An energy storage power station based on new energy storage

By designing multiple sets of support plates in the energy storage power station to fix the energy storage battery, and using the rotating column to drive the air outlet of the air cooler to rotate to achieve uniform heat dissipation, and at the same time, the dust removal mechanism is linked to clean the dust, the problems of uneven heat dissipation and dust accumulation of energy storage batteries are solved, and the heat dissipation efficiency and equipment self-cleaning ability are improved.

CN119725881BActive Publication Date: 2025-05-09SHENZHEN WORLD ELECTRONIC CO LTD
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Patent Information

Application Number
CN202510224396.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2025-05-09
Estimated Expiration
2045-02-27

AI Technical Summary

Technical Problem

Energy storage batteries in energy storage power stations are difficult to dissipate heat evenly, and it is easy to accumulate dust and affect the heat dissipation efficiency.

Method used

An energy storage power station based on new energy reserves was designed, using multiple sets of support plates to fix the energy storage battery, and the air outlet of the air cooler was driven to rotate through the rotating column to achieve uniform heat dissipation and cooling of the energy storage battery. At the same time, through the linked dust removal mechanism, dust on the battery surface is cleaned during the rotation of the rotating column, and the clean air conditioner is discharged after filtering.

Benefits of technology

It realizes uniform heat dissipation of energy storage batteries, synchronous cleaning and collecting internal dust, improves heat dissipation efficiency and avoids air loss, and realizes the self-cleaning function inside the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an energy storage power station based on new energy storage, relates to the field of new energy energy storage power stations, and solves the problem that the energy storage batteries inside the existing new energy energy storage power stations are difficult to dissipate heat evenly and are prone to accumulate dust, affecting the heat dissipation efficiency when in use. The invention comprises a base, a fixing mechanism, a heat dissipation mechanism and a dust removal mechanism. A rotating column is rotatably connected to the base, and a plurality of groups of energy storage batteries are arranged on the upper side of the base. The fixing mechanism comprises a support plate, and the heat dissipation mechanism comprises an air cooler. The invention fixes and supports the energy storage batteries through the plurality of support plates, drives the rotating column to rotate through the heat dissipation mechanism, and simultaneously causes the air outlet of the air cooler to rotate, so as to dissipate heat and cool the energy storage batteries on the surrounding support plates evenly. During the rotation of the rotating column, the surface of the energy storage battery is cleaned through the dust removal mechanism, and the cleaned dust can be shaken off and collected, and discharged to the surrounding of the energy storage battery after filtering.
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Description

Technical Field

[0001] The present invention relates to the technical field of new energy storage power stations, and in particular to a new energy storage power station. Background Art

[0002] As global energy demand continues to increase, traditional fossil energy supply is gradually facing challenges of resource depletion and environmental problems. Therefore, renewable energy such as wind energy and solar energy have gradually become research hotspots in the energy field. However, these renewable energy sources are intermittent and unstable, so energy storage technology has become the key to solving this problem. As an efficient energy storage method, energy storage power stations are playing an increasingly important role in the energy field. Battery energy storage power stations are mainly composed of battery packs, battery management systems, charging equipment, and discharging equipment.

[0003] There are often a large number of energy storage batteries placed in energy storage power stations. During the operation of the power station, the batteries are cooled by air conditioning. Since the position of the air outlet of the air conditioner is relatively fixed, the temperature at a close distance is relatively low, and the cooling efficiency of energy storage batteries at a farther distance is reduced. In order to save space and improve the storage efficiency of energy storage batteries, energy storage batteries are generally placed in a direct stacking manner. The energy storage battery in the middle position is surrounded by other batteries, resulting in a significant reduction in the heat dissipation efficiency of some energy storage batteries in the middle position. Once damaged, it may affect the normal operation of the entire power station. Summary of the invention

[0004] The purpose of the present invention is to provide an energy storage power station based on new energy storage, which is convenient for improving heat dissipation uniformity and simultaneously cleaning and collecting internal dust, so as to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an energy storage power station based on new energy storage, comprising a base, a fixing mechanism, a heat dissipation mechanism and a dust removal mechanism, wherein a rotating column is rotatably connected to the base, and a plurality of energy storage batteries are arranged on the upper side of the base, the fixing mechanism comprises a plurality of support plates installed on the upper side of the base, the support plates are annularly sleeved on the outer side of the rotating column, and are used to fix and support the energy storage batteries through the plurality of support plates, the heat dissipation mechanism comprises a cold air fan installed on the rotating column, which is used to drive the rotating column to rotate while rotating the air outlet of the cold air fan, so as to uniformly dissipate heat and cool the energy storage batteries on the surrounding support plates, the dust removal mechanism is installed on the support plate, and is used to clean the surface of the energy storage battery in a linkage manner during the rotation of the rotating column, and can shake off and collect the cleaned dust at the same time, and then discharge the clean cold air to the surrounding of the energy storage battery after filtering, so as to improve the heat dissipation uniformity and clean and collect the internal dust simultaneously.

[0006] Preferably, the fixing mechanism also includes a top plate rotatably connected to the top of the rotating column, a plurality of groups of support rods are fixedly connected between the top plate and the base, the plurality of groups of support rods penetrate the support plate and are fixedly connected to the support plate, the support plates on each layer are distributed at equal intervals, and the support plates are provided with limiting members for moving and fixing the energy storage batteries, so that the plurality of groups of support plates can fix and support the energy storage batteries.

[0007] Preferably, the dust removal mechanism includes multiple groups of cleaning rods installed on the upper side of the support plate, and the sides of the cleaning rods are fixedly connected to cleaning brushes for cleaning the energy storage batteries. The base and the top plate are rotatably connected to rotating rings respectively, and multiple groups of mounting rods are fixedly connected between the two groups of rotating rings. The multiple groups of cleaning rods are evenly fixedly installed on the mounting rods. The rotating column is provided with a driving member for driving the rotating ring to rotate and reset, so as to facilitate the linkage cleaning of the surface of the energy storage battery during the rotation of the rotating column, and at the same time, the cleaned dust can be shaken off and collected, and the clean cold air is discharged to the surrounding of the energy storage battery after filtering.

[0008] Preferably, the driving member includes two groups of fixing rings respectively fixedly mounted on the base and the top plate, the outer wall of the fixing ring is fixedly connected with a clockwork spring fixedly connected to the inner wall of the rotating ring, the outer wall of the rotating column is fixedly connected with a triangular block, the rotating ring is fixedly connected with a fixing frame, a driving block is slidably connected in the fixed frame along a horizontal direction, one side of the driving block is fixedly connected with a first spring fixedly connected to the fixing frame, an end of the driving block away from the first spring is triangular in shape, and the inclined surface position can slide in fit with the inclined surface position of the triangular block, so as to drive the rotating ring to rotate and reset.

[0009] Preferably, the dust removal mechanism also includes an exhaust fan fixedly installed in the rotating column, a device cavity is opened in the rotating column, both ends of the device cavity are fixedly connected with a grid, the exhaust fan is fixedly installed in the device cavity, and a filter is fixedly connected in the device cavity to facilitate the circulation, filtration and transportation of the cleaned dust.

[0010] Preferably, the limiting member includes a plurality of sliding plates mounted on the support plate, the energy storage battery is fixedly mounted on the sliding plate, a plurality of guide grooves are provided on the support plate, a guide block is fixedly connected to the bottom of the sliding plate and is slidably connected to the inner wall of the guide groove along a horizontal direction, a handle is slidably connected to the sliding plate, and a control member is provided on the sliding plate for releasing the limiting state of the guide block when the handle is pulled, so as to facilitate the movement and fixation of the energy storage battery.

[0011] Preferably, the control member includes two groups of beveled gear blocks slidably connected to the guide block in a horizontal direction, the guide groove is provided with a beveled gear groove that can be unidirectionally engaged with the beveled gear block, one side of the beveled gear block is fixedly connected to a second spring fixedly connected to the guide block, two groups of connecting ropes are fixedly connected to the handle, one end of the connecting rope away from the handle is fixedly connected to one end of the beveled gear block away from the beveled gear groove, the connecting rope passes through the sliding plate and is slidably connected to the inner wall of the sliding plate, so as to facilitate releasing the limiting state of the guide block when the handle is pulled.

[0012] Preferably, the heat dissipation mechanism also includes a driving motor fixedly mounted on the base, and the output end of the driving motor is coaxially fixedly connected to the bottom end of the rotating column, so as to drive the rotating column to rotate while causing the air outlet of the air cooler to rotate, thereby evenly dissipating heat and cooling the energy storage batteries on the surrounding support plates.

[0013] Preferably, a shell is rotatably connected between the base and the top plate, an inspection opening is provided on the shell, and a door is hinged in the inspection opening to facilitate protection of the energy storage battery and control of the position of the inspection opening.

[0014] Preferably, a power transmission line is fixedly connected inside the support rod, a plurality of sockets connected to the power transmission line are provided on the support rod, and a conductive wire that can be plugged into the socket to supply power is fixedly connected to the energy storage battery, thereby facilitating unified management and transmission of electrical energy from the energy storage battery.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] The present invention provides an energy storage power station based on new energy storage, which solves the problem that the energy storage batteries inside the existing energy storage power station based on new energy storage are difficult to dissipate heat evenly and are prone to accumulate dust, affecting the heat dissipation efficiency. The energy storage batteries are fixedly supported by multiple groups of support plates, and the heat dissipation mechanism drives the rotating column to rotate while the air outlet of the cold air fan rotates, so that the energy storage batteries on the surrounding support plates are evenly dissipated and cooled. During the rotation of the rotating column, the surface of the energy storage battery is cleaned by the dust removal mechanism, and the cleaned dust can be shaken off and collected, and the cleaned cold air is discharged to the surrounding of the energy storage battery after filtering. The device can complete the self-cleaning function inside the equipment every time the rotating column rotates one circle, thereby realizing internal dust removal and avoiding the loss of cold air, and circulating the cold air inside the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0018] Figure 2This is a schematic diagram of the internal structure of the housing of the present invention;

[0019] Figure 3 It is a schematic diagram of the partial structure of the fixing mechanism of the present invention;

[0020] Figure 4 It is a schematic diagram of the local structure of the heat dissipation mechanism of the present invention;

[0021] Figure 5 for Figure 4 A magnified image of area A;

[0022] Figure 6 It is a schematic diagram of the local structure of the dust removal mechanism of the present invention;

[0023] Figure 7 It is a partial structural cross-sectional view of the dust removal mechanism of the present invention;

[0024] Figure 8 It is an exploded view of the local structure of the limiter of the present invention;

[0025] Fig. 9 for Figure 8 Enlarged view of area B.

[0026] In the figure: 1. base; 2. rotating column; 3. energy storage battery; 4. support plate; 5. air cooler; 6. top plate; 7. support rod; 8. cleaning rod; 9. cleaning brush; 10. rotating ring; 11. mounting rod; 12. fixing ring; 13. spring; 14. triangular block; 15. fixing frame; 16. driving block; 17. first spring; 18. exhaust fan; 19. device cavity; 20. grid; 21. filter; 22. sliding plate; 23. guide groove; 24. guide block; 25. handle; 26. oblique tooth block; 27. oblique tooth groove; 28. second spring; 29. ​​connecting rope; 30. driving motor; 31. casing; 32. inspection port; 33. box door; 34. transmission line; 35. plug port; 36. conductive wire. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0028] Embodiment 1

[0029] See also Figure 1-Figure 7, a storage power station based on new energy storage shown in the figure includes a base 1, a fixing mechanism, a heat dissipation mechanism and a dust removal mechanism. A rotating column 2 is rotatably connected to the base 1, and a plurality of energy storage batteries 3 are arranged on the upper side of the base 1. The fixing mechanism includes a plurality of support plates 4 installed on the upper side of the base 1, and the support plates 4 are annularly sleeved on the outer side of the rotating column 2, and are used to fix and support the energy storage batteries 3 through the plurality of support plates 4. The heat dissipation mechanism includes a cold air fan 5 installed on the rotating column 2, and the heat dissipation mechanism also includes a driving motor 30 fixedly installed on the base 1. The driving motor 30 model is preferably Y80M1-2, and the output end of the driving motor 30 is coaxially fixedly connected with the bottom end of the rotating column 2, and is used to drive the rotating column 2 to rotate while rotating the air outlet of the cold air fan 5, so as to evenly dissipate heat and cool the energy storage batteries 3 on the surrounding support plates 4.

[0030] The dust removal mechanism is installed on the support plate 4, and the dust removal mechanism also includes an exhaust fan 18 fixedly installed in the rotating column 2. A device cavity 19 is opened in the rotating column 2, and both ends of the device cavity 19 are fixedly connected with a grid net 20. The exhaust fan 18 is fixedly installed in the device cavity 19, and a filter net 21 is fixedly connected in the device cavity 19. It is used to clean the surface of the energy storage battery 3 in the process of rotation of the rotating column 2, and at the same time, it can shake off and collect the cleaned dust, and then discharge the clean cold air to the surrounding of the energy storage battery 3 after filtering.

[0031] The fixing mechanism also includes a top plate 6 rotatably connected to the top of the rotating column 2, a plurality of groups of support rods 7 are fixedly connected between the top plate 6 and the base 1, the plurality of groups of support rods 7 penetrate the support plate 4 and are fixedly connected to the support plate 4, the support plates 4 on each layer are equally spaced, and the support plate 4 is provided with a limiter for moving and fixing the energy storage battery 3, a shell 31 is rotatably connected between the base 1 and the top plate 6, an inspection port 32 is provided on the shell 31, a box door 33 is hinged in the inspection port 32, a power transmission line 34 is fixedly connected in the support rod 7, a plurality of groups of plug ports 35 connected to the power transmission line 34 are provided on the support rod 7, and a conductive wire 36 that can be plugged into the plug port 35 for power supply is fixedly connected to the energy storage battery 3.

[0032] In this embodiment, the energy storage battery 3 is evenly fixed on each layer of the support plate 4 by a limiter, and the conductive wire 36 on the energy storage battery 3 is connected to the plug port 35, so that the electric energy can be uniformly distributed through the transmission line 34. The position of the inspection port 32 can be adjusted by rotating the side shell 31. After the inspection port 32 corresponds to the required position, the box door 33 can be opened to inspect and operate the energy storage battery 3 at that position, which is convenient for operating the energy storage batteries 3 at various positions. At the same time, the area of ​​the inspection port 32 is reduced, and the degree of cold air loss in the internal area of ​​the shell 31 is reduced.

[0033] Start the drive motor 30 to drive the rotating column 2 to rotate slowly, and the air cooler 5 cools the air and delivers it to the air outlet. During the rotation of the rotating column 2, the air outlet of the air cooler 5 will rotate slowly, and the position of the air outlet will be switched so that the cold air can be evenly delivered to the energy storage batteries 3 at various positions around, making the heat dissipation more uniform. At the same time, during the rotation of the rotating column 2, the dust removal mechanism will be linked to clean the dust accumulated on the surface of the energy storage battery 3, and the dust will be drawn into the device cavity 19 by the exhaust fan 18, and then discharged from the grid 20 on the other side after being filtered by the filter 21, thereby achieving internal dust removal while avoiding the loss of cold air and circulating the cold air inside the equipment.

[0034] Embodiment 2

[0035] See also Figure 2-Figure 7 The present embodiment further illustrates the first embodiment. The dust removal mechanism shown in the figure includes a plurality of cleaning rods 8 mounted on the upper side of the support plate 4. A cleaning brush 9 for cleaning the energy storage battery 3 is fixedly connected to the side of the cleaning rod 8. A rotating ring 10 is rotatably connected to the base 1 and the top plate 6 respectively. A plurality of mounting rods 11 are fixedly connected between the two sets of rotating rings 10. The plurality of cleaning rods 8 are evenly fixedly mounted on the mounting rods 11. A driving member for driving the rotating ring 10 to rotate and reset is provided on the rotating column 2.

[0036] The driving member includes two groups of fixed rings 12 respectively fixedly mounted on the base 1 and the top plate 6, the outer wall of the fixed ring 12 is fixedly connected with a clockwork spring 13 fixedly connected to the inner wall of the rotating ring 10, the outer wall of the rotating column 2 is fixedly connected with a triangular block 14, the rotating ring 10 is fixedly connected with a fixed frame 15, a driving block 16 is slidably connected in the fixed frame 15 along the horizontal direction, one side of the driving block 16 is fixedly connected with a first spring 17 fixedly connected to the fixed frame 15, the end of the driving block 16 away from the first spring 17 is triangular, and the inclined surface position can slide and fit with the inclined surface position of the triangular block 14.

[0037] In the present embodiment, in the initial state, the rotating ring 10 with the clockwork spring 13 rotates, so that the cleaning rod 8 rotates to a position that conflicts with the support rod 7 on one side. During the rotation of the rotating column 2, the triangular block 14 is driven to rotate. When the triangular block 14 rotates to conflict with the side wall of the driving block 16, it pushes the driving block 16, so that the rotating ring 10 drives the mounting rod 11 to rotate, and the support rod 7 drives the cleaning rod 8 to rotate until the cleaning rod 8 rotates for a set arc length and conflicts with the next set of support rods 7. The cleaning rod 8 on the cleaning rod 8 The brush 9 cleans the dust on the surface of the energy storage battery 3. After that, the rotating ring 10 can no longer drive the cleaning rod 8 to rotate. As the triangular block 14 continues to rotate, the inclined surface of the triangular block 14 pushes the driving block 16 into the fixed frame 15, compressing the first spring 17 until the triangular block 14 releases the contact with the driving block 16. Under the rebound action of the clockwork spring 13, the rotating ring 10 is driven to rotate in the opposite direction, so that the support rod 7 drives the cleaning rod 8 to rotate in the opposite direction to the initial position, and stops after colliding with the support rod 7 on this side, completing the reset.

[0038] It is worth noting that: in the process of the cleaning rod 8 moving in the opposite direction and colliding with the support rod 7 to stop, the cleaning rod 8 will shake, shaking off the dust adsorbed on the cleaning brush 9, realizing the self-cleaning function of the cleaning brush 9, and the shaken-off dust will be sucked into the device cavity 19 by the exhaust fan 18 during the rotation process for collection and filtration, ensuring that the interior of the equipment is in a relatively clean state. The device can complete the self-cleaning function of the interior of the equipment once every time the rotating column 2 rotates one circle. Among them, at the position where the cleaning rod 8 and the support rod 7 contact and reset, the clockwork spring 13 is in a reset state. At this time, the impact degree of the cleaning rod 8 and the support rod 7 is small, and it is only used to shake off the dust on the cleaning brush 9, and will not affect the overall stability of the support plate 4 and the support rod 7.

[0039] Embodiment 3

[0040] See also Figure 4-Figure 9 The present embodiment further illustrates the first embodiment. The limiting member shown in the figure includes a plurality of sliding plates 22 mounted on the support plate 4. The energy storage battery 3 is fixedly mounted on the sliding plate 22. The support plate 4 is provided with a plurality of guide grooves 23. A guide block 24 is fixedly connected to the bottom of the sliding plate 22 and is slidably connected to the inner wall of the guide groove 23 in a horizontal direction. A handle 25 is slidably connected to the sliding plate 22. The sliding plate 22 is provided with a control member for releasing the limiting state of the guide block 24 when the handle 25 is pulled.

[0041] The control member includes two groups of beveled gear blocks 26 which are slidably connected to the guide block 24 in the horizontal direction. A beveled gear groove 27 which can be unidirectionally engaged with the beveled gear block 26 is provided in the guide groove 23. A second spring 28 which is fixedly connected to the guide block 24 is fixedly connected to one side of the beveled gear block 26. Two groups of connecting ropes 29 are fixedly connected to the handle 25. One end of the connecting rope 29 away from the handle 25 is fixedly connected to the other end of the beveled gear block 26 away from the beveled gear groove 27. The connecting rope 29 passes through the sliding plate 22 and is slidably connected to the inner wall of the sliding plate 22.

[0042] In this embodiment, pulling the handle 25 can first drive the connecting rope 29 to pull the bevel tooth block 26 out of the bevel tooth groove 27 to release the clamping connection with the bevel tooth groove 27. Then, the outward pulling force of the handle 25 can drive the sliding plate 22 and the guide block 24 to slide out along the guide groove 23, so that the energy storage battery 3 on the sliding plate 22 is pulled out for inspection and operation. Conversely, pushing the handle 25 reduces the pulling force on the connecting rope 29. At this time, the second spring 28 rebounds, so that one end of the bevel tooth block 26 slides against the inner wall of the guide groove 23 until the bevel tooth block 26 slides out. When the guide block 24 is moved to a position aligned with the bevel tooth groove 27, the bevel tooth block 26 can be inserted into the bevel tooth groove 27 under the push of the second spring 28 to achieve limiting. At this time, the guide block 24 just slides to the innermost end of the guide groove 23. Under the limiting position of the bevel tooth block 26, the sliding plate 22 cannot continue to slide on the support plate 4. The sliding of the sliding plate 22 can only be controlled by pulling the handle 25, so that the position of the energy storage battery 3 on the support plate 4 is more stable and it is convenient to slide out for operation. No unnecessary limiting operation is required. The energy storage battery 3 can be moved only by pushing and pulling the handle 25.

[0043] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0044] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An energy storage power station based on new energy storage, characterized in that: include: A base, on which a rotating column is rotatably connected, and a plurality of energy storage batteries are arranged on the upper side of the base; Also includes: The fixing mechanism includes a plurality of support plates installed on the upper side of the base, the support plates are annularly sleeved on the outer side of the rotating column, and are used to fix and support the energy storage battery through the plurality of support plates; The heat dissipation mechanism includes a cooling fan installed on the rotating column, which is used to drive the rotating column to rotate and at the same time rotate the air outlet of the cooling fan, so as to evenly dissipate heat and cool the energy storage batteries on the surrounding support plates; The dust removal mechanism is installed on the support plate and is used for cleaning the surface of the energy storage battery in a linked manner during the rotation of the rotating column. At the same time, it can shake off and collect the cleaned dust, and discharge the clean cold air to the surrounding of the energy storage battery after filtering. The fixing mechanism also includes a top plate rotatably connected to the top of the rotating column, and multiple groups of support rods are fixedly connected between the top plate and the base. The multiple groups of support rods penetrate the support plate and are fixedly connected to the support plate. The support plates on each layer are distributed at equal intervals. Limiting members for moving and fixing the energy storage battery are provided on the support plate. The dust removal mechanism includes multiple groups of cleaning rods installed on the upper side of the support plate, and a cleaning brush for cleaning the energy storage battery is fixedly connected to the side of the cleaning rod. Rotating rings are rotatably connected to the base and the top plate respectively, and multiple groups of mounting rods are fixedly connected between the two groups of rotating rings. Multiple groups of cleaning rods The cam is evenly fixed on the mounting rod, and a driving member for driving the rotating ring to rotate and reset is provided on the rotating column. The driving member includes two groups of fixed rings respectively fixedly mounted on the base and the top plate, and the outer wall of the fixed ring is fixedly connected with a clockwork spring fixedly connected with the inner wall of the rotating ring, and the outer wall of the rotating column is fixedly connected with a triangular block, and the rotating ring is fixedly connected with a fixed frame, and a driving block is slidably connected in the fixed frame along the horizontal direction, and one side of the driving block is fixedly connected with a first spring fixedly connected with the fixed frame, and the end of the driving block away from the first spring is triangular in shape, and the inclined surface position can slide and fit with the inclined surface position of the triangular block. The dust removal mechanism also includes an exhaust fan fixedly mounted in the rotating column, and a device cavity is opened in the rotating column, and both ends of the device cavity are fixedly connected with a grid mesh, the exhaust fan is fixedly mounted in the device cavity, and a filter mesh is fixedly connected in the device cavity.

2. The energy storage power station based on new energy storage according to claim 1, characterized in that: The limiting parts include multiple sets of sliding plates installed on the support plates, the energy storage batteries are fixedly installed on the sliding plates, multiple sets of guide grooves are provided on the support plates, the bottom of the sliding plates are fixedly connected with guide blocks that are slidably connected to the inner walls of the guide grooves along the horizontal direction, the sliding plates are slidably connected with handles, and the sliding plates are provided with control parts for releasing the limiting state of the guide blocks when the handles are pulled.

3. The energy storage power station based on new energy storage according to claim 2 is characterized in that: The control member includes two groups of bevel gear blocks which are slidably connected to the guide block in the horizontal direction. A bevel gear groove which can be unidirectionally engaged with the bevel gear block is provided in the guide groove. A second spring which is fixedly connected to the guide block is fixedly connected to one side of the bevel gear block. Two groups of connecting ropes are fixedly connected to the handle. One end of the connecting rope which is away from the handle is fixedly connected to one end of the bevel gear block which is away from the bevel gear groove. The connecting rope passes through the sliding plate and is slidably connected to the inner wall of the sliding plate.

4. The energy storage power station based on new energy storage according to claim 1, characterized in that: The heat dissipation mechanism also includes a driving motor fixedly mounted on the base, and the output end of the driving motor is coaxially fixedly connected to the bottom end of the rotating column.

5. The energy storage power station based on new energy storage according to claim 1 is characterized in that: A shell is rotatably connected between the base and the top plate. An inspection opening is provided on the shell, and a box door is hinged in the inspection opening.

6. The energy storage power station based on new energy storage according to claim 1, characterized in that: A power transmission line is fixedly connected inside the support pole, a plurality of plug sockets connected to the power transmission line are arranged on the support pole, and a conductive wire that can be plugged into the plug socket for power supply is fixedly connected to the energy storage battery.

Citation Information

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