic flux density of magnetic core and reduced magnetic hysteresis loss and eddy current loss, its winding should match with the high magnetic conduction heart and effectively shorten the length of magnetic circuit; Because the high magnetic conduction heart of magnetic suspension winding has been installed magnetic levitation system V1, magnetic levitation system V1 has been installed in the position near the magnetic pole of magnetically levitated flywheel T, it just can magnetcisuspension floats among the magnetic pole of magnetically levitated flywheel T and follows the limited change position of flywheel automatically, and it is very competent as need cooling also can install heat radiation cooling device additional to adapt to operational environment.
3, single novel flywheel (containing magnetically levitated flywheel) include with the corresponding electromagnetic structure of high magnetic conduction heart winding be magnetic pole, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of high magnetic conduction heart winding, reaches the purpose by the length that shortens magnetic circuit.Five, the design of the invention a kind of novel flywheel (containing magnetically levitated flywheel) and a kind of compound flywheel that enlarges the magnetic pole excitation work area that enlarges the magnetic pole excitation work area, its magnetic pole distributing position is wider, because a plurality of positions have magnetic pole and magnetic field excited work space, the corresponding electronic generating work of two or more multi-functional armatures have improved generating efficiency greatly.Six, the invention has designed the annular magnetic suspension bearing with the above restraining force of two dimension, the inboard of its toroidal magnet has angle restriction to become a magnetic pole and the outside has angle restriction to become another magnetic pole, make it have two dimension or the above magnetic confinement power of two dimension, the volume and weight that reduces magnetic suspension bearing is stablized the flywheel rotating speed simultaneously.Seven, the invention has designed centering type annular magnetic suspension bearing, the internal magnetic ring magnetcisuspension that rotates floats in the middle of the fixing outer magnetic ring, its magnetic suspension bearing outer shroud that is fixed in casing is centering type, the magnetic suspension bearing outer shroud is that place, the earth's core is the thickest near ground, be that place, the earth's core is thin more away from ground more, be that the thickest top, magnetic suspension bearing outer shroud below is thin, overcome earth gravity and reduce bearing friction power thereby reach.Eight, flywheel of the present invention generating, multipotency system in emergency power supply, flying wheel battery, generating equipment, hydrogen manufacturing oxygen device, motor vehicle, power-driven vessel, space station, aerospace flight vehicle, plant equipment, be contained in air-powered car and electric motor car and combustion hydrogen-powered vehicle in the motor vehicle scope, be contained in passenger boat and freighter and naval vessels in the power-driven vessel scope, be contained in aircraft in the aerospace flight vehicle scope and the application in the airship; It is widely used, and easy to usely can use energy storage big repeatedly, environmental protection.
Description of drawings:
Fig. 1 constitutes block diagram for flywheel generating, multipotency system basic technical features.
Fig. 2 is the sectional structure chart of technical scheme 1 described flywheel generating, multipotency system (hereinafter to be referred as fly wheel system).
Fig. 3 is the fly wheel system sectional structure chart that includes power and electric energy input and output bi-directional conversion device.
Fig. 4 includes the fly wheel system sectional structure chart of making the combined multi-functional armature that becomes of controlled mobile armature winding unshakable in one's determination and " high magnetic conduction heart winding " of soft magnetic material.
Fig. 5 is for including the further fly wheel system broken section structure chart of design of power and electric energy input and output bi-directional conversion device at Fig. 3.
Fig. 6 surveys the broken section structure chart for the three-dimensional axle of the high magnetic conduction heart of magnetic suspension winding.
Fig. 7 is the sectional structure chart that the electromagnetic structure of a kind of and high magnetic conduction heart winding that includes technical scheme 4,5,6, the corresponding rotor of magnetic suspension high magnetic conduction heart winding is compared with the electromagnetic structure of prior art rotor.
Fig. 8 is the sectional structure chart that includes the fly wheel system that a kind of centering type annular magnetic suspension bearing and plain bearing combine (and add machinery or Electric Drive scope install the driver sub-system of the freewheel clutch kind of drive additional at drive disk assembly).
Fig. 9 is the freewheel clutch A-A broken section structure chart at Fig. 8.
Figure 10 is the multi-functional armature that includes " the high magnetic conduction heart of magnetic suspension winding " and another fly wheel system sectional structure chart that can initiatively suppress the device of interference vibration.
Figure 11 is changed arbitrarily angled or during arbitrary orientation, can both makes the magnetically levitated flywheel axis automatically restore to a kind of fly wheel system sectional structure chart of the device in former design angle or orientation for including in system.
Figure 12 looks and sectional structure chart for a kind of master with annular magnetic suspension bearing of the above restraining force of two dimension.
Figure 13 looks and sectional structure chart for a kind of master of centering type annular magnetic suspension bearing.
Figure 14, Figure 15, Figure 16 are the electromagnetic structure that includes technical scheme 4,5,6 described a kind of and high magnetic conduction heart windings, the corresponding rotor of magnetic suspension high magnetic conduction heart winding multiplely analyses and observe primary structure figure.
Figure 17 is technical scheme 11 described a kind of flywheel generating of power switching device series, the formation block diagrams of multipotency system of including.
Figure 18 is that a kind of sectional flywheel generating, multipotency system of modular constitutes block diagram.
Figure 19 is that sectional flywheel generating, the multipotency system of another kind of modular constitutes block diagram.
Embodiment: the present invention is described in more detail below in conjunction with accompanying drawing and preferred embodiment.
(1) contrast accompanying drawing 1, this system configuration as shown in Figure 1, it is by A, housing subsystem; B, magnetically levitated flywheel, bearing subsystem; C, include in flywheel energy supply phase delivery efficiency, and have the power conversion power generation sub-system of the multi-functional armature that absorbs flywheel dissipation power function in the flywheel energy storage phase at least greater than 75%; D, power and driver sub-system constitute.The A that this fly wheel system includes, B, C, D, four subsystems are basic compositions that technical solution of the present invention 1 described flywheel generating, multipotency system include.
(2) first fly wheel system preferred embodiment, contrast accompanying drawing 2, if divide by technical scheme 1 described A, B, C, D, four subsystems: housing 1, sealed electrical input and output device 20, heat abstractor 21, a sealing enclosing cover 24 belong to the A subsystem; Specially at a kind of compound flywheel 63 (hereinafter to be referred as compound flywheel), bearing 8, magnetic pole 22, rotating shaft 23 that enlarges the magnetic pole excitation work area of " high magnetic conduction heart winding " design, belong to the B subsystem; High magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding 37, armature winding fixed support 38 belong to C subsystem (hereinafter to be referred as multi-functional armature); High magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding 37, vee-pulley 41 belong to the D subsystem; This is because multi-functional armature possesses the power conversion input/output function is arranged.(followingly respectively scheme each parts and device sequence number and Fig. 2 basically identical, respectively belong to A, B, four subsystems of C, D, similar can the intersection of some parts operating characteristic belongs to two subsystems simultaneously).
The structure of the housing 18 of native system as shown in Figure 2, it promptly is above A subsystem, consider that flywheel rotating excitation magnetic field can cause eddy current and magnetic hysteresis loss flywheel energy to housing, design is subjected to direct acting housing in magnetically levitated flywheel rotating excitation magnetic field and respective members to remove armature outer in the housing subsystem and generally adopts solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, made except that armature outer adopts solid material by the housing and the respective members of flywheel rotating excitation magnetic field indirectly-acting, radial position two sides at compound flywheel are furnished with magnetic pole 22, can also be furnished with magnetic pole 22 in non axial non-radial position (promptly with position axial or radial position inclination certain angle) according to the design needs, arrange magnetic pole 22 in non axial non-radial position, normally at the special-shaped flywheel design, or the design for bigger increase location arrangements magnetic pole 22; Because a plurality of positions have magnetic pole and magnetic field excited work space, the corresponding electronic generating work of two or more multi-functional armatures have improved generating efficiency greatly, corresponding technical scheme 8 described a kind of compound flywheels that enlarge the magnetic pole excitation work area.Its include with high magnetic conduction heart winding 10 and armature winding 37 corresponding electromagnetic structures be magnetic pole, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of high magnetic conduction heart winding (including single-phase or polyphase windings), improved the magnetic flux density of magnetic core, magnetic pole 22 selects to adopt permanent magnets can select to adopt the RE permanent magnetic alloy material, makes as the samarium-cobalt alloy or the Nd-Fe-Bo permanent magnet material of high energy product.High magnetic conduction heart winding 10 and armature winding 37 are connected with sealed electrical input and output device 20 and heat abstractor 21, reach the purpose of two-way input and output of electric energy and heat radiation.
(3) second fly wheel system preferred embodiments, contrast accompanying drawing 3, this system configuration includes: housing 1, vacuumize seal nipple 16, sealed electrical input and output device 20, heat abstractor 21, sealing enclosing cover 24 and belong to A item subsystem; The outer 2-1 of power input and output flywheel 4, novel magnetically levitated flywheel and internal layer 2-2, magnetic suspension bearing 5, spacing disturbance rejection bearing 6, spacing gap 7, magnetic suspension upper bearing (metal) 18, magnetic suspension lower bearing 19, magnetic pole 22, rotating shaft 23 belong to B item subsystem; High magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding 37, armature winding fixed support 38 belong to C item subsystem; Power input and output flywheel 4, high magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding 37, armature winding fixed support 38 belong to D item subsystem.
The housing 1 of native system seals, preferably be evacuated in the housing, the structure of housing as shown in Figure 3, it promptly is above A subsystem, consider that magnetically levitated flywheel rotating excitation magnetic field can cause eddy current and magnetic hysteresis loss flywheel energy to housing, design is subjected to direct acting housing in magnetically levitated flywheel rotating excitation magnetic field and respective members to remove armature outer in the housing subsystem and generally adopts solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, made except that armature outer adopts solid material by the housing and the respective members of magnetically levitated flywheel rotating excitation magnetic field indirectly-acting, the housing impact resistance preferably and this system's flywheel fragment limit impulsive force adapt, promptly greater than flywheel fragment limit impulsive force.During if design system belongs to, tick-over, magnetically levitated flywheel can select to adopt the cheap and good-quality solid material manufacturing that adapts with it guaranteeing the mechanical strength and the requiring under the prerequisite of rigidity of rotating part when middling speed is rotated.During if design system works in, high velocity environment (1.5 ten thousand go to 200,000 commentaries on classics), magnetically levitated flywheel adopts high-intensity fiber to be entwined the fibrous composite flywheel, to guarantee that rotating part meets the mechanical strength when the high speed rotating and the requirement of rigidity, in order to increase Rotary Inertia of Flywheel, select to adopt the becket that increases Rotary Inertia of Flywheel to be surrounded on magnetic pole 22 outer rings, suggestion selects to adopt the satisfactory steel manufacturing of hot strength, like this magnetic pole 22 is played the minimizing leakage flux, promptly become magnetic guiding loop, in physics, the magnetic line of force is got back to the principle that the S utmost point forms the closed-loop path from the N utmost point, and leakage flux also forms the closed-loop path.Increase magnetic guiding loop and make leakage flux reduce 70%, improve magnetic permeability simultaneously, and magnetic pole 22 outer rings limit is hindered to magnetic cup, make housing be subjected to the rotating excitation magnetic field intensity and reduce greatly, make housing and respective members can select to adopt inexpensive steel manufacturing.
Novel magnetically levitated as shown in Figure 3 flywheel includes outer 2-1 and internal layer 2-2, skin is a wheel rim, internal layer includes wheel hub and spoke, outer 2-1 preferably selects to adopt high-intensity fiber to be entwined according to circumferencial direction, even internal layer takes place broken like this, skin still can cushion centrifugal impulsive force with it confinement.Internal layer 2-2 includes the wheel hub and the spoke of flywheel, can select to adopt high-intensity fibre-reinforced composite material to constitute, internal layer can select to adopt steel alloy, alloy material etc., for example adopting allowable stress is the steel alloy of 2400 MPas-2900 MPa, because steel alloy has magnetic conductivity, so can omit the magnetic conduction limit to magnetic cup barrier ring, axial and radial position at novel magnetically levitated flywheel is furnished with magnetic pole 22, can also be furnished with magnetic pole 22 in non axial non-radial position (promptly with position axial or radial position inclination certain angle) according to the design needs, arrange magnetic pole 22 in non axial non-radial position, normally at the special-shaped flywheel design, or the design for bigger increase location arrangements magnetic pole 22; Especially: including a pair of or a pair of above magnetic pole respectively as technical scheme 8 described inside and outside two sides at axial location, promptly is to arrange that at the outer 2-1 of former novel magnetically levitated flywheel a pair or more of magnetic level is used for generating, all has the magnetic level inside and outside promptly again.Because a plurality of positions have magnetic pole and magnetic field excited work space, corresponding two or more multi-functional armature electric-generatings work have improved generating efficiency greatly, corresponding technical scheme 7 described a kind of novel flywheels that enlarge the magnetic pole excitation work area.Novel magnetically levitated flywheel is also corresponding technical scheme 4 described single novel magnetically levitated flywheels, its include with the corresponding electromagnetic structure of high magnetic conduction heart winding be magnetic pole, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of high magnetic conduction heart winding (including single-phase or polyphase windings), improved the magnetic flux density of magnetic core, magnetic pole 22 selects to adopt permanent magnets can select to adopt the RE permanent magnetic alloy material, makes as the samarium-cobalt alloy or the Nd-Fe-Bo permanent magnet material of high energy product.These permanent magnets preferably have and are beneficial to the shape or the corner angle of combining closely with flywheel internal layer 2-2, and for example the magnetic pole bottom is dovetail shaped, trapezoidal shape, stepped, multi-angular shape, these permanent magnets and has magnetic pole alternately, and promptly the magnetic pole N utmost point and the S utmost point are alternately arranged.For can also adopting many magnetic poles permanent-magnetic clamp, magnetic pole 22 easy for installation constitutes, consider when the flywheel rotating speed reaches 200,000 rev/mins, powerful centrifugal force may destroy and be positioned at the most inboard magnetic pole of flywheel 22, at this moment can adopt many magnetic poles permanent-magnetic clamp to constitute, high-intensity many magnetic poles permanent magnetism steel loop is adopted in suggestion, and mechanical strength strengthens like this.Dated especially: magnetic pole 22 not only includes permanent magnets or permanent-magnetic clamp, also can select to adopt excitation winding and pole core as magnetic pole according to actual needs, and corresponding parts and device also change thereupon.Stator high magnetic conduction heart winding 10 and the armature winding 37 corresponding with novel magnetically levitated flywheel rotor magnetic pole 22 are fixed on the armature winding fixed support 38, especially: only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at fixing high magnetic conduction heart winding two ends.High magnetic conduction heart winding 10 and armature winding 37 are connected with sealed electrical input and output device 20 and heat abstractor 21, reach the purpose of two-way input and output of electric energy and heat radiation.The energy high efficiency output in the flywheel energy supply phase of technical scheme 1 regulation must have function to be achieved in that two relatively independent stator armature windings of employing, make it generated output and double single armature winding, can export single-phase or three-phase or polyphase electric power according to the design needs, the high magnetic conduction heart of stator winding 10 also is a guaranteed conditions simultaneously.What technical scheme 1 was stipulated is achieved in that in flywheel energy storage phase absorption dissipation power function armature winding 37 preferably adopts non-ferromagnetic material to do the heart or air core, high magnetic conduction heart winding 10 is because generation magnetic hysteresis loss and eddy current loss are minimum, non-ferromagnetic material can be chosen wantonly or soft magnetic material is done the heart, the flywheel energy loss is minimum like this, can absorb the flywheel dissipation power again.Heat abstractor 21 is to realize heat radiation like this: the heat radiation of stator armature winding can solve by gas or liquid cools in tubulose dispels the heat lead; Xin Ying method is in addition, adopts independent radiating tube and winding to arrange to reach the heat radiation purpose or adopt to feed heat radiation by armature magnetic core sealed cavity and circulate material and reach the heat radiation purpose; Tubulose heat radiation lead or independent radiating tube or armature magnetic core sealed cavity radiating tube link to each other with the heat abstractor 21 that is sealed in housing.Magnetically levitated flywheel drives the i.e. charging of running and is achieved in that flywheel drives running and can adopt synchronous machine or asynchronous machine or switched reluctance machines, when for example adopting synchronous machine drives, the high magnetic conduction heart of the stator winding 10 of the synchronous electric flywheel of rare earth permanent magnet system is a three-phase symmetric winding, and is identical with the threephase asynchronous structure.Be stained with neodymium iron boron (NdFeB) magnet steel on the rotor, because need high speed rotating magnetic pole 22 to adopt a pair of magnetic pole, driver is the AC-DC-AC voltage source inverter, by the three-phase sine wave voltage of Sine Wave Pulse Width Modulation (SPWM) output frequency, voltage variable.Three-phase sine wave voltage produces symmetrical three-phase sine-wave electric current in three phase windings of the high magnetic conduction heart of stator winding 10, and produces rotating magnetic field in air gap.The angular velocity omega 1=2 π f/p of rotating magnetic field, wherein p is the motor logarithm.This rotating magnetic field and the magnetic pole effect of having magnetized drive rotor and rotating magnetic field and rotate synchronously and try hard to make stator and rotor magnetic field axial alignment.After the applied load torque, the rotor field axis will fall behind θ power angle of stator field axis, and load is bigger, and θ is also bigger, up to an extreme angles θ m, till the motor step-out.This shows: synchronous motor is in operation, or rotating speed and the strict proportional rotation of frequency, otherwise with regard to the step-out stall.So its rotating speed and rotating magnetic field are synchronous.Its static receiver error is zero; Under load disturbance, just power angle θ changes, and does not cause rotation speed change, and its response time is real-time.This is that other governing system is not accomplished.Because it can only could start under frequency edges up situation, so also be unsuitable for quick startup, preferably adopt the variable frequency starting frequency that raises gradually, the flywheel rotor rotating speed is raise gradually.Can certainly adopt the electronic generator drive of brushless direct-current autocontrol, their feature all is not need to start winding.Because the excitation of brushless electric-generator derives from permanent magnet, need not draw exciting current from electrical network the asynchronous machine so do not resemble; Owing to do not have alternating flux in the rotor, not only there is not copper loss but also do not have iron loss on its rotor, so efficient is than high by about 10% with capacity asynchronous motor, in general the power of brushless electric one generator energy pointer (η cos θ) ratio is with the high 12%-20% of capacity threephase asynchronous.The permanent magnet of the brushless electric-generator of middle low capacity, now rare-earth Nd-Fe-B (Nd-Fe-B) materials that adopt high energy products more.Therefore the volume ratio of rare-earth permanent magnet brushless motor generator has been dwindled a grade with the capacity threephase asynchronous.
Hold subsystem and include magnetic suspension bearing 5 and magnetic suspension upper bearing (metal) 18 and magnetic suspension lower bearing 19.Magnetic suspension bearing can adopt one of electromagnetic type magnetic suspension bearing, super-conductive magnetic suspension bearing, permanent magnetism type magnetic suspension bearing and technical scheme 8 described a kind of annular magnetic suspension bearings with the above restraining force of two dimension.For suppressing the flywheel disturbance spacing disturbance rejection bearing 6 is installed, and is provided with spacing gap 7, when the normal high speed rotating of flywheel, do not contact, just can contact when disturbed by external force with spacing disturbance rejection bearing 6 with spacing disturbance rejection bearing 6.Above-mentioned spacing disturbance rejection bearing 6 parts such as grade have met technical scheme 2 described F1 items: include the device that can suppress interference vibration, include the device that can control the magnetically levitated flywheel vibration, include one of feature of vibration absorber.The standing part of magnetic suspension bearing preferably fixedly contacts with housing 1 and is beneficial to heat radiation.(second fly wheel system preferred embodiment selected material principle and magnetic guiding loop magnetic cup barrier principle, select to adopt flywheel ectonexine material and magnetic pole 22, select to adopt realization technical scheme 7 described a kind of novel magnetically levitated flywheels that enlarge the magnetic pole excitation work area, select to adopt realization technical scheme 4 described a kind of high magnetic conduction heart winding and its corresponding single novel magnetically levitated flywheels, realize technical scheme 1,2 the regulation in flywheel energy supply phase delivery efficiency at least greater than 75%, and has the flywheel of absorption dissipation power function in the flywheel energy storage phase, and the scheme of inhibition flywheel disturbance, can be following each each parts of figure embodiment and device selection employing, same kind no longer describes in detail).
Power input and output flywheel 4 is fixedlyed connected with rotating shaft 23, can have power input and output function individually or simultaneously, this system only is provided with power input and output flywheel 4 as shown in Figure 3, promptly free or optional power is promptly only established the power input or is connected flywheel 4 devices in its system, and concrete device for carrying out said is determined by other peripheral apparatus.The power transmission mode of power input and output flywheel 4 belongs to the magnetic drives mode, is contactless magnetic drives mode in particular.Magnetic pole 22 on the power input and output flywheel 4 selects to adopt permanent magnets can select to adopt the RE permanent magnetic alloy material, makes as the samarium-cobalt alloy or the Nd-Fe-Bo permanent magnet material of high energy product.These permanent magnets have magnetic pole alternately, and promptly the magnetic pole N utmost point and the S utmost point are alternately arranged.Constitute for magnetic pole 22 easy for installation can also adopt many magnetic poles permanent-magnetic clamp, mechanical strength strengthens like this.
(4) the 3rd fly wheel system preferred embodiments, contrast accompanying drawing 4, this system configuration includes: housing 1, vacuumize seal nipple 16, detect flywheel rotational speed devices 17-1, sealed electrical input and output device 20, heat abstractor 21, sealing enclosing cover 24 belong to A item subsystem; The outer 2-1 of novel magnetically levitated flywheel and internal layer 2-2, magnetic suspension bearing 5, spacing disturbance rejection bearing 6, spacing gap 7, magnetic suspension upper bearing (metal) 18, magnetic suspension lower bearing 19, magnetic pole 22, rotating shaft 23 belong to B item subsystem; High magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding 37, armature winding fixed support 38, the controlled traversing carriage 38-1 of armature winding, the controlled mobile drive deivce 59 of armature belong to C item subsystem; High magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding 37, armature winding fixed support 38, the controlled traversing carriage 38-1 of armature winding, the controlled mobile drive deivce 59 of armature belong to D item subsystem.
The 3rd embodiment selects material principle and magnetic guiding loop magnetic cup barrier principle, select to adopt flywheel ectonexine material and magnetic pole 22, realize technical scheme 1,2 regulations in flywheel energy supply phase delivery efficiency at least greater than 75%, and has the flywheel of absorption dissipation power function in the flywheel energy storage phase, flywheel drives running and adopts which kind of motor, and the scheme of inhibition flywheel disturbance, with second the described class of embodiment department.
The controlled traversing carriage 38-1 of armature winding connects control (1) to include the armature winding of making controlled mobile core unshakable in one's determination of soft magnetic material, (2) include with soft magnetic material and do one of controlled mobile armature winding unshakable in one's determination, the controlled mobile drive deivce 59 of armature can also add the balance drive unit as required, make stable equilibrium when mobile, the controlled mobile drive deivce 59 of armature includes controlled armature mobile motor drive unit, controlled armature moves the electromagnetic clutch drive unit, controlled armature moves fluid pressure drive device, controlled armature moves actuating device of atmospheric pressure, controlled armature moves the chain transmission drive, controlled armature moves one of magnetic transmission drive.Above drive unit is known by the secondary technology personnel, and is so this specification is only lifted exemplary, exhaustive no longer one by one.
(5) the 4th fly wheel system preferred embodiments, contrast accompanying drawing 5, these two system configurations include jointly: sealing enclosing cover 24, kinetic energy output housing 31 belong to A item subsystem; Power input and output flywheel 4, magnetic suspension bearing 5, spacing disturbance rejection bearing 6, spacing gap 7, magnetic pole 22, rotating shaft 23 belong to B item subsystem; Power input and output flywheel 4, power input and output conversion and receiving system 32, power input and output rotating shaft 33, control power input and output conversion and receiving system mobile device 34, speed change input/output unit 28, controlled kinetic energy input and output and clutch overload protection arrangement 30 belong to D item subsystem; Power input and output flywheel 4, power input and output conversion and receiving system 32, power input and output rotating shaft 33, control power input and output conversion and reception and mobile device 34, speed change input/output unit 28, controlled kinetic energy input and output and clutch overload protection arrangement 30 belong to power switching device.Contrast accompanying drawing 6 its each parts and device sequence number respectively belong to A, B, four subsystems of C, D and power switching device and meet technical scheme 1 and technical scheme 10 described technical characterictic requirements.The 4th embodiment selects material principle and magnetic guiding loop magnetic cup barrier principle, select to adopt flywheel ectonexine material and magnetic pole 22, realize technical scheme 1,2 regulations in flywheel energy supply phase delivery efficiency at least greater than 75%, and have the flywheel of absorption dissipation power function in the flywheel energy storage phase, flywheel drives running and adopts scheme and first embodiment of which kind of motor roughly the same described.
Consider the centrifugal force of the high speed rotating of flywheel, install power input and output flywheel additional novel magnetically levitated flywheel 2-1 skin, also power input and output flywheel also can be designed to be analogous to novel magnetically levitated flywheel 2-1 layer structure, improved the security and stability of power input and output bi-directional conversion, be about to power input and output flywheel design and become power input and output conversion and receiving system 32, both structures are led and are put.Controlled kinetic energy input and output and clutch overload protection arrangement 30 have the function that control power input and output conversion and receiving system 32 move, produce the non-contact type magnetic transmission by mobile the making it of controlling it with power input and output flywheel 4, thereby the high efficiency transmission of flywheel energy is come out, drive peripheral system running work by clutch overload protection and speed change output device 28 again, and magnetically levitated flywheel energy storage in the prior art, electricity generation system can not provide the output kinetic energy function, and output kinetic energy and electric energy selectable punction more can not be provided; Notice output kinetic energy conversion efficiency is up to more than 90%, and directly utilization does not need power consumption links such as power transformation, frequency conversion, motor-driven behind speed change gear, and cost is extremely low.When not needing kinetic energy controlled kinetic energy input and output of when output and the 30 control power input and output conversions of clutch overload protection arrangement and receiving system 32 to leave power input and output flywheel 4, kinetic energy output this moment stops and no longer absorbing flywheel energy.When adopting the Induction Motor-Driven flywheel to rotate the another kind of new method of energy storage for meeting special design needs, power input and output flywheel 4 is adapted as cage rotor, power input and output conversion and receiving system 32 are adapted as the stator core winding, three-phase current feeds its winding and produces rotating magnetic field, just can drive flywheel rotation energy storage, in like manner also can be used for generating output.Contrast accompanying drawing 6, power switching device includes power input and output flywheel 4 and members such as power input and output conversion and receiving system 32, this is wherein a kind of power switching device just, be other machinery or Electric Drive power switching device according to designing the structure that needs can change above-mentioned power switching device (as sequence number 4,32,33,34,30,28), changing.So it can also include: the drive unit of the coaxial kind of drive, gear drive conversion equipment, chain gear transmission conversion equipment, belt wheel transmission conversion equipment, shaft coupling transmission conversion equipment, clutch transmission conversion equipment etc. belong to one of power switching device of mechanical drive mode and mode of electric drive scope.Its correspondence technical scheme 2 described D item subsystems and technical scheme 10 described power switching device technical characterictic requirements.Above power switching device is known by the secondary technology personnel, so that this specification is lifted its exemplary is exhaustive no longer one by one.
Controlled kinetic energy output and clutch overload protection arrangement 30 can also add the balance mobile device; make stable equilibrium when mobile, controlled kinetic energy output and clutch overload protection arrangement 30 include control power input and output conversion and receiving system 32 mobile motor drive units; control power input and output conversion and receiving system 32 move the electromagnetic clutch drive unit; control power input and output conversion and receiving system 32 move fluid pressure drive device; control power input and output conversion and receiving system 32 move actuating device of atmospheric pressure control power input and output conversion and receiving system 32 moves the chain transmission drive; control power input and output conversion and receiving system 32 move magnetic transmission drive (belonging to the electromagnetic clutch scope); control power input and output conversion and one of receiving system 32 mobile screws or drive link transmission drive.Above drive unit is known by the secondary technology personnel, and is so this specification is lifted its exemplary, exhaustive no longer one by one.
(6) the 5th fly wheel system preferred embodiments, contrast accompanying drawing 8 and accompanying drawing 9, this system configuration includes as shown in Figure 8: housing 1, sealed electrical input and output device 20, heat abstractor 21, a sealing enclosing cover 24 belong to A item subsystem; Magnetically levitated flywheel 2, plain bearing 8, centering type annular magnetic suspension bearing 9, magnetic pole 22, rotating shaft 23, belong to B item subsystem; High magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding fixed supporting seat 38-2 belong to C item subsystem; Vee-pulley 41, freewheel clutch 42 belong to D item subsystem.Accompanying drawing 9 is the vee-pulley 41 of accompanying drawing 8 and the A-A broken section structure chart of freewheel clutch 42, contrast accompanying drawing 9: freewheel clutch is that wheel 53, rotating shaft 23, strong groove and strong 25 belong to D item subsystem in the outer sour jujube circle 50 of vee-pulley, ratchet 51, elasticity ejector pin 52, the freewheel clutch.The 7th embodiment selects material principle and magnetic guiding loop magnetic cup barrier principle, select to adopt flywheel material and magnetic pole 22, realize technical scheme 1,2 regulations in flywheel energy supply phase delivery efficiency at least greater than 75% and have the flywheel of absorption dissipation power function in the flywheel energy storage phase, adopt the scheme of centering type annular magnetic suspension bearing 9 roughly the same described with the 5th embodiment with first.
Contrast accompanying drawing 8 and accompanying drawing 9 drag magnetically levitated flywheel 2 rotary works by vee-pulley 41 input power, make high magnetic conduction heart winding 10 high efficiency generatings, can export single-phase or three-phase or polyphase electric power according to the design needs, in order to reduce the frictional force of 23 pairs of plain bearings 8 of rotating shaft, use centering type annular magnetic suspension bearing 9 to reach the effect of countershaft 23 magnetic suspension and centripetal force, make it alleviate frictional force and gravity.Make system improve generating efficiency.This system is based on the high efficiency generating, and delivery efficiency is at least greater than 75%, and Gao Shikeda is more than 85%.Can certainly have the flywheel of absorption dissipation power function in the flywheel energy storage phase.Vee-pulley 41 also can replace with one of mechanical driving devices such as gear, sprocket wheel, shaft coupling, clutch.The effect that is installed in the freewheel clutch 42 in the vee-pulley 41 is when external input power rotating speed is higher than rotating shaft 23 rotating speeds, external input power drives vee-pulley 41 and rotating shaft 23 and magnetically levitated flywheel 2 rotations, when external input power rotating speed is lower than rotating shaft 23 rotating speeds, freewheel clutch 42 related vee-pulley 41 skids, thus keep rotating shaft 23 high rotating speeds.Reach the purpose that makes the 10 high efficiency generatings of high magnetic conduction heart winding.Freewheel clutch has polytype, and personnel are known by secondary technology, and is so this specification is lifted its exemplary, exhaustive no longer one by one.
The 5th embodiment selects material principle and magnetic guiding loop magnetic cup barrier principle, select to adopt flywheel material and magnetic pole 22, select to adopt realization technical scheme 4 described a kind of high magnetic conduction heart winding and its corresponding single novel magnetically levitated flywheels, realize technical scheme 1,2 regulations in flywheel energy supply phase delivery efficiency at least greater than 75%, and have the scheme that absorbs flywheel dissipation power function in the flywheel energy storage phase, roughly the same described with first embodiment.
(7) the 6th fly wheel system preferred embodiments, contrast accompanying drawing 10, this system configuration includes: housing 1, vacuumize seal nipple 16, detect flywheel disturbance and rotational speed devices 17, sealed electrical input and output device 20, heat abstractor 21, sealing enclosing cover 24 belong to A item subsystem; The skin 26 of novel magnetically levitated flywheel T and internal layer 27, magnetic suspension bearing 5, magnetic levitation system V2 13, magnetic levitation system V1 12, active disturbance rejection device 14, back-moving spring 40, active disturbance rejection bearing 14-1, control disturbance rejection bearing mobile device 15, magnetic suspension upper bearing (metal) 18, magnetic suspension lower bearing 19, magnetic pole 22, rotating shaft 23 belong to B item subsystem; The high magnetic conduction heart of magnetic suspension winding 11, sealed electrical input and output device 20, heat abstractor 21, armature winding 37 belong to C item subsystem; High magnetic conduction heart winding 10, sealed electrical input and output device 20, heat abstractor 21, armature winding 37 belong to D item subsystem.
The 6th embodiment selects material principle and magnetic guiding loop magnetic cup barrier principle, select to adopt flywheel ectonexine material and magnetic pole 22, realize technical scheme 1,2 regulations in flywheel energy supply phase delivery efficiency at least greater than 75%, and has the flywheel of absorption dissipation power function in the flywheel energy storage phase, flywheel drives the scheme which kind of motor running adopts, roughly the same described with second embodiment, no longer describe in detail.
Detect flywheel disturbance and rotational speed devices 17 and include position detecting element, as photoelectric cell, for example detect the flywheel rotational speed devices: a kind of device that solid surface velocity changes of measuring is installed, and it is provided with two light path systems that length is different, and the light that light source sends passes through them respectively.Successively be mapped to measured surface with time difference τ value, when they when interference system is returned on the surface, use the polarisation of light characteristic, make it to arrive photodetector through the path opposite separately with input path length, realize the aplanatism interference so eliminate time difference τ, change of interference fringes is proportional to the variation of superficial velocity, the excursion that tests the speed 3m/s-1000m/s.For example detect the flywheel disturbance device: light-emitting tube at one end is installed, at the other end light adopter is installed, not hindering light when flywheel normally rotates passes through, flywheel hinders light when being enough to disturb the disturbance of armature work to be passed through, its disturbing signal is transferred to the peripheral hardware control system, after identification, the peripheral hardware control system drives initiatively by control disturbance rejection bearing mobile device 15, and disturbance rejection device 14 contacts with disturbance rejection guide vane end stop 14-2, the disturbance of restriction flywheel, when the vibration detection device that is provided with in addition up to the peripheral hardware control system sends the signal of the disturbance that lifts restrictions, promptly by the control disturbance rejection bearing mobile device 15 disturbance work that lifts restrictions.
Contrast accompanying drawing 10, the high magnetic conduction heart of magnetic suspension winding 11 is in the air gap that repels mutually of the magnetic pole same polarity that relies on magnetic levitation system V1 12 magnetcisuspensions to float on the magnetic levitation system V2 13 that the magnetic pole 22 in the internal layer 27 of novel magnetically levitated flywheel inlays, the high magnetic conduction heart of magnetic suspension winding 11 just can be followed the disturbance displacement of novel magnetically levitated flywheel like this, and synchronous shift bumps to prevent the high magnetic conduction heart of flywheel and magnetic suspension winding 11.The security and stability of system is greatly improved like this.Magnetic pole 22 can shorten relatively with the gas length of the high magnetic conduction heart of magnetic suspension winding 11 like this.Consider the disturbance displacement of the high magnetic conduction heart of magnetic suspension winding 11, the stube cable of corresponding sealed electrical input and output device 20 adopts and flexibly connects, the connection radiating tube of heat abstractor 21 adopts and flexibly connects, and should adopt to feed heat radiation by armature magnetic core sealed cavity and circulate material and reach the multi-functional armature that the multi-functional armature of heat radiation purpose and independent radiating tube and winding arrangement reach the purpose of dispelling the heat.
Contrast accompanying drawing 10: control disturbance rejection bearing mobile device 15 is that control disturbance rejection bearing moves the electromagnetic clutch drive unit, when obtaining detecting the flywheel disturbing signal that flywheel disturbance and rotational speed devices 17 send, peripheral system makes control disturbance rejection bearing move electromagnetic clutch drive unit magnetisation, magnetic attachment active disturbance rejection device 14 and active disturbance rejection bearing 14-1 contact initiatively anti-flywheel disturbance with rotating shaft 23.Control disturbance rejection bearing mobile device 15 as required and can also add the balance drive unit, make stable equilibrium when mobile, control disturbance rejection bearing mobile device 15 includes control disturbance rejection bearing mobile motor drive unit, control disturbance rejection bearing and moves electromagnetic clutch drive unit, control disturbance rejection bearing and move fluid pressure drive device, control disturbance rejection bearing and move that actuating device of atmospheric pressure, control disturbance rejection bearing move the chain transmission drive, control disturbance rejection bearing moves one of magnetic transmission drive.Above drive unit is known by the secondary technology personnel, and is so this specification is only lifted exemplary, exhaustive no longer one by one.
Contrast accompanying drawing 10: the high magnetic conduction heart of magnetic suspension winding 11 can select to adopt position detecting element, can select to adopt phase-detecting element.If because have only position detecting element in the system, as photoelectric cell or Hall element, because their hysteresis effect, rotor can't make the electronic drive circuit operate as normal with respect to the position of stator winding during down to high speed in the time of can't accurately determining high speed rotating.Among the high magnetic conduction heart of magnetic suspension winding 11, phase-detecting element is housed,, thereby can controls the electric drive circuit, make it operate as normal by it because it can detect the phase difference value between stator winding and the rotor exactly.Like this, utilize position detecting element to realize motor start-up and low speed (below 30,000 rev/mins) running, and after rotating speed raises, be automatically converted to phase control, thereby guaranteed that magnetic bearing-supported flywheel system is the high-speed cruising of brush-less Dc motor-generator.
(8) the 7th fly wheel system preferred embodiments; contrast accompanying drawing 11; this system configuration includes: shielded flywheel generating, multipotency system 35, sealed electrical input and output device 20, flexible sealing electricity I/O cable 57, A item subsystem includes: make system automatically restore to original state arc orbit shell 54, universal anti-shimmy damping roller 55, make system automatically restore to original state arc orbit enclosing cover 56, be positioned at material 59, the vibration absorber 58 of the shimmy damping of anti-system of circular arc cavity.
Contrast accompanying drawing 11; the generating of shielded flywheel, multipotency system 35 are mounted in the circular arc cavity that the arc orbit enclosing cover 56 that makes system automatically restore to the arc orbit shell body 54 of original state and make system automatically restore to original state constitutes; principle is the mass that respective quality is installed in the bottom of system 35; make its bottom quality overweight middle part and top; promptly the bottom is supported under the rotation at universal anti-shimmy damping roller 55 all the time, and the bottom automatic capturing is a horizontal plane towards ground level.Promptly be to liken the tumbler that center of gravity is positioned at the bottom in other words, no matter change to the optional position, can restoring to the original state promptly automatically, the bottom automatic capturing is a horizontal plane towards ground level.Universal anti-shimmy damping roller 55 should have shimmy damper, prevents shielded flywheel generating, multipotency system 35 with damping mode,, takes place shimmy and vibrates or rock when ground level is horizontal plane at the bottom automatic capturing.Flexible sealing electricity I/O cable 57 should have corresponding hot strength.
The technical characterictic correspondence of the 7th fly wheel system preferred embodiment the E1 item of technical scheme 2 described: include when being changed limited angle or limited orientation in system, can both make the magnetically levitated flywheel axis automatically restore to former design angle or orientation device, include and be changed arbitrarily angled or during arbitrary orientation in system, can both make the magnetically levitated flywheel axis automatically restore to former design angle or orientation device, include the technical characterictic of vibration absorber.
(9) the 8th fly wheel system preferred embodiments, contrast accompanying drawing 12, a kind of annular magnetic bearing structure with the above restraining force of two dimension as Figure 12-A, Figure 12-B, Figure 12-C, shown in, it includes: interior toroidal magnet 49-1, outer ring magnet 49-2, limit to magnetic barrier layer 46, magnetic suspension gap 47.
Contrast accompanying drawing 12-A, Figure 12-B, Figure 12-C: interior toroidal magnet 49-1 magnetcisuspension floats in the middle of the outer ring magnet 49-2, the magnetic pole of its toroidal magnet is by the interior center of circle outwards to be had angle radial radiation shape or by the center of circle in the ring lateral angle radial radiation shape is arranged, be that the inboard of its toroidal magnet has angle restriction to become a magnetic pole and the outside has angle restriction to become another magnetic pole, make it have two dimension or the above magnetic confinement power of two dimension.According to the design needs, a kind of toroidal magnet with annular magnetic suspension bearing of the above restraining force of two dimension of accompanying drawing 12 can be permanent magnet, electromagnet, superconducting electromagnet.Limit is magnetic hysteresis loss and interference of avoiding unnecessary to magnetic barrier layer 46.This magnetic suspension bearing belongs to the important component of fly wheel system.Its correspondence technical scheme 9 described technical characterictics.
(10) the 9th fly wheel system preferred embodiments, contrast accompanying drawing 13, a kind of centering type annular magnetic bearing structure is shown in Figure 13-A, Figure 13-B, and it includes: interior toroidal magnet 9-1, outer ring magnet 9-2, limit are to magnetic barrier layer 46, magnetic suspension gap 47.Its correspondence technical scheme 9 described technical characterictics.
Contrast accompanying drawing 13-A, Figure 13-B: outer ring magnet 49-2, the magnetic suspension bearing outer shroud that promptly is fixed in casing is centering type, inboard departing from mutually with the center of circle in the outside of outer shroud is centering type, the magnetic suspension bearing outer shroud is that place, the earth's core is the thickest near ground, be that place, the earth's core is thin more away from ground more, be that the thickest top, magnetic suspension bearing outer shroud below is thin, overcome earth gravity and reduce bearing friction power thereby reach.Interior toroidal magnet 9-1 is not centering type, and is symmetrical circular ring type.The interior toroidal magnet magnetcisuspension that rotates floats in the middle of the fixing outer ring magnet, inside and outside annular magnet all belongs to toroidal magnet, and it is one of following 5 that toroidal magnet includes at least: toroidal magnet, (2) its magnetic pole that (1) its magnetic pole is axial distribution is radially-arranged toroidal magnet, (3) its magnetic pole and is toroidal magnet, (4) its magnetic pole that the angle axial distribution is arranged and is by the interior center of circle and the toroidal magnet, (5) of angle radial radiation shape outwards arranged by above 4 toroidal magnet that combines more than two or two.Centering type annular magnetic suspension bearing can be: permanent-magnet off-centering formula annular magnetic suspension bearing, electromagnetism centering type annular magnetic suspension bearing, superconducting magnetic centering type annular magnetic suspension bearing.Centering type annular magnetic suspension bearing is mainly used in the machine shaft system parallel with horizontal plane, belongs to the important component of fly wheel system.
A kind of and the high magnetic conduction heart winding of (11) the tenth fly wheel systems, the electromagnetic structure preferred embodiment of the corresponding magnetically levitated flywheel of magnetic suspension high magnetic conduction heart winding, contrast accompanying drawing 14 includes: magnetic pole 22, high magnetic conduction heart winding 10.Contrast accompanying drawing 15 has been drawn together: magnetic levitation system V2 13, magnetic levitation system V1 12, magnetic pole 22, the high magnetic conduction heart of magnetic suspension winding 11.Contrast accompanying drawing 16 includes: magnetic pole 22, magnetic levitation system V2 13, magnetic levitation system V1 12, the high magnetic conduction heart of magnetic suspension winding 11.Contrast accompanying drawing 7 includes: magnetic pole 22, the new magnetic line of force 60, old magnetic pole 22-1, round casing 62, the prior art magnetic line of force 61.Contrast accompanying drawing 6 includes: the high magnetic conduction heart of magnetic suspension winding 11, the high magnetic conduction heart of magnetic suspension winding 11-1 structure, magnetic levitation system V1 12.Accompanying drawing 6 is that the three-dimensional axle of the high magnetic conduction heart of magnetic suspension winding 11 is surveyed the broken section structure chart, is convenient to further understand its structure.
Electromagnetic structure at technical scheme 4,5,6 described a kind of and high magnetic conduction heart windings, the corresponding magnetically levitated flywheel of magnetic suspension high magnetic conduction heart winding is characterized in that: only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of high magnetic conduction heart winding, the high magnetic conduction heart of magnetic suspension winding, reach the length of the shortening magnetic circuit of high magnetic conduction heart winding and the high magnetic conduction heart of magnetic suspension winding setting, and the magnetic resistance of its magnetic core and volume are reduced, improve the magnetic flux density of magnetic core and reduced the purpose of design of magnetic hysteresis loss and eddy current loss.The proof of will specifically giving an example describes in detail.Contrast accompanying drawing 7, the length of calculating the new magnetic line of force 60, the prior art magnetic line of force 61 is the length of magnetic path.Because the new magnetic line of force 60 is the shortest air line distance that arrives magnetic pole S from magnetic pole N, its length is 8X, the prior art magnetic line of force 61 is semiellipse camber lines, known radius R is 13X, according to the circumference formula is that C=2 π R can be used as approximate formula calculating, and semiellipse arc length degree C=π R, the length that draws the prior art magnetic line of force 61 is 40.8X.The new magnetic line of force 60 is 8X/40.8X with the ratio of the prior art magnetic line of force 61, is about 1/5.The new magnetic line of force 60 is 1/5th of the prior art magnetic line of force 61 lengths of magnetic path.
According to magnetic resistance formula: magnetic circuit magnetic resistance Rm=length of magnetic path L/ (magnetic permeability μ * magnetic circuit sectional area A).Contrast accompanying drawing 7, at known magnetic permeability μ and magnetic circuit sectional area A under identical situation, length with the new magnetic line of force 60 and the prior art magnetic line of force 61, substitution magnetic resistance formula calculates respectively, draw magnetic circuit magnetic resistance between the magnetic pole 22 less than the magnetic circuit magnetic resistance between the old magnetic pole 22-1 of prior art, just 1/5th of its prior art magnetic circuit magnetic resistance.In like manner the magnetic field intensity between the magnetic pole 22 is obviously greater than the magnetic field intensity between the old magnetic pole 22-1 of prior art.The magnetic pole 22 of accompanying drawing 7, the new magnetic line of force 60 are one of the exemplary that belong to the electromagnetic structure of technical scheme 4,5,6 described a kind of and high magnetic conduction heart windings, the corresponding magnetically levitated flywheel of magnetic suspension high magnetic conduction heart winding.
Contrast accompanying drawing 14, its high magnetic conduction heart winding 10 is characterized in that corresponding to technical scheme 4 described a kind of high magnetic conduction heart windings 10: high magnetic conduction heart winding includes the high magnetic conduction heart and winding at least, the high magnetic conduction heart that is placed in the winding mainly is by shortening the length of magnetic circuit, and the magnetic resistance of its magnetic core and volume are reduced, improved the magnetic flux density of magnetic core and reduced magnetic hysteresis loss and eddy current loss, its winding (single-phase or polyphase windings) should match with the high magnetic conduction heart and effectively shorten the length of magnetic circuit.
Contrast accompanying drawing 14, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole 22 at the two ends of high magnetic conduction heart winding 10, and the length of magnetic path between the magnetic pole 22 not only can be greatly shortened in arrangement like this, significantly reduces the magnetic circuit magnetic resistance, significantly strengthens magnetic field.According to magnetic hysteresis loss formula: magnetic hysteresis loss Ph=σ nfV (Bm) nThe coefficient that σ n-is relevant with material; The f-supply frequency; Bm magnetic flux density maximum; The numerical value of index n is relevant with Bm, the about 1.6-2.3 of n value.According to the eddy current loss formula: eddy current loss Pe=σ ef 2Δ 2V (Bm) 2The coefficient that σ e-is relevant with resistivity unshakable in one's determination; Δ-lamination thickness.Because high magnetic conduction heart winding 10 advanced persons' electromagnetic structure feature when its magnetic core generally adopts non-ferromagnetic material or air to make magnetic core, just can high efficiency have been generated electricity, this moment, magnetic hysteresis loss and eddy current loss were about zero.According to the design needs, when using soft magnetic material to do iron core, used silicon steel sheet amount seldom, contrast accompanying drawing 14 and 15, its solid lamination and hollow silicon steel core volume are about the 1/5-1/30 of prior art core volume, and for example: employing circulates material by armature core sealed cavity feeding heat radiation and reaches the high magnetic conduction heart of heat radiation purpose winding 10, because the hollow silicon steel cavity of employing, used silicon steel sheet amount seldom is about 1/30 of prior art core volume.Its substitution magnetic hysteresis loss formula and eddy current loss formula are calculated, and its magnetic hysteresis loss and eddy current loss are 1/30 of prior art magnetic hysteresis unshakable in one's determination and eddy current loss.
Accompanying drawing 14 described high magnetic conduction heart windings 10, concrete application can be referring to fly wheel system preferred embodiment 1,2,3, and accompanying drawing 2,3,4,6,8.
Contrast accompanying drawing 15 and 16, the high magnetic conduction heart of its magnetic suspension winding 11 is corresponding to the feature of technical scheme 5 and the high magnetic conduction heart of 6 described a kind of magnetic suspension winding 11: the high magnetic conduction heart of magnetic suspension winding includes the high magnetic conduction heart and winding and corresponding magnetic levitation system V1 at least, and being placed on that high magnetic conduction pericardium in the winding (single-phase or polyphase windings) contains mainly is by shortening the length of magnetic circuit; Also including less important is by shortening air gap length; And the magnetic resistance of its magnetic core and volume are reduced, and having improved the magnetic flux density of magnetic core and reduced magnetic hysteresis loss and eddy current loss, its winding should match with the high magnetic conduction heart and effectively shorten the length of magnetic circuit; And the employing option of the high magnetic conduction heart winding 10 of the employing of its winding and magnetic core and accompanying drawing 14 roughly the same.Magnetic levitation system V2 13, magnetic levitation system V1 12, corresponding to technical scheme 6 described corresponding magnetic levitation system V1 mainly be make the high magnetic conduction heart of magnetic suspension winding can be initiatively or passive magnetcisuspension float in the excitation space of its corresponding novel magnetically levitated flywheel main pole.Magnetic levitation system V2 13, magnetic levitation system V1 12 are actual to be a pair or more of permanent-magnetic clamp that the same sex is repelled.Be installed in respectively on the high magnetic conduction heart of magnetic suspension winding 11 and the novel magnetically levitated flywheel, the high magnetic conduction heart of magnetic suspension winding 11 magnetcisuspensions are floated in the magnetically confined space of novel magnetically levitated flywheel, specifically can be referring to accompanying drawing 10.Certainly according to the design needs, magnetic levitation system V2 13, magnetic levitation system V1 12 can change the position and adopt excitation winding to realize magnetic suspension.It mainly is by shortening the length of magnetic circuit that the high magnetic conduction heart that accompanying drawing 15 and the high magnetic conduction heart of 16 described magnetic suspension winding 11 have high magnetic conduction heart winding 10 demonstrations equally includes; And the magnetic resistance of its magnetic core and volume are reduced, and significantly reduce the magnetic circuit magnetic resistance, significantly strengthen the feature in magnetic field; The process of argumentation roughly the same no longer describes in detail.Accompanying drawing 15 and the high magnetic conduction heart of 16 described magnetic suspension winding 11, concrete application can be referring to the 9th fly wheel system embodiment and accompanying drawing 10.
The preferred embodiment of (12) the 11 fly wheel systems, fly wheel system are a kind of combined system of modular, and contrast accompanying drawing 17 includes: flywheel generating, multipotency system; Power switching device constitutes.Its combination is corresponding to 11 1 kinds of flywheel generatings of technical scheme, the described feature of multipotency system.And technical scheme 1 described flywheel generates electricity, the multipotency system includes D, power and driver sub-system can include power switching device, but this just selects the employing power switching device, promptly also can not select to adopt power switching device.Be that power switching device is not the sufficient and necessary condition that constitutes technical scheme 1 described flywheel generating, multipotency system.But power switching device but is the sufficient and necessary condition that technical scheme 11 1 kinds of flywheel generatings, multipotency systems constitute.Be that technical scheme 1 adds that power switching device equals technical scheme 11.Contrast accompanying drawing 17, fly wheel system is a kind of combined system of modular, its concrete application can be referring to fly wheel system preferred embodiment 2,4 and accompanying drawing 3 and 5.The preferred embodiment of (13) the 12 fly wheel systems, fly wheel system are a kind of combined system of modular, and contrast accompanying drawing 18 includes: the storage battery pack; Control system; The flywheel speed detector; Flywheel Disturbance Detection device; Flywheel generating, multipotency system; The unidirectional output conversion device of power; Controlled power output clutch and overload protection arrangement; Power output variable speed controllable, output device control system include: the electronic drive circuit of flywheel speed detector, output current electric voltage frequency checkout gear, working selecting switch, flywheel rotary work state sensing and receiving system, flywheel rotating speed and input and output current/voltage frequency work order display, brushless motor-generator and controller, system's output electric energy more than needed absorb controller, system thermal transducer, heat abstractor working controller.
The flywheel speed detector includes and detects flywheel disturbance and rotational speed devices 17 or detect flywheel rotational speed devices 17-1, and the computational analysis output frequency shows rotating speed device etc.The flywheel rotating speed detects and can also detect rotating speed by output current electric voltage frequency checkout gear, and for example: the stator of rare-earth permanent-magnet synchronous motor-generator is promptly simulated superconduction magnetic core winding 10 for three-phase symmetric winding, with the threephase asynchronous structural similarity.Be fixed with neodymium iron boron (NdFeB) magnet steel on the flywheel rotor.Driver is the AC-DC-AC voltage source inverter.According to three-phase synchronous motor rotating speed { n oR/min=60 (frequency f } Hz/p magnetic pole logarithm, draw as long as the computational analysis output frequency just can obtain the flywheel rotating speed, this computational analysis output frequency shows the rotating speed device, cost hangs down the practical value height.
Storing up battery pack is that system's output electric energy more than needed that controlled system comprises absorbs controller control, when fly wheel system is exported electric energy in the energy supply phase, is absorbed by the storage batteries charging if electric energy is more than needed to some extent.At the electric energy of flywheel energy storage phase absorption flywheel dissipation power function, also by storage battery pack (getting final product repeated charge storage battery pack) charging absorption.Store up in case of necessity battery pack also can through directly-inversion of alternating current die mould charges to fly wheel system.The storage battery pack includes: one of large bulk capacitance storage battery pack, lead accumulator group, Cadmium Nickel Battery, nickel-hydrogen accumulator group, lithium storage battery group, conductive plastic battery group, alkaline battery group, electrochemical storage cell group.
Contrast accompanying drawing 18, present embodiment is main corresponding technical scheme 1 and 11 described technical characterictics.The unidirectional output conversion device of power; Controlled power output clutch and overload protection arrangement; Power output variable speed controllable, output device mainly play a role when the more high-power output of needs, for example: when many power electric motor cars under long-time relatively uniform speed motion state, as travel on highway or the highway that has a good transport and communication network.Devices such as above-mentioned power output conversion device are used in suggestion, because power output conversion device kinetic energy conversion efficiency can reach more than 95%, without motor-driven and directly drive wheels running.And adopt electric energy output, the conversion efficiency of notice output electric energy to be starkly lower than power output conversion delivery efficiency, also could use behind the output electric energy through storage battery or power transformation, frequency conversion, and during change lossyly, motor-driven is lossy again.Power output conversion device structure shown in the accompanying drawing 18 can be referring to fly wheel system preferred embodiment 2,4 and accompanying drawing 3 and 5.
The preferred embodiment of (14) the 13 fly wheel systems, fly wheel system are the combined system of another kind of modular, and contrast accompanying drawing 18 includes: the storage battery pack; General control system; The cycle power system; Flywheel generating, multipotency system; A kind of flywheel generating, multipotency system; Flywheel generating, multipotency system.General control system is used to control each system and subsystem and device work.Control system and flywheel speed detector and storage battery pack function and the 12 fly wheel system embodiment are roughly the same described, no longer describe in detail.What need statement is that non-ferromagnetic material iron core of the present invention can include air core interior.The present invention follows power conversion and law of conservation design fully and applies for a patent.
Above-mentioned explanation to the preferred embodiment of the present invention only is an illustrative, and the present invention is not limited to above-mentioned explanation.According to the above description, can also make all improvement to the present invention.Above-mentioned preferred enforcement only is used to illustrate principle of the present invention, it is the illustrated in greater detail of the described feature of technical scheme 1-11, thereby make the those of ordinary skill in the present technique field the present invention can be applied among the various embodiment, can make different improvement to the present invention for different application scenarios.Protection scope of the present invention is defined by claim.

Claims (11)

1, flywheel generating, multipotency system is characterized in that: this system includes following A, B, C, D, totally four subsystems at least;
A, housing subsystem;
B, flywheel, bearing subsystem;
C, include in flywheel generating phase delivery efficiency at least greater than the power conversion power generation sub-system of 75% multi-functional armature;
D, power and driver sub-system;
2, flywheel as claimed in claim 1 generating, multipotency system is characterized in that: described A, B, C, D, totally four subsystems concrete feature respectively correspondence be contained in following A1 item, B1 item, B2 item, C1 item, D1 item, D2 item, E1 item;
Housing that A1, A item housing subsystem include and respective members feature include following 4 any 3 at least:
(1) in the housing subsystem, is subjected to direct acting housing in flywheel rotating excitation magnetic field and respective members to remove armature outer and generally adopts solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, (2) made except that armature outer adopts solid material by the housing of flywheel rotating excitation magnetic field indirectly-acting and respective members, (3) the housing impact resistance preferably and this system's flywheel fragment limit impulsive force adapt, (4) when system also includes power switching device, and when the power output includes sealing or vacuum magnetic drive, be subjected to direct acting housing in magnetic transmission magnetic field and respective members to adopt non-ferromagnetic material to make;
It is one of following 9 that the flywheel that B1, B item flywheel, bearing subsystem include includes at least:
(1) flywheel that includes a pair of or a pair of above magnetic pole in one of axial location or radial position, (2) one or more flywheel, and, include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions at least in its axial location or radial position and non axial non-radial position, (3) two or the compound flywheel more than two include a pair of magnetic pole at least, (4) the single novel flywheel that designs at " high magnetic conduction heart winding " specially, (5) the novel flywheel that designs at " the high magnetic conduction heart of magnetic suspension winding " specially, (6) include the flywheel of magnetic pole limit to the magnetic cup barrier, (7) include the flywheel of magnetic pole and magnetic guiding loop, (8) a kind of novel flywheel that enlarges the magnetic pole excitation work area, (9) a kind of compound flywheel that enlarges the magnetic pole excitation work area;
It is one of following 8 that the bearing subsystem that B2, B item flywheel, bearing subsystem include includes at least:
(1) annular magnetic suspension bearing subsystem, (4) controllable magnetic suspension bearing subsystem, (5) of the common magnetic suspension bearing subsystem in composite bearing subsystem, (2), (3) formed of magnetic suspension bearing and non-magnetic suspension bearing with the above restraining force of two dimension include centering type annular magnetic suspension bearing subsystem, (6) and include the magnetic suspension bearing limit is included super-conductive magnetic suspension bearing subsystem, (8) rolling or sliding bearing subsystem to magnetic suspension bearing subsystem, (7) of magnetic cup barrier;
C1, C item include in flywheel energy supply phase delivery efficiency at least greater than 75%, and have multi-functional armature that the power conversion power generation sub-system of the multi-functional armature that absorbs flywheel dissipation power function includes in the flywheel energy storage phase and include one of following 22 at least:
(1) includes the multi-functional armature of making the armature winding of controlled mobile core unshakable in one's determination of soft magnetic material, (2) include with soft magnetic material and make the armature winding of controlled mobile core unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of the air core or the vacuum heart, (3) include with soft magnetic material and make the armature winding of controlled mobile core unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of non-ferromagnetic material, (4) include with soft magnetic material and do controlled mobile armature winding unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of non-ferromagnetic material, (5) include with soft magnetic material and do controlled mobile armature winding unshakable in one's determination and make the multi-functional armature of the armature winding combination of the heart of the air core or the vacuum heart, (6) include with soft magnetic material and make the combined multi-functional armature that becomes of controlled mobile armature winding unshakable in one's determination and " high magnetic conduction heart winding ", (7) include the multi-functional armature that enlarges the novel flywheel work of magnetic pole excitation work area corresponding to a kind of, (8) include the multi-functional armature that enlarges the compound flywheel work of magnetic pole excitation work area corresponding to a kind of, (9) include two plural multi-functional armatures making the heart of non-ferromagnetic material or air, (10) above-mentioned 1 to 9 described multi-functional armature one of at least with the combined multi-functional armature that becomes of " high magnetic conduction heart winding " multi-functional armature, (11) include with soft magnetic material and make the combined multi-functional armature that becomes of controlled mobile armature winding unshakable in one's determination and " the high magnetic conduction heart of magnetic suspension winding ", (12) include the multi-functional armature that superconductor constitutes winding and makes the heart of non-ferromagnetic material or air, (13) the multi-functional armature that includes " high magnetic conduction heart winding ", (14) above-mentioned 1 to 13 described multi-functional armature one of at least with the combined multi-functional armature that becomes of " the high magnetic conduction heart of magnetic suspension winding " multi-functional armature, (15) the multi-functional armature that includes " the high magnetic conduction heart of magnetic suspension winding, ", (16) above-mentioned 1 to 15 one of at least the winding that includes of a described multi-functional armature be replaced by the multi-functional armature that tubulose heat radiation lead winding newly is combined into, (17) above-mentioned 1 to 16 described multi-functional armature one of at least with the combined multi-functional armature that becomes of heat abstractor, (18) include the two or more multi-functional armature that tubulose heat radiation lead constitutes winding and makes the heart of non-ferromagnetic material, (19) above-mentioned 1 to 18 one of at least the winding that includes of a described multi-functional armature arrange the new multi-functional armature that reaches the heat radiation purpose mutually with independent radiating tube again, (20) above-mentioned 1 to 19 one of at least the iron core that includes of a described multi-functional armature be replaced by and feed heat radiation by armature magnetic core sealed cavity and circulate material and reach the multi-functional armature that the heat radiation magnetic core of heat radiation purpose newly is combined into, (21) above-mentioned 1 to 20 described multi-functional armature one of at least with have the combined multi-functional armature that becomes of the device that drives flywheel and electricity generate function, (22) above-mentioned 1 to the 21 described multi-functional armature that multi-functional armature is combined into mutually more than; Above-mentioned 22 described multi-functional armatures all have in flywheel generating phase delivery efficiency at least at least greater than 75% function;
It is one of following 10 that power that D1, D item power and driver sub-system include or power set include at least:
(1) inherent down circulation of external natural power, (2) external non-natural power, (3) ideal operation ambient condition provides the inherent down circulation of power, (4) imperfect operational environment state to provide power, (5) free or optional power promptly only to establish power input or jockey at its subsystem, and power can be selected output conversion device, (10) power and electric energy input and output bi-directional conversion device by other peripheral apparatus decision, (6) power input and output bi-directional conversion device, (7) power output conversion device, (8) power and electric energy output conversion device, (9) power and electric energy;
It is one of following 7 that the driver sub-system that D2, D item power and driver sub-system include includes at least:
(1) includes the driver sub-system of mechanical drive mode, (2) include the driver sub-system of mode of electric drive, (3) include the driver sub-system of mechanical drive mode and mode of electric drive, (4) include the driver sub-system of the coaxial kind of drive that belongs to machinery or Electric Drive scope, (5) include belong to machinery or Electric Drive scope install the driver sub-system of the freewheel clutch kind of drive additional at drive disk assembly, (6) include the driver sub-system of the magnetic transmission kind of drive that belongs to machinery or Electric Drive scope, (7) include the driver sub-system that belongs to the closed of machinery or Electric Drive scope or the vacuum closed-type magnetic transmission kind of drive;
When E1, fly wheel system were disturbed by external force, it is one of following 8 that A item housing subsystem can include, and B item flywheel, bearing subsystem can include following one of preceding 6:
(1) includes the composite bearing subsystem that magnetic suspension bearing and non-magnetic suspension bearing are formed, (2) include the device that can suppress the interference vibration, (3) include the device that to control the flywheel vibration, (4) include vibration absorber, (5) include the magnetic suspension vibration absorber, (6) include rolling or sliding bearing subsystem, (7) include when being changed limited angle or limited orientation in system, can both make the flywheel axis automatically restore to the device in former design angle or orientation, (8) include in system and be changed arbitrarily angled or during arbitrary orientation, can both make the flywheel axis automatically restore to the device in former design angle or orientation.
3, the manufacture method of a kind of flywheel generating, multipotency system, it is characterized in that: in system, be subjected to the direct acting member in flywheel rotating excitation magnetic field to remove armature outer and generally adopt solid material manufacturing, preferably adopt the non-ferromagnetic material manufacturing, made except that armature outer adopts solid material by the member of flywheel rotating excitation magnetic field indirectly-acting; Employing has the power conversion power generation sub-system that includes greater than 75% the multi-functional armature system of manufacturing at least in flywheel generating phase delivery efficiency.
4, a kind of high magnetic conduction heart winding and its corresponding single novel flywheel is characterized in that: high magnetic conduction heart winding includes the high magnetic conduction heart and winding at least, the high magnetic conduction heart that is placed in the winding mainly is by shortening the length of magnetic circuit, and the magnetic resistance of its magnetic core and volume are reduced, improved the magnetic flux density of magnetic core and reduced magnetic hysteresis loss and eddy current loss, its winding should match with the high magnetic conduction heart and effectively shorten the length of magnetic circuit; Single novel flywheel include with the corresponding electromagnetic structure of high magnetic conduction heart winding be magnetic pole, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of high magnetic conduction heart winding, and the single i.e. magnetic pole excitation magnetic field space of a novel flywheel can independently hold high magnetic conduction heart winding at least and works alone; The high magnetic conduction heart includes one of following 4.1 5 at least, and winding includes one of following 4.2 5 at least; Single novel flywheel includes one of following 4.3 4 at least;
4.1, the high magnetic conduction heart includes one of following 5 at least:
(1) the high magnetic conduction heart, (3) that include soft magnetic material, the high magnetic conduction heart, (2) that include non-ferromagnetic material include by non-ferromagnetic material and the compound high magnetic conduction heart, (4) height of soft magnetic material lead air core, (5) can feed heat radiation and circulate the sealed cavity of material as the high magnetic conduction heart;
4.2, winding includes one of following 5 at least:
(1) includes the winding of plain conductor, winding, (3) that (2) include banding pattern or flat type lead and include refrigeration or the winding of heat abstractor, the winding that (4) include the superconductor lead, the winding that (5) include cellular conductor.
4.3, single novel flywheel is specially at the flywheel of " high magnetic conduction heart winding " design, which comprises at least one of following 4:
(1) one one of axial location or radial position include a pair of or a pair of above magnetic pole single flywheel,
(2) one in its axial location or radial position and non axial non-radial position, and the single novel flywheel (3) that includes a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions includes the magnetic pole limit to the single novel flywheel of magnetic cup barrier, the single novel flywheel that (4) include magnetic pole and magnetic guiding loop at least; More than the magnetic pole excitation magnetic field space of 4 single novel flywheels can independently hold a high magnetic conduction heart winding at least and work alone.
5, a kind of magnetic suspension high magnetic conduction heart winding and its corresponding novel flywheel is characterized in that: the high magnetic conduction heart of magnetic suspension winding includes the high magnetic conduction heart and winding and corresponding magnetic levitation system V1 at least, and being placed on that high magnetic conduction pericardium in the winding contains mainly is by shortening the length of magnetic circuit; Also including less important is by shortening air gap length; And the magnetic resistance of its magnetic core and volume are reduced, and having improved the magnetic flux density of magnetic core and reduced magnetic hysteresis loss and eddy current loss, its winding should match with the high magnetic conduction heart and effectively shorten the length of magnetic circuit; Novel flywheel include at least flywheel T and with the magnetic levitation system V1 of the high magnetic conduction heart of the magnetic suspension winding magnetic levitation system V2 that is mutually related.
6, a kind of magnetic suspension high magnetic conduction heart winding as claimed in claim 5 and its corresponding novel flywheel is characterized in that: the high magnetic conduction heart that the high magnetic conduction heart of magnetic suspension winding includes at least and the concrete feature of winding and corresponding magnetic levitation system V1 be corresponding respectively to be contained in one of following 6.1 5,6.2 one of 5,6.3 one of 2, the flywheel T that novel flywheel includes at least and be mutually related with the magnetic levitation system V1 of the high magnetic conduction heart of magnetic suspension winding that the concrete feature of magnetic levitation system V2 is corresponding respectively to be contained in one of following 6.4 5,6.5 one of 2;
6.1, the high magnetic conduction heart includes one of following 5 at least:
(1) the high magnetic conduction heart, (3) that include soft magnetic material, the high magnetic conduction heart, (2) that include non-ferromagnetic material include by non-ferromagnetic material and the compound high magnetic conduction heart, (4) height of soft magnetic material lead air core, (5) can feed heat radiation and circulate the sealed cavity of material as the high magnetic conduction heart;
6.2, winding includes one of following 5 at least:
(1) includes the winding of plain conductor, winding, (3) that (2) include banding pattern or flat type lead and include cooling or the winding of heat abstractor, the winding that (4) include the superconductor lead, the winding that (5) include cellular conductor;
6.3 item, corresponding magnetic levitation system V1 are installed in the high magnetic conduction heart of the magnetic suspension winding, corresponding magnetic levitation system V1 mainly be make the high magnetic conduction heart of magnetic suspension winding can be initiatively or passive magnetcisuspension float in the excitation space of its corresponding novel flywheel magnetic pole, it is one of following 2 that corresponding magnetic levitation system V1 includes at least:
(1) comprises corresponding magnetic levitation system V1, (2) and comprise corresponding magnetic levitation system V1 with more than one degree of freedom restraining forces with a kind of degree of freedom restraining force;
6.4 item, flywheel T are the flywheels that designs at " the high magnetic conduction heart of magnetic suspension winding " specially, flywheel T include with the corresponding electromagnetic structure of the high magnetic conduction heart of magnetic suspension winding be magnetic pole, only trapping crack distance is furnished with a pair of or a pair of above magnetic pole at the two ends of the high magnetic conduction heart of magnetic suspension winding, and it is one of following 5 that flywheel T includes at least:
(1) one or more flywheel T in flywheel T, (2) that includes a pair of or a pair of above magnetic pole in one of axial location or radial position, and, include respectively in above-mentioned any two kinds of positions at least that a pair of or a pair of above magnetic pole, (3) two or the compound flywheel T more than two include a pair of magnetic pole at least, (4) include flywheel T, the flywheel T that (5) include magnetic pole and magnetic guiding loop of magnetic pole limit to the magnetic cup barrier in its axial location or radial position and non axial non-radial position;
6.5, magnetic levitation system V2 is installed near the position magnetic pole of flywheel T, the corresponding coupling of magnetic levitation system V2 with magnetic levitation system V1, it is one of following 2 that magnetic levitation system V2 includes at least:
(1) comprises corresponding magnetic levitation system V2, (2) and comprise corresponding magnetic levitation system V2 with more than one degree of freedom restraining forces with a kind of degree of freedom restraining force.
7, a kind of novel flywheel that enlarges the magnetic pole excitation work area is characterized in that: in axial location and the radial position and the non axial non-radial position of the novel flywheel that enlarges the magnetic pole excitation work area, in these three kinds of positions or any at least two kinds of positions include a pair of or a pair of above magnetic pole respectively, enlarge the magnetic pole excitation work area thereby reach, the particular location at its magnetic pole place correspondence at least is contained in one of following 5;
(1) includes a pair of or a pair of above magnetic pole respectively at axial location and radial position, (2) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, (3) in axial location and radial position and non axial non-radial position, include a pair of or a pair of above magnetic pole respectively in these three kinds of positions, (4) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of high magnetic conduction heart winding at least therein, it is worked in the magnetic pole and magnetic field of this position, (5) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of the high magnetic conduction heart of magnetic suspension winding at least therein, and it is worked in the magnetic pole and magnetic field of this position.
8, a kind of compound flywheel that enlarges the magnetic pole excitation work area is characterized in that: in the axial location of flywheel and radial position and non axial non-radial position and in the inside and outside two sides of the axial location of flywheel and the two sides of radial position, in any at least two kinds of positions or at least the two sides of any one position include a pair of or a pair of above magnetic pole respectively, enlarge the magnetic pole excitation work area thereby reach, and constitute compound flywheel by two or more flywheels, the particular location at its magnetic pole place correspondence at least is contained in one of following 8;
(1) includes a pair of or a pair of above magnetic pole respectively at axial location and radial position, (2) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, (3) in axial location and radial position and non axial non-radial position, include a pair of or a pair of above magnetic pole respectively in these three kinds of positions, (4) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of high magnetic conduction heart winding at least therein, it is worked in the magnetic pole and magnetic field of this position, (5) in axial location and radial position and non axial non-radial position, at least include a pair of or a pair of above magnetic pole respectively in above-mentioned any two kinds of positions, and the magnetic pole of a position should be corresponding with the electromagnetic structure of the high magnetic conduction heart of magnetic suspension winding at least therein, it is worked in the magnetic pole and magnetic field of this position, (6) include a pair of or a pair of above magnetic pole respectively in the inside and outside two sides of axial location, (7) include a pair of or a pair of above magnetic pole respectively in the two sides of radial position, (8) in the inside and outside two sides of axial location and the both side surface of radial position, at least should be corresponding in the two sides of above-mentioned any one position with the magnetic structure of high magnetic conduction heart winding or the high magnetic conduction heart of magnetic suspension winding, it is worked in the magnetic pole and magnetic field of this position.
9, a kind of annular magnetic suspension bearing with the above restraining force of two dimension is characterized in that: the internal magnetic ring magnetcisuspension of this annular magnetic suspension bearing floats in the middle of the outer magnetic ring, inside and outside magnet ring all belongs to toroidal magnet, its toroidal magnet magnetic pole is outwards had angle radial radiation shape or by the center of circle in its toroidal magnet lateral angle radial radiation shape is arranged by the interior center of circle, be that the inboard of its toroidal magnet has angle restriction to become a magnetic pole and its toroidal magnet outside has angle restriction to become another magnetic pole, make it have two dimension or the above magnetic confinement power of two dimension.
10, a kind of centering type annular magnetic suspension bearing is characterized in that: the magnetic suspension bearing internal magnetic ring is concentric circular type, the magnetic suspension bearing outer magnetic ring that is fixed in casing or support is eccentric ring type, the internal magnetic ring magnetcisuspension that rotates floats in the middle of the fixing outer magnetic ring, the magnetic suspension bearing outer magnetic ring is that place, the earth's core is the thickest near ground, be that place, the earth's core is thin more away from ground more, be that the thickest top, its outer magnetic ring below is thin, overcome earth gravity and reduce bearing friction power thereby reach; Inside and outside magnet ring all belongs to toroidal magnet, and it is one of following 5 that the type of toroidal magnet includes at least:
(1) its magnetic pole toroidal magnet, (2) its magnetic pole of being axial distribution is radially-arranged toroidal magnet, (3) its magnetic pole and is toroidal magnet, (4) its magnetic pole that the angle axial distribution is arranged and is by the interior center of circle and the toroidal magnet, (5) of angle radial radiation shape outwards arranged by above 4 toroidal magnet that combines more than two or two.
11, a kind of flywheel generating, multipotency system include feature as claimed in claim 1, it is characterized in that: also include one of 5 of following 11.1 power switching devices at least:
11.1, power switching device includes one of following 5 at least:
(1) power input and output bi-directional conversion device, (2) power output conversion device, (3) power and electric energy output conversion device, (4) power and electric energy can be selected output conversion device, (5) power and electric energy input and output bi-directional conversion device.
CNB031431615A 2003-06-18 2003-06-18 Flywheel generating, multifunctional system and manufacturing method and important component included in this system Expired - Fee Related CN100350717C (en)

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