A wind power energy storage device
By using a rotating rod and threaded rod structure to suspend the outer frame of the current energy storage device, and combining it with air-cooled pipe cooling, the problems of leakage and spontaneous combustion in wind power energy storage devices have been solved, improving the safety and stability of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-25
- Publication Date
- 2026-03-10
AI Technical Summary
In wind power energy storage devices, leakage is easy when the energy storage components are in contact with the support base, which may lead to electric shock risk, and heat conduction may cause spontaneous combustion.
The device employs a rotating rod and threaded rod structure, with the outer frame of the current energy storage device suspended in the air. It is cooled by air-cooled pipes and condensation equipment to avoid leakage and heat accumulation.
It effectively reduces the risk of leakage, avoids power leakage and equipment spontaneous combustion, and improves the safety and stability of energy storage devices.
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Figure CN115750216B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of power generation and energy storage devices, in particular to a wind power generation and energy storage device. BACKGROUND
[0002] Wind power generation refers to converting the kinetic energy of wind into electric energy. Wind energy is a clean and renewable energy source that has been used by people for a long time, mainly through windmills to pump water, grind flour, etc. People are interested in how to use wind to generate electricity. After the wind turbine carries the electric energy for production, it needs to use the electric power storage device to carry the circuit for storage. Commonly, energy storage components are used to convert and store electric power.
[0003] In the power generation and energy storage device, the energy storage component is used to store the produced electric energy. The energy storage component is installed inside the support seat of the wind turbine. The installation of the energy storage component inside the energy storage component can increase the utilization rate of space. However, when the energy storage component is installed inside the support seat, the energy storage component needs to be kept in a state of adhesion with the support seat. However, after the energy storage component is adhered to the support seat, the energy storage component contains electric energy inside. When the energy storage component is damaged and leaks, the energy storage component contacts the support seat, which increases the effect of electric energy leakage. At the same time, when the staff contacts the support seat, it will cause the phenomenon of electric shock. Therefore, we propose a wind power generation and energy storage device. SUMMARY
[0004] In view of the deficiencies of the existing wind power generation and energy storage device, the present application provides a wind power generation and energy storage device, which has the advantages of rotating the rotating rod, the rotating rod carrying the threaded rod moving inward, the threaded rod being sleeved inside the outer frame of the current energy storage device outside the outer frame, and the threaded rod carrying the current energy storage device outer frame being in a suspended state, which can reduce the electric leakage. The problems raised in the above background technology are solved.
[0005] The application provides the following technical scheme: a wind power generation energy storage device, comprising a wind power generator support rod and a threaded rod, a lower support base is fixedly connected to the lower part of the wind power generator support rod, a protective door is movably sleeved on the outer side of the lower part of the wind power generator support rod, an outer protective sleeve is installed on the outer side of the wind power generator support rod, a current energy storage equipment outer frame is movably sleeved on the inner side of the threaded rod, a current energy storage equipment maintenance door is movably sleeved on one side of the current energy storage equipment outer frame, the current energy storage equipment is installed in the current energy storage equipment outer frame, a wind cooling pipeline is attached and installed on the inner wall of the wind power generator support rod, a condensation equipment is fixedly connected to the outer side of the wind cooling pipeline, a sliding groove track is fixedly connected to the inner wall of the wind power generator support rod, a gear rod is fixedly connected to the outer wall of the sliding groove track and located on the outer wall of the wind power generator support rod, a sliding rail is movably sleeved on the inner part of the sliding groove track, a connecting column is fixedly connected to the rear end of the sliding rail, a gear is movably sleeved on the outer part of the connecting column, a threaded sleeve is fixedly connected to the inner side of the sliding rail, a threaded rod is movably and threadedly connected to the inner part of the threaded sleeve, a rotating rod is fixedly connected to the outer side of the threaded rod, a water flow limiting sleeve is fixedly connected to the inner wall of the wind power generator support rod, a water pipe is formed in the inner part of the water flow limiting sleeve, an accumulated water pipeline is fixedly connected to the upper end in the wind power generator support rod, an upper protective sleeve is movably sleeved on the outer side of the upper part of the accumulated water pipeline, an air inlet pipeline is fixedly connected to the inner part of the upper end of the wind power generator support rod, and a water drainage groove is formed in the inner part of the upper part of the accumulated water pipeline and located in the wind power generator support rod.
[0006] Preferably, the lower support base is installed on a support base or the ground, fastening bolts are installed between the protective door and the wind power generator support rod, and the height of the protective door is higher than that of the current energy storage equipment outer frame.
[0007] Preferably, four groups of the wind cooling pipeline and the condensation equipment are installed in the wind power generator support rod and the inner part, the wind cooling pipeline is attached to the outer part of the water flow limiting sleeve, and a connecting pipe is installed on the outer side of the condensation equipment and connected to a cold air conveying device.
[0008] Preferably, the outer protective sleeve is movably sleeved on the outer part of the gear rod, and a hinge is installed at one end between the outer protective sleeve and the outer part of the wind power generator support rod.
[0009] Preferably, the connecting column and the gear extend to the outer part of the wind power generator support rod, a gear strip is installed on one side of the gear rod, the gear and the gear rod are connected to each other in meshing mode, and fastening bolts are installed between the gear and the gear rod.
[0010] Preferably, the outer part of the threaded rod is provided with a limiting sleeve, the limiting sleeve is movably sleeved on the outer part of the threaded sleeve, the front end of the threaded rod extends to the inside of one side of the outer frame of the current energy storage device, and the rotating rod extends to the outside of the gear.
[0011] Preferably, three groups of threaded rods are arranged at intervals of 90 degrees on the outside of the outer frame of the current energy storage device, and the lines between the groups of the outer frame of the current energy storage device are connected in series.
[0012] Preferably, the water pipe and the water pipe are connected to each other, the water pipe and the water flow limiting sleeve extend to the lower end of the inner wall of the wind turbine support rod, the upper protective sleeve and the water pipe are movably sleeved and limited, and the air inlet pipe is provided with eight groups of air inlet pipes at equal intervals on the outside of the upper part of the wind turbine support rod.
[0013] Preferably, the water drain groove is located on one side of the upper end of the water pipe, and the wind turbine is arranged on the upper part of the wind turbine support rod.
[0014] Compared with the prior art wind power energy storage device, the present application has the following advantages:
[0015] 1. The wind power energy storage device is installed in the inside of the wind turbine support rod through the current energy storage device outer frame, and the rotating rod is rotated, the threaded rod and the threaded sleeve are screwed, the threaded rod moves inward, and the threaded rod is sleeved in the inside of the current energy storage device outer frame, that is, from the outside of the wind turbine support rod, the position of the current energy storage device outer frame can be pressed and limited by the threaded rod, and the gear is rotated, the gear and the gear rod are engaged, and the height of the current energy storage device outer frame is adjusted to increase the convenience, and the current energy storage device outer frame is kept in a suspended state in the inside of the wind turbine support rod, so that the position of the current energy storage device outer frame is kept in a suspended state, thereby reducing the problem of electric leakage, and avoiding heat conduction to cause burning loss of the current energy storage device outer frame.
[0016] 2. The wind power energy storage device blocks the liquid passing through the upper protective sleeve, the liquid flows into the inside of the water pipe, and the liquid is transported into the inside of the water pipe, so that the wind turbine support rod can be cooled as a whole, and the gas transported into the inside of the wind turbine support rod through the air inlet pipe can cool the equipment placed in the inside of the wind turbine support rod, thereby avoiding the problem of spontaneous combustion caused by high temperature in the process of electric energy conversion.
[0017] 3. The wind power generation energy storage device, the wind cooling pipeline and the condensing equipment are sequentially installed inside and outside the wind turbine support rod, the condensing equipment carries cold air to the inside of the wind cooling pipeline, the cold air carries the wind cooling pipeline to cool down, the wind cooling pipeline is installed inside the wind turbine support rod, which can increase the sufficiency of the cold air in the wind turbine support rod, and avoid the water cooling pipeline from being installed inside the wind turbine support rod, so that the liquid can flow into the inside of the current energy storage device frame when the pipeline is damaged, and the sufficiency of the liquid delivery is increased. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0019] Figure 1 The main structure of the present application is shown in the figure;
[0020] Figure 2 The main structure of the present application is shown in the figure;
[0021] Figure 3 The main structure of the present application is shown in the figure;
[0022] Figure 4 The overall structure of the current energy storage device of the present application is shown in the figure;
[0023] Figure 5 The enlarged structure of A in the present application is shown in the figure.
[0024] In the figure: 1, wind turbine support rod; 2, lower support seat; 3, protective door; 4, outer protective sleeve; 5, wind cooling pipeline; 6, condensing equipment; 7, sliding chute track; 8, gear rod; 9, sliding rail; 10, connecting column; 11, gear; 12, threaded sleeve; 13, threaded rod; 14, rotating rod; 15, current energy storage device frame; 16, current energy storage device maintenance door; 17, current energy storage device; 18, water flow limiting sleeve; 19, water pipe; 20, water accumulation pipeline; 21, upper protective sleeve; 22, air inlet pipeline; 23, water drain groove. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those of ordinary skill in the art without creative work fall within the scope of the present application.
[0026] Please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5The utility model provides a wind power generation energy storage device, including wind driven generator support rod 1 and threaded rod 13, the lower part of wind driven generator support rod 1 is fixedly connected with lower support seat 2, and the installation position of wind driven generator support rod 1 is defined by lower support seat 2, and the outside of the lower part of wind driven generator support rod 1 is movably sleeved with protective door 3, after the opening and closing of protective door 3, the inside of the lower end of wind driven generator support rod 1 forms opening, after the inside of wind driven generator support rod 1 forms opening, the opening can carry current energy storage equipment outer frame 15 and carry out the replacement of disassembly, and the outside of wind driven generator support rod 1 is installed with outer protective sleeve 4, and outer protective sleeve 4 protects the outside of wheel gear rod 8, and outer protective sleeve 4 avoids liquid to slide to the inside of the recess groove of wind driven generator support rod 1, and the inside of threaded rod 13 is movably sleeved with current energy storage equipment outer frame 15, and current energy storage equipment outer frame 15 defines the position of current energy storage equipment 17, and the side of current energy storage equipment outer frame 15 is movably sleeved with current energy storage equipment maintenance door 16, and current energy storage equipment 17 is installed in the inside of current energy storage equipment outer frame 15, and current energy storage equipment 17 carries the storage of electric energy, and the inner wall of wind driven generator support rod 1 is attached with air cooling pipeline 5, and the inside of air cooling pipeline 5 is filled with cold gas, and cold gas carries the inside of wind driven generator support rod 1 and carries out cooling, avoids because high temperature and leads to current energy storage equipment 17 heating combustion damage, and the outside of air cooling pipeline 5 is fixedly connected with condensing equipment 6, and condensing equipment 6 carries cold gas and transports, and the inner wall of wind driven generator support rod 1 is fixedly connected with sliding groove track 7, and sliding groove track 7 carries the movable track of sliding rail 9 and is limited, and the outside of sliding groove track 7 is fixedly connected with wheel gear rod 8 and is located the outer wall of wind driven generator support rod 1, and wheel gear rod 8 is connected with gear 11 between each other and is engaged, when gear 11 rotates, can carry the position of gear 11 and is adjusted, and the inside of sliding groove track 7 is movably sleeved with sliding rail 9, and sliding rail 9 carries the position of threaded rod 13 and is adjusted, and the rear end of sliding rail 9 is fixedly connected with connecting column 10, and the outside of connecting column 10 is movably sleeved with gear 11, and rotating gear 11 carries the height of threaded rod 13 and is adjusted, and the inside of sliding rail 9 is fixedly connected with threaded sleeve 12, and threaded sleeve 12 drives the position of threaded rod 13 and is reinforced, and the inside of threaded sleeve 12 is movably screwed with threaded rod 13, and the outside of threaded rod 13 is fixedly connected with rotating rod 14, and rotating rotating rod 14 carries the inside extension position of threaded rod 13 and is adjusted, and the inner wall of wind driven generator support rod 1 is fixedly connected with water flow limiting sleeve 18, and the inside of water flow limiting sleeve 18 is provided with water pipe 19, and the inside of water pipe 19 is filled with liquid, and liquid carries the inner wall of wind driven generator support rod 1 and is cooled, can effectively reduce the problem in the inside of wind driven generator support rod 1, and the upper end of wind driven generator support rod 1 is fixedly connected with water accumulation pipeline 20 in the inside, and water accumulation pipeline 20 blocks liquid, and the outside of the upper portion of water accumulation pipeline 20 is movably sleeved with upper protective sleeve 21,The upper protective sleeve 21 prevents liquid from flowing into the inside of the wind turbine support rod 1. The upper end of the wind turbine support rod 1 is fixedly connected with an air inlet pipe 22. The air inlet pipe 22 carries external gas to the inside of the wind turbine support rod 1. A water drainage groove 23 is formed in one side of the upper part of the water accumulation pipe 20 and located in the inside of the wind turbine support rod 1.
[0027] With reference to Figure 1 The lower support base 2 is installed on a support base or the ground. The protective door 3 is installed with a fastening bolt between the wind turbine support rod 1. The height of the protective door 3 is higher than the height of the current energy storage device outer frame 15. The lower support base 2 carries the wind turbine support rod 1 and defines the position of the wind turbine support rod 1. The lower support base 2 supports the position of the wind turbine generator. The protective door 3 is located on one side of the lower part of the wind turbine support rod 1. The height of the protective door 3 is greater than the height of the current energy storage device outer frame 15. That is, the current energy storage device outer frame 15 can be taken out through the inside of the protective door 3.
[0028] With reference to Figure 3 The air cooling pipe 5 and the condensing device 6 are installed in four groups inside and outside the wind turbine support rod 1. The air cooling pipe 5 is tightly attached to the outside of the water flow limiting sleeve 18. The condensing device 6 is installed with a connecting pipe on the outside. The connecting pipe is connected with a cold air conveying device. The air cooling pipe 5 and the condensing device 6 are installed in the inside and outside of the wind turbine support rod 1 in sequence. The condensing device 6 carries cold air to the inside of the air cooling pipe 5. The air cooling pipe 5 and the current energy storage device outer frame 15 are kept in a state of close contact. The air cooling pipe 5 can effectively cool the outside of the current energy storage device outer frame 15. The air cooling pipe 5 uses a cold air conveying method for cooling. Compared with water cooling, it can avoid liquid leakage and damage to the power storage device. Compared with air cooling, it can increase the cooling effect.
[0029] With reference to Figure 5 The outer protective sleeve 4 is movably sleeved on the outside of the gear rod 8. One end between the outer protective sleeve 4 and the outside of the wind turbine support rod 1 is installed with a hinge. The outer protective sleeve 4 is movably sleeved on the outside of the gear rod 8. After the outer protective sleeve 4 is turned over, the outer protective sleeve 4 is sleeved on the outside of the sliding groove of the wind turbine support rod 1. The outer protective sleeve 4 can effectively prevent rainwater from sliding into the inside of the wind turbine support rod 1. After the outer protective sleeve 4 is turned over, the outer protective sleeve 4 can control and adjust the position of the adjusting device installed in the inside of the gear rod 8.
[0030] With reference to Figure 4 and Figure 5The connecting column 10 and the gear 11 extend to the outside of the wind turbine support rod 1, one side of the gear rack 8 is provided with a gear strip, the gear 11 is connected with the gear rack 8 in a meshing manner, a fastening bolt is arranged between the gear 11 and the gear rack 8, the sliding rail 9 is movably sleeved in the sliding groove track 7, the sliding groove track 7 limits the movement track of the sliding rail 9, and meanwhile the gear 11 is rotated, the gear 11 and the gear strip arranged on the inner side of the gear rack 8 are connected in a meshing manner, that is, the gear 11 controls and adjusts the height and position of the sliding rail 9, and meanwhile a fastening bolt is arranged in the gear 11, the fastening bolt limits the position of the gear 11 and the gear rack 8, that is, the gear 11 and the fastening bolt control and adjust the position of the sliding rail 9, and the problem that the position of the sliding rail 9 is loose is avoided.
[0031] Reference Figure 5 The outer side of the threaded rod 13 is provided with a limiting sleeve, the limiting sleeve is movably sleeved on the outer side of the threaded sleeve 12, the front end of the threaded rod 13 extends to the inside of one side of the current energy storage equipment outer frame 15, the rotating rod 14 extends to the outer side of the gear 11, the rotating rod 14 extends to the outer side of the gear 11, the rotating rod 14 is rotated, the threaded rod 13 is rotated, the threaded rod 13 is screwed with the threaded sleeve 12, and the threaded rod 13 is controlled and adjusted to move inward by a distance, after the threaded rod 13 moves inward, the position of the current energy storage equipment outer frame 15 is extruded and limited, in the process of limiting the position of the current energy storage equipment outer frame 15, the clamping device is convenient to limit the position of the current energy storage equipment outer frame 15, and in the process that the position of the threaded rod 13 moves upward, the current energy storage equipment outer frame 15 is kept in a suspended state, so that the problem that the current energy storage equipment outer frame 15 is preheated and self-ignited due to the fact that the current energy storage equipment outer frame 15 leaks electricity and external heat is conducted to the inside of the current energy storage equipment outer frame 15 is avoided.
[0032] Reference Figure 4 Three groups of threaded rods 13 are arranged on the outer side of the current energy storage equipment outer frame 15 at an interval of ninety degrees, and the lines between the multiple current energy storage equipment outer frames 15 are connected in series, the three groups of threaded rods 13 are arranged on the outer side of the current energy storage equipment outer frame 15 at an interval of ninety degrees, the position of the current energy storage equipment outer frame 15 is limited by the threaded rods 13, one side of the current energy storage equipment outer frame 15 is provided with an opening, and when the current energy storage equipment outer frame 15 is replaced, the threaded rods 13 do not interfere with the installation position of the current energy storage equipment outer frame 15.
[0033] Reference Figure 2, the water pipe 19 and the water flow limiting sleeve 18 extend to the lower end of the inner wall of the wind turbine support rod 1, the upper protective sleeve 21 and the water collection pipe 20 are sleeved with each other, the air inlet pipe 22 is installed on the outer side of the upper part of the wind turbine support rod 1 in eight groups, the air inlet pipe 22 is installed on the upper part of the upper protective sleeve 21, and the air inlet pipe 22 is connected between the outside of the wind turbine support rod 1 and the inside of the wind turbine support rod 1, the positions of the water collection pipe 20 and the upper protective sleeve 21 are sleeved with each other, when the gas is transported into the inside of the wind turbine support rod 1 through the air inlet pipe 22, the air inlet pipe 22 is installed in different directions, the gas transportation efficiency is increased, the gas can be continuously transported downward through the upper protective sleeve 21 and the water collection pipe 20, the gas is transported into the inside of the wind turbine support rod 1, the gas is used for air cooling treatment of the equipment in the inside of the wind turbine support rod 1, when the air inlet pipe 22 absorbs water vapor in the gas, the water vapor is blocked by the water collection pipe 20 and is accumulated on the outside of the water collection pipe 20, and the liquid accumulated in the water pipe 19 can be used for water cooling of the whole wind turbine support rod 1, so that the cooling efficiency of the whole wind turbine support rod 1 is increased.
[0034] Reference Figure 1 The water outlet groove 23 is located on one side of the upper end of the water collection pipe 20, the upper part of the wind turbine support rod 1 is provided with a wind turbine, when the liquid in the inside of the water collection pipe 20 is too much, the liquid overflows the inside of the water outlet groove 23, the water outlet groove 23 carries the liquid collected too much to discharge, the upper part of the wind turbine support rod 1 is provided with a wind turbine, the wind turbine can produce electric power, and the produced electric power is transported into the inside of the current energy storage device 17, and the current energy storage device 17 can store the electric power.
[0035] Working principle: in use, the current energy storage device 17 is installed inside the current energy storage device outer frame 15, and the current energy storage device outer frame 15 is transported from the position of the protective door 3 to the inside of the wind driven generator support rod 1, and the current energy storage device outer frame 15 is installed in the middle of the wind driven generator support rod 1, and the rotating rod 14 is rotated, the rotating rod 14 carries the threaded rod 13 to rotate, the threaded rod 13 and the threaded sleeve 12 are in threaded motion, that is, the threaded rod 13 pushes to move inward, the threaded rod 13 is movably sleeved on the inside of the outside of the current energy storage device outer frame 15, that is, the threaded rod 13 carries the position of the current energy storage device outer frame 15 to be extruded and limited, so as to avoid the position of the current energy storage device outer frame 15 from deviating, and to keep the position of the current energy storage device outer frame 15 in a suspended state, reduce the problem of electric leakage caused by filling electric energy in the current energy storage device outer frame 15, and rotate the gear 11, the gear 11 and the gear rod 8 are in meshing motion, which can carry the height of the current energy storage device outer frame 15 for adjustment, and the current energy storage device outer frame 15 can be installed in the wind driven generator support rod 1 in turn, which can increase the stability of the current energy storage device outer frame 15 when stacked, and the current energy storage device outer frame 15 is in series, which can increase the mutual communication between the devices in series, and the air inlet pipe 22 receives air from nature, the air carries gas into the inside of the wind driven generator support rod 1, the gas mixes in the inside of the wind driven generator support rod 1, which can increase the air flow after increasing the air flow, and can increase the heat dissipation performance of the current energy storage device 17 in use, and the liquid flows into the inside of the water pipe 19, the liquid in the inside of the water pipe 19 increases the heat dissipation performance of the wind driven generator support rod 1 as a whole, and the air cooling pipe 5 and the condenser 6 are cooled by gas, which increases the cooling effect and avoids the problem of damage to the current energy storage device 17 caused by water leakage.
[0036] Finally, it should be pointed out that: the above examples are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art can understand that the technical solutions described in the foregoing examples can be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A wind power generation energy storage device, comprising a wind turbine support rod (1) and a threaded rod (13), wherein a lower support base (2) is fixedly connected to the lower part of the wind turbine support rod (1), a protective door (3) is movably sleeved on the outer side of the lower part of the wind turbine support rod (1), an outer protective sleeve (4) is installed on the outer side of the wind turbine support rod (1), an outer frame (15) of a current energy storage device is movably sleeved on the inner side of the threaded rod (13), a maintenance door (16) of a current energy storage device is movably sleeved on one side of the outer frame (15), and a current energy storage device (17) is installed inside the outer frame (15), characterized in that: The inner wall of the wind turbine support rod (1) is provided with a wind cooling pipe (5), the outer side of the wind cooling pipe (5) is fixedly connected with a condensing device (6), the inner wall of the wind turbine support rod (1) is fixedly connected with a sliding chute track (7), the outer side of the sliding chute track (7) and the outer wall of the wind turbine support rod (1) are fixedly connected with a gear rod (8), the inner side of the sliding chute track (7) movably sleeved with a sliding rail (9), the rear end of the sliding rail (9) is fixedly connected with a connecting column (10), the outer side of the connecting column (10) movably sleeved with a gear (11), the inner side of the sliding rail (9) is fixedly connected with a threaded sleeve (12), the inner side of the threaded sleeve (12) movably threaded with a threaded rod (13), the outer side of the threaded rod (13) is fixedly connected with a rotating rod (14), the inner wall of the wind turbine support rod (1) is fixedly connected with a water flow limiting sleeve (18), the inner side of the water flow limiting sleeve (18) is provided with a water pipe (19), the upper end of the wind turbine support rod (1) is fixedly connected with an accumulated water pipe (20), the outer side of the upper part of the accumulated water pipe (20) movably sleeved with an upper protective sleeve (21), the inner side of the upper end of the wind turbine support rod (1) is fixedly connected with an air inlet pipe (22), one side of the upper part of the accumulated water pipe (20) and the inner side of the wind turbine support rod (1) are provided with a water drain groove (23).
2. A wind power energy storage device according to claim 1, characterized in that: The lower support base (2) is installed on the support base or the ground, the fastening bolt is installed between the protective door (3) and the wind turbine support rod (1), and the height of the protective door (3) is higher than that of the current energy storage device outer frame (15).
3. The wind power energy storage device of claim 1, wherein: The wind cooling pipe (5) and the condensing device (6) are installed in four groups inside the wind turbine support rod (1), the wind cooling pipe (5) is close to the outer side of the water flow limiting sleeve (18), and the outer side of the condensing device (6) is provided with a connecting pipe which is connected with the cold air conveying device.
4. The wind power energy storage device of claim 1, wherein: The outer protective sleeve (4) is movably sleeved on the outer side of the gear rod (8), and one end between the outer protective sleeve (4) and the outer side of the wind turbine support rod (1) is provided with a hinge.
5. A wind power energy storage device according to claim 1, characterized in that: The connecting column (10) and the gear (11) extend to the outer side of the wind turbine support rod (1), one side of the gear rod (8) is provided with a gear strip, the gear (11) and the gear rod (8) are connected with each other, and the gear (11) and the gear rod (8) are provided with fastening bolts.
6. A wind power energy storage device according to claim 1, characterized in that: The outer side of the threaded rod (13) is provided with a limiting sleeve, the limiting sleeve is movably sleeved on the outer side of the threaded sleeve (12), the front end of the threaded rod (13) extends to the inner side of one side of the current energy storage device outer frame (15), and the rotating rod (14) extends to the outer side of the gear (11).
7. The wind power energy storage device of claim 1, wherein: The outer side of the current energy storage device outer frame (15) is provided with three groups of threaded rods (13) at an interval of ninety, and the lines between the multiple current energy storage device outer frames (15) are connected in series.
8. The wind power energy storage device of claim 1, wherein: The water pipe (19) and the water flow limiting sleeve (18) extend to the lower end of the inner wall of the wind driven generator support pole (1), the upper protective sleeve (21) and the water pipe (20) are sleeved to define, the air inlet pipe (22) is installed with eight groups at the outer side of the upper part of the wind driven generator support pole (1).
9. The wind power energy storage device of claim 1, wherein: The water outlet (23) is located on one side of the upper end of the water pipe (20), and the wind driven generator is installed on the upper part of the wind driven generator support pole (1).
Citation Information
Patent Citations
Energy storage device for wind power generation
CN214221400U
Power generating apparatus of renewable energy type
US20120063898A1