CN103147919A - Fluid kinetic energy conversion system - Google Patents

Fluid kinetic energy conversion system Download PDF

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Publication number
CN103147919A
CN103147919A CN2012100870621A CN201210087062A CN103147919A CN 103147919 A CN103147919 A CN 103147919A CN 2012100870621 A CN2012100870621 A CN 2012100870621A CN 201210087062 A CN201210087062 A CN 201210087062A CN 103147919 A CN103147919 A CN 103147919A
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umbrella
cylinder
working
kinetic energy
fluid dynamic
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CN103147919B (en
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黄稼跃
冯轩
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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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

Abstract

The invention relates to a fluid kinetic energy conversion system, comprising a central control system, a fluid kinetic energy acquisition and control device, and a kinetic energy conversion output device connected with the fluid kinetic energy acquisition and control device, wherein the fluid kinetic energy acquisition and control device comprises at least one pair of work umbrellas, work doing ropes and direction control ropes which are respectively connected with the two sides of umbrella surfaces of the work umbrellas, rollers connected with the end parts of the work doing ropes, and winches connected with the end parts of the direction control ropes. The central control system controls the winches to adjust the directions of the work umbrellas, accordingly, when one work umbrella is in a full sail state and is driven by fluid to move forwards to do work, the other work umbrella is controlled to be in a sail furling state and furled backwards. The fluid kinetic energy conversion system converts unstable high and low-air wind energy and water energy into stable and storable liquid-air pressure kinetic energy, the on-grid cost is low, the consumption is low, the control is simple and easy, the maintenance cost is low, various traditional generation equipment can be fully utilized, and a novel generator does not need to be developed.

Description

The fluid dynamic energy converting system
Technical field
The present invention relates to a kind of energy conversion system, relate in particular to and a kind of unsettled fluid dynamic energy such as wind energy, water can be converted to stable, storable liquid-Pneumatic pressure power energy, and but liquid-Pneumatic pressure powers these are stable, that can store remote transmission can drive existing market general all kinds of low speed, high-performance generator again, with the kinetic energy converting system of the power supply that obtains stabilized frequency.
Background technique
At present, along with the development and progress of society, people are also increasing to the demand of the energy; and; traditional energy can produce a large amount of pollutants and carbon emission, and energy crisis and environmental crisis have become the difficult problem of world today's facing, opens up novel clean energy resource extremely urgent.And the fluid dynamic energies such as wind energy, water energy are cleaning, the reproducible energy, utilize the liquid kinetic energy power generation can discharged waste and harmful gas etc., can effectively alleviate the problems such as atmospheric pollution, water pollution and global warming, therefore more and more be subject to the attention of countries in the world.
The utilization of fluid dynamic energy is aloft or gathers wind energy or water energy in the river, wind energy or water can be converted into mechanical energy, then mechanical energy be converted to the energy of Gong the utilization of electric energy or other form.
The method of present known Wind Power Utilization is mainly:
1, surface wind generating.The most ripe is the oar blade type wind-driven generator, and equipment is comprised of ground support, wind direction turntable, horizontal axis or vertical shaft, blade, gearbox, generator, electric power storage or contravariant equipment etc.Existing level axle wind power plant cost is high, wind energy utilization is low, maintenance cost is high, and peak output reaches MW class and just is difficult to improve again; Because the restriction of ground support height can not take full advantage of the wind speed higher apart from ground; Subaerial wind speed is extremely unstable, causes the electric power output frequency fluctuation of blade wind-power electricity generation large, and being incorporated into the power networks with existing electrical network, difficulty is large, cost is high.
2, high altitude wind energy generating.High-altitude more than myriametre exists the upper level jet stream of 30 meter per seconds, and the wind energy resources that upper level jet stream contains may satisfy half the energy of mankind's demand.Square being directly proportional of wind energy and wind speed is inversely proportional to the density of air.Increase along with the increase of distance ground level at atmosphere convection layer wind speed; Simultaneously, along with the increase of height, air density reduces, 25% of the air density deficiency ground in myriametre above high-altitude.The utilization of high altitude wind energy not yet forms commercial product, the existing wind power generation device structure that utilizes high altitude wind energy is complicated, let fly away the high-altitude electricity generating device be subject to high-altitude control, generating efficiency low, can't utilize the fluctuation of existing power generating equipment, electric power output frequency large, being incorporated into the power networks with existing electrical network, difficulty is large, cost is high.
The main thought of present high altitude wind energy:
The one, directly generator set is raised to the high-altitude, by cable, electrical energy transfer is arrived ground.As: utilize wind speed and fire balloon that the oar blade type generator set is raised to the high-altitude, by cable, electrical energy transfer is arrived ground.But will be raised to the larger lift of aerial needs to huge generator set and cable, make cost significantly increase, it realizes technical sophistication simultaneously, and regular maintenance is extremely difficult, is difficult to carry out.
The 2nd, let kite, rotation wind wheel fly away high-altitude with high-strength rope, by Traction Drive band, high-strength rope, wind energy is reached surface-based worktable, drive the method for generator or other power plant, but this method is difficult to utilize existing power equipment.And:
Rotate wind wheel and let the lift that the high-altitude need to be larger fly away, be difficult to carry out.
With high-strength rope, one or windy zither are delivered to surface-based winch or hydraulic reciprocating pump etc. in the aerial suffered power of height, directly drive the method for generator or other power plant, it is 98109467 Chinese invention patent " flexible wind-driven generator " as application number, its major defect is that the bracing wire that can not guarantee two kites has larger pulling force poor, inefficiency; Kite is made of framework, and incomplete " flexibility ", the kite own wt is not also accomplished the lightest; Two kites are to work on two very near ropes of distance, and it is too large that the kite area can not be done, and two kites " collision " will occur and mutually are wound around; Synchronously having of two kites is to be solved.Because wind energy fluctuates, the kite that self is unpowered is in floating condition cannot be fixed on a position that wind speed is stable.Application number is 200710084662 Chinese invention patents " kite power generation method " to be 201110151527 Chinese invention patents " umbrella-shaped wind power device and wind energy source dynamic system " with application number common shortcoming is all: can't drive its direct-connected generator or other kinetic energy apparatus when wind speed is too small, and very easily its kinetic energy apparatus that directly connects driving is caused damage when wind speed is excessive; The incorgruous return of kite is not generated electricity, and belongs to the discontinuous output power.Wind energy fluctuation and discontinuous output, all cause the very big fluctuation of electric power output frequency, need the power interflow method (seeing application number 201010602590 inventions) of the high altitude wind power generator group of suitable a plurality of intermittent power generation or the generator of development of new, being incorporated into the power networks with existing electrical network, difficulty is large, cost is high.When the kite duration of work drags rope and retracts by gearbox in incorgruous return, need be provided by the outside motor drives of energy, energy consumption is large.
Summary of the invention
The present invention is directed to the defective of prior art, provide a kind of kinetic energy that fluid is changeable to be converted to stable, storable, the fluid dynamic energy converting system of liquid-air pressure energy realizes the reliable and stable control performance of Umbrella for working in convection cell, is the generator of acting and the energy of other mechanical transmission frequency stabilizations.
Technological scheme of the present invention is as follows: a kind of fluid dynamic energy converting system comprises: central control system, fluid dynamic energy data acquisition and controlling device, the kinetic energy conversion output apparatus that is connected with described fluid dynamic energy data acquisition and controlling device.
Described fluid dynamic energy data acquisition and controlling device comprises: at least one pair of Umbrella for working, namely the Umbrella for working one acting rope one of being connected, connecting respectively described Umbrella for working one umbrella cover both sides with the Umbrella for working acting rope two of being connected, connecting respectively described Umbrella for working two umbrella cover both sides with the direction tricing line is connected with the direction tricing line, cylinder one is connected with cylinder, are connected respectively winch one and the winch two that the end is connected with the direction tricing line with described direction tricing line one.
The end of described acting rope one and acting rope two is wound in respectively described cylinder one and cylinder two, the rotating shaft that described cylinder one is connected with cylinder is connected with described kinetic energy conversion output apparatus, thereby the described Umbrella for working one of fluid driven or Umbrella for working two move and drive the two forward rotation actings of described cylinder one and cylinder.
Described central control system control described winch one and winch two reclaim respectively or loosen described direction tricing line one and direction tricing line two with the direction of adjusting described Umbrella for working one and Umbrella for working two to bagpipe state or reefing state; When described central control system was controlled Umbrella for working one or Umbrella for working two and travelled forward acting to the bagpipe state and by fluid driven by hoisting machine, this central control system was controlled another Umbrella for working to the reefing state and reclaims backward this Umbrella for working by hoisting machine.
The rotating shaft of described cylinder one connects couple axle by linkage gear one holds one by one, and the other end of this couple axle one is fixed with couple axle gear one; The rotating shaft of described cylinder two connects couple axle 21 ends by linkage gear two, and the other end of this couple axle two is fixed with couple axle gear two; Described couple axle gear one and couple axle gear two mesh mutually, make backward rotation between described cylinder one and cylinder two.
Described kinetic energy conversion output apparatus comprises the mechanical energy output shaft, the two ends of this mechanical energy output shaft are fixed with driving gear, one-way transmission gear one is installed in the rotating shaft of described cylinder one, one-way transmission gear two is installed in the rotating shaft of cylinder two, and this one-way transmission gear one and one-way transmission gear two are joined with the driving gear at described mechanical energy output shaft two ends respectively and are transmitted moment of rotation when being incorporated in described cylinder one or cylinder two forward rotation.
Described kinetic energy conversion output apparatus also comprises and the speed-changing gear box of described mechanical energy output shaft interlock and the water pump that is driven by this speed-changing gear box.
But fluid dynamic energy converting system of the present invention also comprises the turning platform that the horizontal 360-degree controlled by described central control system turns to, and described cylinder one, cylinder two, winch one and winch two are arranged on this turning platform.
Described turning platform is installed on the ground.
Described central control system comprises: the PLC programming controller, be arranged on pulling force inductor and pulling force sensor data receiving machine on described acting rope and direction tricing line.
Described central control system also comprises: the sonde signal that establish high-level weather station sonde and sun-generated electric power thereof, is located at ground is accepted antenna and sonde data receiver.
compared with prior art, the advantage of fluid dynamic energy converting system of the present invention is: alternately travelled forward acting and regaining under the bagpipe state by fluid driven under the reefing state by paired Umbrella for working, can be with unsettled high low latitude wind energy, water can be converted to stable, storable liquid-Pneumatic pressure power energy, these are stable, can store, but the liquid-Pneumatic pressure power of remote transmission can drive the general all kinds of low speed of existing market again, high-performance generator, just can obtain the power supply of stabilized frequency, the frequency of generating output is freely adjustable, stable, the cost that is incorporated into the power networks is low, and there is not the risk that wears electrical network down, energy transformation ratio is high, the conversion ratio of wind energy electric energy surpasses 60%, all separate not being wound around fully with the acting rope due to the direction tricing line of Umbrella for working, loss is few, controls simple and easyly, and maintenance cost is low, to all utilizing in the wind energy of each separation of basic, normal, high sky, different wind speed, wind energy utilization is high, Umbrella for working lift-off, run duration, need to starting when wind direction occurs to change except steer motor, other system does not all consume energy, and consumes energy extremely low, system architecture is simple, integrated, automation control that high do-nothing system and ground system can be realized, can take full advantage of existing various power generating equipment, not need to research and develop novel generator.
Description of drawings
Fig. 1 is the structural representation of fluid dynamic energy converting system of the present invention;
Fig. 2 transfers the bagpipe state for one of them Umbrella for working to by the reefing state, and another Umbrella for working is transferred to the schematic diagram of reefing state by the bagpipe state;
When Fig. 3 is described cylinder one 13 forward rotation, cylinder 2 23 backward rotation and the schematic diagram of described couple axle 16 and 26 linkage structures;
When Fig. 4 is described cylinder one 13 backward rotation, cylinder 2 23 forward rotation and the schematic diagram of described couple axle 16 and 26 linkage structures.
Embodiment
Below in conjunction with accompanying drawing, embodiments of the invention are described in further detail.
Fluid dynamic energy converting system of the present invention mainly comprises: central control system, fluid dynamic energy data acquisition and controlling device and kinetic energy conversion output apparatus.Described fluid dynamic energy data acquisition and controlling device be used for to gather the kinetic energy of fluid and it is passed to ground, controls direction to the device that gathers fluid, position etc. by central control system simultaneously and controls.Described kinetic energy conversion output apparatus is connected with the kinetic energy conversion output apparatus with fluid dynamic energy data acquisition and controlling device, is used for the kinetic energy that fluid dynamic energy data acquisition and controlling device collects is changed and exported.Described fluid can be both high low latitude wind energy, can be also the water energy.Below just be applied as example with wind energy and describe.
As shown in Figure 1, described fluid dynamic energy data acquisition and controlling device is comprised of aerial part and above ground portion, and wherein, aerial part comprises: at least one pair of Umbrella for working, i.e. Umbrella for working 1 and Umbrella for working 2 20.Above ground portion comprises: the direction control motor 2 34 that cylinder 1 and the folding and unfolding motor 1 that is attached thereto, cylinder 2 23 and the folding and unfolding motor 2 33 that is attached thereto, winch 1 and the direction that is attached thereto are controlled motor 1, winch 2 24 and be attached thereto.Above-mentioned folding and unfolding motor 1, folding and unfolding motor 2 33, direction control motor 1 and direction control motor 2 34 all is connected with central control system and controlled by it.Each Umbrella for working is connected the hawser connection of a separation by acting rope with the direction tricing line, and acting rope and direction tricing line are connected to two side positions of Umbrella for working umbrella cover, as the acting rope 1 of Umbrella for working as described in connecting respectively one 10 umbrella cover both sides is connected 12 with the direction tricing line, connect respectively as described in acting rope 2 21 and the direction tricing line 2 22 of Umbrella for working 2 20 umbrella cover both sides.The bottom of described acting rope 1 and acting rope 2 21 is wound in respectively on described cylinder 1 and cylinder 2 23, and the bottom of described direction tricing line 1 and direction tricing line 2 22 is wound in respectively on described winch 1 and winch 2 24.When the fluid driven Umbrella for working travels forward, the moving cylinder forward rotation acting of corresponding acting rope band, can drag corresponding Umbrella for working during the cylinder backward rotation and regain backward, and winch can loosen respectively or regain corresponding direction tricing line with the direction of adjustment Umbrella for working when rotating forward or backwards.
As shown in Figure 3 and Figure 4, the above ground portion of described fluid dynamic energy data acquisition and controlling device also comprises: linkage gear 1, couple axle 1, linkage gear 2 25 and couple axle 2 26.Described linkage gear 1 is fixed in the rotating shaft of cylinder 1 and connects an end of couple axle 1, and the other end of this couple axle 1 is fixed with couple axle gear 1.Described linkage gear 2 25 is fixed in the rotating shaft of cylinder 2 23 and connects couple axle 2 26 1 ends, and the other end of this couple axle 2 26 is fixed with couple axle gear 2 27.Described couple axle gear 1 and couple axle gear 2 27 are intermeshing, make thus backward rotation between described cylinder 1 and cylinder 2 23, when cylinder one 13 forward rotation, can drive cylinder 2 23 backward rotation that is:; And when cylinder 2 23 forward rotation, can drive cylinder one 13 backward rotation.
As shown in Figure 3 and Figure 4, in the present embodiment, described kinetic energy conversion output apparatus comprises mechanical energy output shaft 41, the water pump 44 that drives with the speed-changing gear box 43 of this mechanical energy output shaft 41 interlocks and by this speed-changing gear box 43 etc.the two ends of described mechanical energy output shaft 41 are fixed with driving gear 42, one-way transmission gear 1 is installed in the rotating shaft of described cylinder 1, one-way transmission gear 2 28 is installed in the rotating shaft of cylinder 2 23, this one-way transmission gear 1 and one-way transmission gear 2 28 are joined with the driving gear 42 at described mechanical energy output shaft 41 two ends respectively and are transmitted forward rotation moment when being incorporated in described cylinder 1 or cylinder 2 23 forward rotation, make mechanical energy output shaft 41 keep forward rotation, can drive described water pump 44 by the speed-changing gear box 43 with these mechanical energy output shaft 41 interlocks mechanical energy is converted to the water energy.Certainly, the kinetic energy conversion output apparatus can also adopt other structural type, and this is prior art, repeats no more herein.
But fluid dynamic energy converting system of the present invention also comprises the turning platform that horizontal 360-degree turns to, this turning platform is installed on the ground, be provided with steering motor or steering wheel and control sense of rotation by described central control system, the above ground portion of described fluid dynamic energy data acquisition and controlling device, as: cylinder 1, cylinder 2 23, winch 1 and winch 2 24 etc. are arranged on this turning platform, in time adjust the direction of turning platform when wind direction occurs to change, make the rope outlet direction of above ground portion and aerial part be consistent
Described central control system comprises: PLC programming controller, pulling force inductor, pulling force sensor data receiving machine, establish high-level weather station sonde and sun-generated electric power thereof, the sonde signal that is located at ground accepts antenna and sonde data receiver.Described pulling force inductor is arranged on described acting rope and direction tricing line, is used for responding to respectively the pulling force of acting rope and direction tricing line.Described weather station sonde and sun-generated electric power thereof can be arranged on Umbrella for working.
Umbrella for working wind-force and winch pull with control under, be raised to aerial as kite, more than Umbrella for working rises to a myriametre, wind speed reach wind energies such as upper level jet stream more than 25 meter per seconds than more rich ideal operation height after, Umbrella for working seesaws respectively according to the instruction of central control system, gathers wind energy.
As Fig. 1, after collecting the data of pulling force inductor and weather station sonde, the central control system controlling party drives winch one 14 backward rotation to controlling motor 1, tightening up direction tricing line 1 makes Umbrella for working 1 be in the bagpipe state, simultaneously, the central control system controlling party drives winch 2 24 rotations to controlling motor 2 34, loosens direction tricing line 2 22 and makes Umbrella for working 2 20 be in the reefing state.Wind energy drives the Umbrella for working 1 that is in the bagpipe state and moves forward to position J ' from position J, and restrict by acting and one 11 pull cylinder one 13 forward rotation, meanwhile, the cylinder 1 of forward rotation drives cylinder 2 23 backward rotation by couple axle 1 and couple axle 2 26, and the Umbrella for working 2 20 that will be in the reefing state is got position K ' back from position K.Because be in the wind-force that wind-force that the Umbrella for working 1 of bagpipe state is subject to is subject to much larger than the Umbrella for working 2 20 that is in the reefing state, therefore, thus cylinder 1 just can drive the mechanical energy output shaft 41 forward rotation actings of kinetic energy conversion output apparatus completes kinetic energy gatherer process for the first time.
After Umbrella for working 2 20 is retracted to specified position, as shown in Figure 2, the central control system controlling party drives winch 2 24 backward rotation to controlling motor 2 34, tightening up direction tricing line 2 22 makes Umbrella for working 2 20 be in the bagpipe state, simultaneously, the central control system controlling party drives winch one 14 rotations to controlling motor 1, loosens direction tricing line 1 and makes Umbrella for working 1 be in the reefing state.Wind energy drives the Umbrella for working 2 20 that is in the bagpipe state and travels forward, restrict by acting and 2 21 pull cylinder 2 23 forward rotation, meanwhile, the cylinder 2 23 of forward rotation drives cylinder one 13 backward rotation by couple axle 2 26 and couple axle 1, the Umbrella for working 1 that will be in the reefing state is got back, completes kinetic energy gatherer process for the second time thereby cylinder 2 23 drives the mechanical energy output shaft 41 forward rotation actings of kinetic energy conversion output apparatus.
central control system is according to the travelling speed of Umbrella for working, the numerical control directions such as pulling force of direction tricing line and acting rope control motor 1 and direction is controlled motor 2 34, adjust position and the angle of Umbrella for working by direction tricing line 1 and direction tricing line 2 22, make Umbrella for working 1 and Umbrella for working 2 20 repeatedly lift a sail and reefing under the blowing of wind energy, move up and down regularly, gather wind energy, Crankshaft motion as cylinder, one-way transmission gear 1 and one-way transmission gear 2 28 driving mechanicals by cylinder 1 and cylinder 2 23 can ceaselessly keep forward rotation by output shaft 41, driving water pump 44 is converted to mechanical energy stable, can store, but the water energy of remote transmission, for providing, the steady generating of generator stablizes the secure energy.
Fluid dynamic energy converting system of the present invention can gather separately wind energy power, can be in the low latitude, collection wind energy near the ground, as gathering the mountain-valley breeze wind energy in the mountain area, in collection sea-land breeze wind energy, Umbrella for working directly can being hung on the horizontal hawser that draws fixing on the island near seashore; Also wind energy can be converted to the water energy, with water energy cogeneration; Can also change Umbrella for working into water collecting board, directly be used on the water surface of flowing water, do not need to build dam and just can gather water-energy generating electricity, the sonde signal that do not need weather station sonde and sun-generated electric power thereof this moment, is located at ground is accepted the parts such as antenna, sonde data receiver.
The above is preferred embodiment of the present invention, is not limited to the present invention, all modifications of doing in the present invention spirit and principle, is equal to replacement or improvement etc., all should be included in protection scope of the present invention.

Claims (8)

1. fluid dynamic energy converting system comprises: central control system, fluid dynamic energy data acquisition and controlling device, the kinetic energy conversion output apparatus that is connected with described fluid dynamic energy data acquisition and controlling device; It is characterized in that:
Described fluid dynamic energy data acquisition and controlling device comprises: at least one pair of Umbrella for working, and namely Umbrella for working one (10) the acting rope one (11) of being connected (20), connecting respectively described Umbrella for working one (10) umbrella cover both sides with the Umbrella for working acting rope two (21) of being connected (12), connecting respectively described Umbrella for working two (20) umbrella cover both sides with the direction tricing line is connected (22) with the direction tricing line, cylinder one (13) is connected with cylinder (23), are connected with described direction tricing line one (12) winch one (14) and the winch two (24) that (22) end is connected with the direction tricing line respectively;
The end of described acting rope one (11) and acting rope two (21) is wound in respectively described cylinder one (13) and cylinder two (23), described cylinder one (13) is connected the rotating shaft of (23) and is connected with described kinetic energy conversion output apparatus with cylinder, the described Umbrella for working one (10) of fluid driven or Umbrella for working two (20) thus mobilely drive described cylinder one (13) and cylinder two (23) forward rotation are done work;
Described central control system control described winch one (14) and winch two (24) reclaim respectively or loosen described direction tricing line one (12) and direction tricing line two (22) with the direction of adjusting described Umbrella for working one (10) and Umbrella for working two (20) to bagpipe state or reefing state; When described central control system was controlled Umbrella for working one (10) or Umbrella for working two (20) and travelled forward acting to the bagpipe state and by fluid driven by hoisting machine, this central control system was controlled another Umbrella for working to the reefing state and reclaims backward this Umbrella for working by hoisting machine.
2. fluid dynamic energy converting system according to claim 1, it is characterized in that: the rotating shaft of described cylinder one (13) connects couple axle one (16) one end by linkage gear one (15), and the other end of this couple axle one (16) is fixed with couple axle gear one (17); The rotating shaft of described cylinder two (23) connects couple axle two (26) one ends by linkage gear two (25), and the other end of this couple axle two (26) is fixed with couple axle gear two (27); Described couple axle gear one (17) and couple axle gear two (27) are intermeshing, make backward rotation between described cylinder one (13) and cylinder two (23).
3. fluid dynamic energy converting system according to claim 1 and 2, it is characterized in that: described kinetic energy conversion output apparatus comprises mechanical energy output shaft (41), the two ends of this mechanical energy output shaft (41) are fixed with driving gear (42), one-way transmission gear one (18) is installed in the rotating shaft of described cylinder one (13), one-way transmission gear two (28) is installed in the rotating shaft of cylinder two (23), this one-way transmission gear one (18) and one-way transmission gear two (28) are joined with the driving gear (42) at described mechanical energy output shaft (41) two ends respectively and are transmitted moment of rotation when being incorporated in described cylinder one (13) or cylinder two (23) forward rotation.
4. fluid dynamic energy converting system according to claim 3, is characterized in that: the speed-changing gear box (43) that described kinetic energy conversion output apparatus also comprises and described mechanical energy output shaft (41) links and the water pump (44) that is driven by this speed-changing gear box (43).
5. fluid dynamic energy converting system according to claim 1 and 2, it is characterized in that: but also comprise the turning platform that the horizontal 360-degree controlled by described central control system turns to, and described cylinder one (13), cylinder two (23), winch one (14) and winch two (24) are arranged on this turning platform.
6. fluid dynamic energy converting system according to claim 5 is characterized in that: described turning platform is installed on the ground.
7. fluid dynamic energy converting system according to claim 1 and 2, is characterized in that, described central control system comprises: the PLC programming controller, be arranged on pulling force inductor and pulling force sensor data receiving machine on described acting rope and direction tricing line.
8. fluid dynamic energy converting system according to claim 7, it is characterized in that, described central control system also comprises: the sonde signal that establish high-level weather station sonde and sun-generated electric power thereof, is located at ground is accepted antenna and sonde data receiver.
CN201210087062.1A 2012-03-29 2012-03-29 Fluid kinetic energy conversion system Expired - Fee Related CN103147919B (en)

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CN106014861A (en) * 2016-05-17 2016-10-12 北京工业大学 Kite power generating device
CN108061004A (en) * 2017-12-08 2018-05-22 广东高空风能技术有限公司 A kind of method realized high and medium wind electricity generating system and automatically retracted
CN110608129A (en) * 2019-10-28 2019-12-24 重庆理工大学 Advection little water power generation facility based on two water umbrellas switch over each other
CN113915054A (en) * 2021-10-28 2022-01-11 重庆交通大学绿色航空技术研究院 Reciprocating umbrella ladder power generation device and method

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CN102352816A (en) * 2011-06-28 2012-02-15 青岛华创风能有限公司 Ground wind generating set for high air power generation

Cited By (5)

* Cited by examiner, † Cited by third party
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CN106014861A (en) * 2016-05-17 2016-10-12 北京工业大学 Kite power generating device
CN108061004A (en) * 2017-12-08 2018-05-22 广东高空风能技术有限公司 A kind of method realized high and medium wind electricity generating system and automatically retracted
CN110608129A (en) * 2019-10-28 2019-12-24 重庆理工大学 Advection little water power generation facility based on two water umbrellas switch over each other
CN113915054A (en) * 2021-10-28 2022-01-11 重庆交通大学绿色航空技术研究院 Reciprocating umbrella ladder power generation device and method
CN113915054B (en) * 2021-10-28 2023-02-24 重庆交通大学绿色航空技术研究院 Reciprocating umbrella ladder power generation device and method

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