CN109356794A - It is a kind of based on wind energy to there is the magnetic of power wide area self-regulating characteristics to be vortexed heating combined equipment - Google Patents
It is a kind of based on wind energy to there is the magnetic of power wide area self-regulating characteristics to be vortexed heating combined equipment Download PDFInfo
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- CN109356794A CN109356794A CN201811437898.3A CN201811437898A CN109356794A CN 109356794 A CN109356794 A CN 109356794A CN 201811437898 A CN201811437898 A CN 201811437898A CN 109356794 A CN109356794 A CN 109356794A
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D9/00—Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
- F03D9/10—Combinations of wind motors with apparatus storing energy
- F03D9/18—Combinations of wind motors with apparatus storing energy storing heat
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D80/00—Details, components or accessories not provided for in groups F03D1/00 - F03D17/00
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- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B6/00—Heating by electric, magnetic or electromagnetic fields
- H05B6/02—Induction heating
- H05B6/10—Induction heating apparatus, other than furnaces, for specific applications
- H05B6/101—Induction heating apparatus, other than furnaces, for specific applications for local heating of metal pieces
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/70—Wind energy
- Y02E10/72—Wind turbines with rotation axis in wind direction
-
- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E70/00—Other energy conversion or management systems reducing GHG emissions
- Y02E70/30—Systems combining energy storage with energy generation of non-fossil origin
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- Life Sciences & Earth Sciences (AREA)
- Sustainable Development (AREA)
- Sustainable Energy (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Electromagnetism (AREA)
- Power Engineering (AREA)
- Wind Motors (AREA)
Abstract
The present invention is a kind of magnetic vortex heating combined equipment based on wind energy with power wide area self-regulating characteristics, comprising: lift-type pneumatic equipment bladess and supporting structure part, wind energy conversion system shaft, permanent magnet blocks, heater, center bearing bracket axis, working medium circulation pipeline, positioning element, move back and forth support member, working medium circulating pump, base member, in the process of running, utilize the variation relation of wind energy conversion system aerodynamic force obtained and spring power, magnetic vortex heating structure motion part is set to generate change in displacement, change effective work area, realize the automatic adjustment of output power, magnetic is vortexed heating structure along wind turbine shaft to carrying out multistage arrangement simultaneously, while further decreasing wind energy conversion system threshold wind velocity, but also heats power can change in 0-100% rated power section, magnetic vortex heating combined equipment power wide area is realized to adjust automatically Section, is sufficiently efficiently utilized wind energy.
Description
Technical field
The present invention relates to heating combined equipments, based on wind energy there is the magnetic of power wide area self-regulating characteristics to be vortexed more particularly to a kind of
Heating combined equipment.
Background technique
With the rapid development of social economy, energy-output ratio increasingly increases in world wide, fossil energy exhaustion and ring
Border pollution problem is increasingly subject to the extensive concern of countries in the world.In recent years, based on solar energy, wind energy, geothermal energy, ocean energy
New energy development is developed rapidly using technology.It is small far from heating network overlay area in the way of wind energy heating
Industrial park and village provide heat, have significant social benefit and environmental benefit, and Pneumatic heating device has obtained answering extensively
With.
The existing magnetic vortex heating combined equipment based on wind energy has the following problems:
1, it needs transmission mechanism between wind energy conversion system and magnetic vortex heating structure to be attached, and transmission ratio is fixed value,
Cause wind energy conversion system threshold wind velocity mostly in 7-8m/s or more.When wind speed is lower than above-mentioned wind speed interval in natural environment, magnetic vortex
Heating combined equipment can not start, and therefore, wind-resources cannot be effectively used;
2, when wind speed is higher than threshold wind velocity in natural environment, magnetic vortex heating combined equipment enters working condition, makes circulation industrial
Matter temperature rise reaches 35 DEG C, and the above are heat users to provide heat;But with the variation of wind speed, magnetic is vortexed the output power of heating combined equipment
It is only capable of changing in the range of design power 60%-100%, output power variation range is extremely limited;
3, for the influence for utmostly avoiding surface obstructions object from running wind energy conversion system, wind energy conversion system usually requires to be installed in
Highly locate apart from ground 6m or more;On the one hand, when magnetic is vortexed heating structure arrangement on the ground, although easy access work
Progress and the design of heat supplying pipeline, but need the difference in height of transmission mechanism compensation 6m or more, it will it is difficult to significantly increase installation
Degree and system complexity;On the other hand, when magnetic, which is vortexed heating structure, to be arranged at wind energy conversion system mounting height, although making to be driven
Mechanism becomes compact, but additional setting magnetic is needed to be vortexed heat-producing machine supporting structure and increase the difficulty of service work.
Summary of the invention
The present invention aiming at the problems existing in the prior art, devises that a kind of threshold wind velocity is low, integrated level is high, operational safety
Reliably, Power auto-adjustment can be achieved based on wind energy there is the magnetic of power wide area self-regulating characteristics to be vortexed heating combined equipment, run
In the process, changed by the length travel of wind energy conversion system main shaft with the active of wind friction velocity, change effective work of magnetic vortex heating structure
Make area, and then adjust magnetic vortex heating combined equipment output power in real time, realizes the magnetic vortex heating combined equipment output based on wind energy
The purpose of power wide area automatic adjustment.
Realize the technical scheme adopted by the invention is that: it is a kind of based on wind energy have power wide area self-regulating characteristics magnetic be vortexed
Heating combined equipment, it includes: lift-type pneumatic equipment bladess and supporting structure part 1, permanent magnet blocks 3, working medium circulation pipeline 6, working medium
Circulating pump 9, characterized in that it further include: wind energy conversion system shaft 2, center bearing bracket axis 5, positioning element 7, moves back and forth heater 4
The pedestal supporter 24 of support member 8, base member 10, the 5 lower end spindle nose of center bearing bracket axis and base member 10 is connected,
The 5 upper end spindle nose of center bearing bracket axis and the second bearing 12 of positioning element 7 is slidably connected, and positioning element 7 is along center branch
The axis direction of frame axis 5 moves back and forth, and the pedestal positioning body 23 of base member 10 is arranged in the reciprocating motion support member 8
Interior, 18 bottom surface of spring for moving back and forth support member 8 is connect with the inner face of the pedestal positioning body 23 of pedestal positioning body 23, back and forth
The outer round surface of the supporter 15 of kinematic mount feature 8 is slidably connected with fourth bearing 17 and 19 inner surface of 5th bearing respectively,
It moves back and forth support member 8 to move back and forth along the axis direction of pedestal positioning body 23, the center bearing bracket axis 5 passes through reciprocal
8 center of kinematic mount feature, the 2 lower part between centers of wind energy conversion system shaft and the 6th bearing 22 in reciprocating motion support member 8
Upper surface is connected, and 16 inner ring of 3rd bearing in 2 lower part spindle nose of wind energy conversion system shaft and support member 8 is connected, the wind energy conversion system
The inner ring of first bearing 11 in 2 top spindle nose of shaft and positioning element 7 is connected, and wind energy conversion system shaft 2 can with respect to center bearing bracket axis 5
To rotate and move back and forth, on the center bearing bracket axis 5, in opposite 2 axocoel of wind energy conversion system shaft, heater 4 is set gradually,
Heater 4 and center bearing bracket axis 5 are connected, and heater 4 is connected to by working medium circulation pipeline 6 from bottom to top, the heater 4 of bottom
It is connected to circulation line inlet tube 20, the heater 4 of the top is connected to circulation line outlet 21, and the circulation line enters
Mouth pipe 20 and circulation line outlet 21 are set in center bearing bracket axis 5, the circulation line inlet tube 20 and working medium circulation
9 connection of pump, on 2 inner surface of wind energy conversion system shaft, permanent magnet blocks 3, the lift-type wind is arranged in corresponding heater 4
Power machine blade and supporting structure part 1 and wind energy conversion system shaft 2 are connected.
The positioning element 7 includes: first bearing 11, second bearing 12, positioning body 13, the positioning body 13 first
Inner hole and 11 outer ring of first bearing are connected, and 13 second inner hole of positioning body and 12 outer ring of second bearing are connected.
The reciprocating motion support member 8 includes: supporter 15,3rd bearing 16, spring 18,6th bearing 22, institute
15 first stepped hole of supporter stated and 22 lower end surface of 6th bearing are connected, and 15 second inner hole of supporter is outer with 3rd bearing 16
Ring is connected, and the spring 18 and 15 lower part spindle nose of supporter is coaxial, is arranged on the outside of 15 lower part spindle nose of supporter.
The base member 10 includes: fourth bearing 17,5th bearing 19, pedestal positioning body 23, pedestal supporter 24,
The pedestal positioning body 23 and pedestal supporter 24 is connected, the first inner hole and the second inner hole point of the pedestal positioning body 23
It is not connected with the outer ring of fourth bearing 17 and 5th bearing 19.
A kind of beneficial effect of the magnetic vortex heating combined equipment based on wind energy with power wide area self-regulating characteristics of the present invention is embodied:
1, in a kind of magnetic vortex heating combined equipment based on wind energy with power wide area self-regulating characteristics, magnetic is vortexed heating knot
Structure is arranged in inside wind energy conversion system main shaft, the transmission mechanism of configuration needed for eliminating magnetic vortex heating combined equipment of the tradition based on wind energy,
The integrated level of device is significantly improved, maintenance period is extended, installation difficulty is reduced, effectively controls manufacturing cost;
2, when reaching entry condition and bringing into operation, there is the magnetic vortex heating dress of power wide area self-regulating characteristics based on wind energy
It sets, does not generate load brought by heating structure, be equivalent to zero load starting, the threshold wind velocity of device will be effectively reduced, realize
Quick start simultaneously as being provided with thrust ball bearing structure and thrust spring structure, therefore effectively can inhibit to start, stop
Vibratory impulse during machine and changed power significantly improves the ride comfort and stability of device operation;
3, a kind of based on wind energy to there is the magnetic of power wide area self-regulating characteristics to be vortexed heating combined equipment, it can be at it using wind speed
In section, variation of the output power between 0-100% rated power is realized, while device output power is with extraneous wind friction velocity
Variation automatic adjustment in real time, eliminates control system, it is made to remain optimum working state, to efficiently having using wind energy
Important theory significance and engineering application value.
Detailed description of the invention
Fig. 1 is a kind of magnetic vortex heating combined equipment schematic diagram based on wind energy with power wide area self-regulating characteristics;
Fig. 2 is positioning element cutaway enlargement diagram in Fig. 1;
Fig. 3 is that reciprocating member cutaway enlargement diagram is supported in Fig. 1
Fig. 4 is heating region cutaway enlargement diagram in Fig. 1;
Fig. 5 is A-A cross-sectional view in Fig. 4;
In figure, 1. lift-type pneumatic equipment bladess and supporting structure, 2. wind energy conversion system shafts, 3. Nd-Fe-B permanent magnet blocks, 4. hairs
Hot body, 5. center bearing bracket axis, 6. working medium circulation pipelines, 7. positioning elements, 8. reciprocating motion support members, 9. working medium circulating pumps,
10. base member, 11. first bearings, 12. second bearings, 13. positioning bodies, 14. shields, 15. supporters, 16. third axis
It holds, 17. fourth bearings, 18. springs, 19. 5th bearings, 20. circulation line inlet tubes, 21. circulation line outlets, 22.
Six bearings, 23. pedestal positioning bodies, 24. pedestal supporters.
Specific embodiment
The present invention is described in further detail below in conjunction with the drawings and specific embodiments, specific implementation described herein
Example is not intended to limit the present invention only to explain the present invention.
Referring to figs. 1 to Fig. 4, the present invention is a kind of based on wind energy to there is the magnetic of power wide area self-regulating characteristics to be vortexed heating combined equipment,
It includes: lift-type pneumatic equipment bladess and supporting structure part 1, wind energy conversion system shaft 2, permanent magnet blocks 3, heater 4, center bearing bracket
Axis 5, working medium circulation pipeline 6, positioning element 7, move back and forth support member 8, working medium circulating pump 9, base member 10, it is described in
The pedestal supporter 24 of 5 lower end spindle nose of cardiac skeleton axis and base member 10 is connected, the 5 upper end spindle nose of center bearing bracket axis and fixed
The second bearing 12 of position component 7 is slidably connected, and positioning element 7 is moved back and forth along the axis direction of center bearing bracket axis 5, described
It moves back and forth support member 8 to be arranged in the pedestal positioning body 23 of base member 10, moves back and forth 18 bottom of spring of support member 8
Face is connect with the inner face of the pedestal positioning body 23 of pedestal positioning body 23, moves back and forth the outer circle of the supporter 15 of support member 8
Surface is slidably connected with fourth bearing 17 and 19 inner surface of 5th bearing respectively, moves back and forth support member 8 and positions along pedestal
The axis direction of body 23 moves back and forth, and the center bearing bracket axis 5, which passes through, moves back and forth 8 center of support member, the wind-force
2 lower part between centers of machine shaft and 22 upper surface of 6th bearing moved back and forth in support member 8 are connected, 2 lower part axis of wind energy conversion system shaft
Head is connected with 16 inner ring of 3rd bearing in support member 8, in the 2 top spindle nose of wind energy conversion system shaft and positioning element 7
The inner ring of first bearing 11 is connected, and wind energy conversion system shaft 2 can be rotated and be moved back and forth relative to center bearing bracket axis 5, in described
On cardiac skeleton axis 5, in opposite 2 axocoel of wind energy conversion system shaft, heater 4 is set gradually, heater 4 and center bearing bracket axis 5 are connected, hair
Hot body 4 is connected to by working medium circulation pipeline 6 from bottom to top, and the heater 4 of bottom is connected to circulation line inlet tube 20, most upper
The heater 4 of side is connected to circulation line outlet 21, and the circulation line inlet tube 20 and circulation line outlet 21 are set
It is placed in center bearing bracket axis 5, the circulation line inlet tube 20 is connect with working medium circulating pump 9, in the wind energy conversion system shaft 2
On inner surface, permanent magnet blocks 3, the lift-type pneumatic equipment bladess and supporting structure part 1 and wind is arranged in corresponding heater 4
Power machine shaft 2 is connected.
The positioning element 7 includes: first bearing 11, second bearing 12, positioning body 13, the positioning body 13 first
Inner hole and 11 outer ring of first bearing are connected, and 13 second inner hole of positioning body and 12 outer ring of second bearing are connected.
The reciprocating motion support member 8 includes: supporter 15,3rd bearing 16, spring 18,6th bearing 22, institute
15 first stepped hole of supporter stated and 22 lower end surface of 6th bearing are connected, and 15 second inner hole of supporter is outer with 3rd bearing 16
Ring is connected, and the spring 18 and 15 lower part spindle nose of supporter is coaxial, is arranged on the outside of 15 lower part spindle nose of supporter.
The base member 10 includes: fourth bearing 17,5th bearing 19, pedestal positioning body 23, pedestal supporter 24,
The pedestal positioning body 23 and pedestal supporter 24 is connected, the first inner hole and the second inner hole point of the pedestal positioning body 23
It is not connected with the outer ring of fourth bearing 17 and 5th bearing 19.
Embodiment one:
When wind speed is lower than 3m/s, magnetic vortex heating combined equipment is in standby, and heater 4 and is attached at wind energy conversion system shaft
The Nd-Fe-B permanent magnet block 3 of 2 inner walls is in interleaved state, and effective work area is zero, is in zero load condition, at this point, support
18 deformation quantity of spring in reciprocating member 8 reaches maximum, provided elastic force and wind energy conversion system shaft 2 and its accessory structure
Generated gravity is equal, and when wind speed is greater than magnetic vortex heating combined equipment threshold wind velocity, wind energy conversion system can be real under zero load condition
Existing quick start.
Embodiment two:
When wind speed is in 3m/s to 30m/s wind speed interval, magnetic vortex heating combined equipment is in operating status, does not send out in wind speed
When life is fluctuated widely, effective work area is definite value, aerodynamic torque and damping torque phase of the wind energy conversion system in direction of rotation
When, when wind speed is gradually increased, the aerodynamic torque that wind energy conversion system generates increases with the buoyancy lift of vertical direction by synchronous, this
When, due to the effect of vertical direction buoyancy lift, move back and forth the spring 18 in support member 8, will push wind energy conversion system shaft 2 and its
Accessory structure generates displacement vertically upward, increases the effective work area of magnetic vortex heating structure, damping torque increases, and works as sky
When aerodynamic force torque and damping torque arrive again at balance, wind energy conversion system shaft 2 is displaced in vertical direction stops variation, reaches new
Stable state, output power improves, and when wind speed is gradually reduced, the buoyancy lift of wind energy conversion system vertically is synchronous to be reduced, wind-force
Machine shaft 2 generates downward displacement in vertical direction, reduces the effective work area of magnetic vortex heating structure, damping torque subtracts
Small, when aerodynamic torque reaches new equilibrium state with damping torque, output power reduces.Therefore, using wind speed
In section, magnetic of the present invention vortex heating combined equipment may be implemented zero energy export to the wide area power that rated power exports from
Dynamic regulatory function.
Embodiment three:
When wind speed is higher than 30m/s, the buoyancy lift caused by wind energy conversion system vertically be will be further increased, therefore,
The displacement that wind energy conversion system shaft 2 generates in vertical direction will be further increased, but the effective work area of magnetic vortex heating structure will
It can reduce, wind energy conversion system is in the stall operating status of high revolving speed, small load at this time, and wind energy conversion system entirety stress will reduce, rise
It, can be with effective protection magnetic vortex system of the present invention in the range of speeds that power type pneumatic equipment bladess and supporting structure 1 can be born
Thermal is not destroyed by caused by high wind.
The working principle of magnetic vortex heating combined equipment based on wind energy with power wide area self-regulating characteristics of the invention is as follows:
Magnetic vortex heating structure is mainly by heater and set of permanent magnets at when heater and permanent magnet generate relative motion
When, heater will generate heat by magnetic force line cutting, internal eddy current, and heater, which is projected to the area of permanent magnet, to be referred to as
Work area, under the premise of speed of related movement is certain, when work area changes, output power will be generated accordingly
Variation, magnetic of the present invention vortex heating combined equipment is exactly that output power is adjusted by changing work area, is
The function of achieving automatic adjustment, using permanent magnet is attached at wind energy conversion system shaft inner wall as motion parts, meanwhile, to wind-force
The setting angle of machine blade is adjusted, and so that it is generated required buoyancy lift in the process of running, allows permanent magnet and fever
The work area of body changes, in addition, in order to avoid the problem for causing work area amplitude of variation small due to buoyancy lift deficiency,
Deficiency provided with thrust spring mechanism compensation buoyancy lift provides bigger displacement, and then realizes that zero energy is exported to specified
The wide area Power auto-adjustment function of power output.
1, lift-type H-type vertical axis windmill relevant parameter:
Rated power: 2.5kW;
Threshold wind velocity: 3m/s;
Rated wind speed: 18m/s;
Survival wind speed: 30m/s;
Rotor diameter: 3.5m;
Blade quantity: 4;
Blade material: glass reinforced plastic;
Operating temperature: -40 DEG C -80 DEG C.
2. magnetic vortex heating structure relevant parameter
Permanent magnet material: neodymium iron boron;
Safe temperature: 150 DEG C;
Motion parts numbers of pole-pairs at different levels: 4 grades;
Permanent magnet installation series: 8 grades;
Heater material: iron;
Heater outer diameter: 245mm;
Heater runner number: 12 channels;
Heater installation series: 8 grades:
3. circulatory system parameter
Pump flow: 1.5m3/h
Pipe diameter: 25mm;
Wind energy conversion system main shaft interconnecting tube material: high temperature resistant canvas filler rubber pipe;
Pneumatic equipment bladess employed in the present invention, each class bearing, connector, fastener, circulating pump, circulating line are
Commercial product, remaining each component need to customize processing.
The above is only preferred embodiment of the invention, it is noted that for the ordinary skill people of the art
For member, various improvements and modifications may be made without departing from the principle of the present invention, these improvements and modifications are also answered
This is considered as protection scope of the present invention.
Claims (4)
1. a kind of based on wind energy there is the magnetic of power wide area self-regulating characteristics to be vortexed heating combined equipment, it includes: lift-type wind energy conversion system leaf
Piece and supporting structure part (1), permanent magnet blocks (3), working medium circulation pipeline (6), working medium circulating pump (9), characterized in that it is also wrapped
Include: wind energy conversion system shaft (2), center bearing bracket axis (5), positioning element (7), moves back and forth support member (8), pedestal at heater (4)
Component (10), center bearing bracket axis (5) the lower end spindle nose and the pedestal supporter (24) of base member (10) are connected, described
Center bearing bracket axis (5) upper end spindle nose and the second bearing (12) of positioning element (7) are slidably connected, and positioning element (7) is along center
The axis direction of support shaft (5) moves back and forth, pedestal of reciprocating motion support member (8) setting in base member (10)
In positioning body (23), the bottom surface of the spring (18) of support member (8) and the pedestal positioning body of pedestal positioning body (23) are moved back and forth
(23) inner face connection, move back and forth support member (8) supporter (15) outer round surface respectively with fourth bearing (17)
It is slidably connected with 5th bearing (19) inner surface, moves back and forth support member (8) along the axis direction of pedestal positioning body (23)
It moves back and forth, the center bearing bracket axis (5) is under support member (8) center of reciprocating motion, the wind energy conversion system shaft (2)
Portion's between centers and move back and forth support member (8) in 6th bearing (22) upper surface be connected, wind energy conversion system shaft (2) lower part spindle nose with
3rd bearing (16) inner ring in support member (8) is connected, wind energy conversion system shaft (2) the top spindle nose and positioning element (7)
In first bearing (11) inner ring be connected, wind energy conversion system shaft (2) can be rotated and be moved back and forth relative to center bearing bracket axis (5),
On the center bearing bracket axis (5), in opposite wind energy conversion system shaft (2) axocoel, set gradually heater (4), heater (4) with
Center bearing bracket axis (5) is connected, and heater (4) is connected to by working medium circulation pipeline (6) from bottom to top, the heater (4) of bottom
It is connected to circulation line inlet tube (20), the heater (4) of the top is connected to circulation line outlet (21), the circulation
Line entry pipe (20) and circulation line outlet (21) are set in center bearing bracket axis (5), the circulation line inlet tube
(20) it is connect with working medium circulating pump (9), on described wind energy conversion system shaft (2) inner surface, permanent magnetism is arranged in corresponding heater (4)
Body block (3), the lift-type pneumatic equipment bladess and supporting structure part (1) and wind energy conversion system shaft (2) are connected.
2. a kind of magnetic vortex heating combined equipment based on wind energy with power wide area self-regulating characteristics according to claim 1, feature
It is that the positioning element (7) includes: first bearing (11), second bearing (12), positioning body (13), the positioning body
(13) first inner holes and first bearing (11) outer ring are connected, (13) second inner hole of positioning body and second bearing (12) outer ring
It is connected.
3. a kind of magnetic vortex heating combined equipment based on wind energy with power wide area self-regulating characteristics according to claim 1, feature
It is that the reciprocating motion support member (8) includes: supporter (15), 3rd bearing (16), spring (18), 6th bearing
(22), (15) first stepped hole of supporter and 6th bearing (22) lower end surface are connected, (15) second inner hole of supporter with
The outer ring of 3rd bearing (16) is connected, and the spring (18) and supporter (15) lower part spindle nose is coaxial, is arranged in supporter
(15) on the outside of the spindle nose of lower part.
4. a kind of magnetic vortex heating combined equipment based on wind energy with power wide area self-regulating characteristics according to claim 1, feature
It is that the base member (10) includes: fourth bearing (17), 5th bearing (19), pedestal positioning body (23), pedestal supporter
(24), the pedestal positioning body (23) and pedestal supporter (24) are connected, the first inner hole of the pedestal positioning body (23)
It is connected respectively with the outer ring of fourth bearing (17) and 5th bearing (19) with the second inner hole.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201811437898.3A CN109356794B (en) | 2018-11-29 | 2018-11-29 | Magnetic eddy current heating device with wide-power-range self-regulation characteristic based on wind energy |
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CN201811437898.3A CN109356794B (en) | 2018-11-29 | 2018-11-29 | Magnetic eddy current heating device with wide-power-range self-regulation characteristic based on wind energy |
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CN109356794B CN109356794B (en) | 2020-03-10 |
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CN201811437898.3A Expired - Fee Related CN109356794B (en) | 2018-11-29 | 2018-11-29 | Magnetic eddy current heating device with wide-power-range self-regulation characteristic based on wind energy |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110805651A (en) * | 2019-10-28 | 2020-02-18 | 华中科技大学 | Self-adaptive adjusting eddy current damper |
CN111121285A (en) * | 2019-12-31 | 2020-05-08 | 南京比尔森热力技术工程有限公司 | Novel hot water supply equipment |
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JP2017122412A (en) * | 2016-01-07 | 2017-07-13 | 新日鐵住金株式会社 | Eddy current type heat generating device |
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CN110805651A (en) * | 2019-10-28 | 2020-02-18 | 华中科技大学 | Self-adaptive adjusting eddy current damper |
CN111121285A (en) * | 2019-12-31 | 2020-05-08 | 南京比尔森热力技术工程有限公司 | Novel hot water supply equipment |
CN111121285B (en) * | 2019-12-31 | 2021-04-02 | 南京比尔森热力技术工程有限公司 | Novel hot water supply equipment |
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