A multi-energy complementary power storage function control device

By designing an alternating dustproof mechanism and cleaning components, the automated dust removal and waterproofing of the multi-energy complementary energy storage control cabinet is achieved, solving the problem of manual cleaning of the dustproof net in traditional devices and improving the convenience and stability of the equipment.

CN120090057BActive Publication Date: 2025-10-28NORTH CHINA UNIV OF WATER RESOURCES & ELECTRIC POWER +1
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Patent Information

Application Number
CN202510166159.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-14
Publication Date
2025-10-28
Estimated Expiration
2045-02-14

AI Technical Summary

Technical Problem

In the process of heat dissipation, the dust screen of the control cabinet of traditional multi-energy complementary energy storage equipment needs to be cleaned and replaced manually and regularly, which is time-consuming and easily damaged by dust and rain, affecting the stability of equipment operation.

Method used

A multi-energy complementary energy storage control device was designed, which adopts an alternating dustproof mechanism and cleaning components. The dustproof net is automatically cleaned and replaced through the sliding dustproof mechanism, and rainwater is prevented from entering by the water baffle. The cleaning components and drive mechanism realize automated dust removal and waterproofing.

Benefits of technology

It enables autonomous cleaning and replacement of dustproof nets, reduces manual maintenance time, improves the convenience and stability of the equipment, and prevents rainwater from damaging the power control components.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a multi-energy complementary energy storage control device, including a control cabinet, a dustproof mechanism, a cleaning chamber, a cleaning component, and a drive mechanism. The control cabinet has a ventilation slot on one side. The cleaning chamber and the ventilation slot have two sliding grooves, in which the dustproof mechanism is slidably mounted. The cleaning chamber has two symmetrically arranged inclined grooves on both sides, and a cleaning component is slidably mounted between the two opposing inclined grooves. The dustproof mechanism includes a carriage, a dustproof frame, and a dustproof net. The cleaning component includes a support plate, a movable plate, and a cleaning roller brush. A guide rod is symmetrically fixed on the support plate and slides along the inclined groove. The movable plate is hydraulically driven and slidably mounted on the support plate. A rotating shaft is rotatably mounted on the output end of the movable plate, and a cleaning roller brush is fixedly mounted on the rotating shaft.
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Description

Technical Field

[0001] This invention relates to the field of power generation auxiliary equipment technology, specifically a multi-energy complementary energy storage function control device. Background Technology

[0002] With the continuous growth of global energy demand and the increasing severity of environmental problems, the development and utilization of renewable energy has become an important means to solve the energy crisis and protect the environment. However, single renewable energy sources (such as solar and wind power) are greatly affected by natural factors, exhibiting intermittency and instability, making it difficult to guarantee a continuous and stable power supply. Therefore, it is necessary to adopt multi-energy complementary energy storage devices to integrate multiple energy sources, thereby achieving complementary power supply.

[0003] Currently, when multi-energy complementary energy storage equipment controls electricity, the components inside the control cabinet often generate a large amount of heat. Therefore, heat dissipation treatment is required for the control cabinet to ensure the normal operation of the energy storage device. The traditional heat dissipation method is generally to use air cooling to cool the control cabinet, that is, to use a cooling fan to introduce airflow to cool the control cabinet. In this process, a dust screen is often equipped at the air outlet to prevent dust from entering the control cabinet and damaging the components inside. However, during long-term use, a large amount of dust will accumulate on the dust screen, requiring manual cleaning and replacement regularly, which consumes a lot of time.

[0004] Therefore, it is necessary to provide a multi-energy complementary energy storage function control device to solve the problems mentioned in the background art. Summary of the Invention

[0005] To achieve the above objectives, the present invention provides the following technical solution: a multi-energy complementary energy storage function control device, comprising a control cabinet, a dustproof mechanism, a cleaning chamber, a cleaning component, and a drive mechanism, wherein a ventilation slot is provided on one side of the control cabinet, an exhaust fan is rotatably provided at the air outlet of the ventilation slot, an air outlet is provided on the other side of the control cabinet, a cleaning chamber is fixedly provided at the bottom of the ventilation slot, two sliding grooves are provided on the cleaning chamber and the ventilation slot, a dustproof mechanism is slidably provided in the sliding grooves, two inclined grooves are symmetrically provided on both sides of the cleaning chamber, and a cleaning component is slidably provided between the two opposing inclined grooves, the two cleaning components can respectively fit against both sides of the dustproof mechanism, and a drive mechanism is also slidably provided in the cleaning chamber;

[0006] The dustproof mechanism includes a slide, a dustproof frame, and a dustproof net. The slide is slidably disposed in the slide groove, the dustproof frame is rotatably disposed on the slide, and the dustproof net is fixedly disposed on the dustproof frame. The maximum deflection angle of the dustproof frame is the same as the inclination angle of the inclined groove.

[0007] The cleaning assembly includes a support plate, a movable plate, and a cleaning roller brush. A guide rod is symmetrically fixed on the support plate and slides along the inclined groove. The movable plate is hydraulically driven and slidably mounted on the support plate. A rotating shaft is rotatably mounted on the output end of the movable plate, and a cleaning roller brush is fixedly mounted on the rotating shaft. An arc-shaped baffle is fixedly mounted on the output end of the movable plate, and the arc-shaped baffle can fit against the dustproof net.

[0008] Furthermore, as a preferred embodiment, the slide is provided with a vertical groove and a hydraulic chamber, a sealing block is slidably disposed in the hydraulic chamber, and a guide rod is fixedly disposed on the sealing block;

[0009] The dustproof frame has an arc-shaped groove, and the second guide rod slides along the vertical groove and passes through the vertical groove and slides along the arc-shaped groove.

[0010] Furthermore, as a preferred embodiment, a guide rod three is fixedly provided at the bottom of the dustproof frame;

[0011] Two arc-shaped limiting grooves are provided on both sides of the cleaning chamber. Two guide rods three of the two dustproof mechanisms slide along the two arc-shaped limiting grooves respectively. A stop block is slidably provided on the arc-shaped limiting groove, and the stop block can block the guide rod three.

[0012] Furthermore, as a preferred embodiment, toothed racks are fixedly provided on both sides of the dustproof frame;

[0013] A support plate is fixedly installed on the side of the movable plate near the dustproof frame. A first gear is rotatably installed on the support plate, and a second gear is fixedly installed on the rotating shaft. The second gear meshes with the first gear, and the first gear meshes with the rack.

[0014] Furthermore, as a preferred embodiment, the driving mechanism includes two driving plates and two rotating rods rotatably disposed between the two driving plates, wherein the driving plates are slidably disposed in the cleaning chamber;

[0015] Two elastic dust curtains are fixedly installed in the cleaning chamber. The other ends of the two dust curtains pass over the two rotating rods and are fixedly connected to the two support plates in the two cleaning components.

[0016] Furthermore, preferably, the drive board has two drive slots;

[0017] A guide block is fixedly installed on the guide rod, and two of the two guide blocks of the two cleaning components slide along the two drive grooves respectively.

[0018] Furthermore, as a preferred embodiment, the bottom of the cleaning chamber is provided with a dust discharge port, a partition plate is slidably disposed on the dust discharge port, and a dust scraper is also slidably disposed on the bottom of the cleaning chamber.

[0019] Furthermore, as a preferred embodiment, the air inlet end of the ventilation duct is fixedly provided with a plurality of water baffles having an included angle, and the included angle of the water baffles is in the range of 130°<α<150°. The water baffles can block the intrusion of rainwater and water sprayed in a direction with an included angle of less than 60° to the vertical.

[0020] Compared with the prior art, the present invention provides a multi-energy complementary energy storage function control device, which has the following beneficial effects:

[0021] In this invention, two sliding dustproof mechanisms can perform alternating dust removal on the air entering the control cabinet. When the dustproof screen in one dustproof mechanism needs cleaning, the clean dustproof mechanism is slid into the ventilation slot for dust removal. The dustproof mechanism that needs cleaning is then slid into the cleaning chamber, and the dustproof screen is automatically cleaned through the cooperation of the cleaning components and the drive mechanism. This achieves automatic replacement and cleaning of the dustproof screen, eliminating the need for regular manual replacement and effectively improving the overall convenience of the device. In addition, multiple water baffles are installed at the ventilation slot, so that when the control cabinet is located outdoors and encounters rain, the water baffles can effectively isolate rainwater and prevent rainwater from entering the control cabinet and damaging the electrical control components. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 This is a schematic diagram of the internal structure of the cleaning chamber in this invention;

[0024] Figure 3 This is a schematic cross-sectional view of the overall structure of the present invention;

[0025] Figure 4 This is a schematic diagram of the dustproof mechanism in this invention;

[0026] Figure 5 for Figure 4 Enlarged schematic diagram of section A in the middle;

[0027] Figure 6 for Figure 4 Enlarged schematic diagram of section B in the middle;

[0028] Figure 7 This is a schematic diagram of the cleaning component and drive mechanism in this invention;

[0029] In the diagram: 1. Control cabinet; 11. Ventilation slot; 12. Exhaust fan; 13. Water baffle; 2. Dustproof mechanism; 21. Carriage; 211. Vertical slot; 212. Hydraulic chamber; 213. Sealing block; 214. Guide rod two; 22. Dustproof frame; 221. Arc-shaped slot; 222. Guide rod three; 223. Rack; 23. Dustproof net; 3. Cleaning chamber; 31. Inclined slot; 32. Arc-shaped limit slot; 321. Stop block; 33. Dust curtain; 34. Dust outlet; 35. Dust scraper; 4. Cleaning components; 41. Support plate; 411. Guide rod one; 412. Guide block; 42. Moving plate; 421. Support plate; 422. Gear one; 423. Gear two; 43. Cleaning roller brush; 44. Arc-shaped baffle; 5. Drive mechanism; 51. Drive plate; 511. Drive slot; 52. Rotating rod. Detailed Implementation

[0030] Please see Figures 1 to 7 In this embodiment of the invention, a multi-energy complementary energy storage control device includes a control cabinet 1, a dustproof mechanism 2, a cleaning chamber 3, a cleaning component 4, and a drive mechanism 5. A ventilation slot 11 is provided on one side of the control cabinet 1, and an exhaust fan 12 is rotatably mounted at the air outlet of the ventilation slot 11. An air outlet is provided on the other side of the control cabinet 1. A cleaning chamber 3 is fixedly mounted at the bottom of the ventilation slot 11. Two sliding grooves are provided on the cleaning chamber 3 and the ventilation slot 11. The dustproof mechanism 2 is slidably mounted in the sliding grooves. Two inclined grooves 31 are symmetrically provided on both sides of the cleaning chamber 3, and a cleaning component 4 is slidably mounted between the two opposing inclined grooves 31. The two cleaning components 4 can respectively fit against both sides of the dustproof mechanism 2. A drive mechanism 5 is also slidably mounted in the cleaning chamber 3.

[0031] The dustproof mechanism 2 includes a slide 21, a dustproof frame 22, and a dustproof net 23. The slide 21 is slidably disposed in the slide groove, the dustproof frame 22 is rotatably disposed on the slide 21, and the dustproof net 23 is fixedly disposed on the dustproof frame 22. The maximum deflection angle of the dustproof frame 22 is the same as the inclination angle of the inclined groove 31.

[0032] In addition, the power for the dustproof frame 22 to slide along the slide groove comes from an external drive mechanism, such as a hydraulic drive mechanism, a lead screw and nut pair mechanism, and a worm gear mechanism.

[0033] The cleaning component 4 includes a support plate 41, a movable plate 42, and a cleaning roller brush 43. A guide rod 411 is symmetrically fixed on the support plate 41 and slides along the inclined groove 31. The movable plate 42 is hydraulically driven and slidably mounted on the support plate 41. A rotating shaft is rotatably mounted at the output end of the movable plate 42, and the cleaning roller brush 43 is fixedly mounted on the rotating shaft. An arc-shaped baffle 44 is also fixedly mounted at the output end of the movable plate 42, and the arc-shaped baffle 44 can fit against the dustproof net 23.

[0034] The slide 21 is provided with a vertical groove 211 and a hydraulic chamber 212. A sealing block 213 is slidably disposed in the hydraulic chamber 212, and a guide rod 214 is fixedly disposed on the sealing block 213.

[0035] The dustproof frame 22 has an arc-shaped groove 221, and the guide rod 214 slides along the vertical groove 211 and passes through the vertical groove 211 and slides along the arc-shaped groove 221;

[0036] The bottom of the dustproof frame 22 is fixedly provided with guide rod 3 222;

[0037] Two arc-shaped limiting grooves 32 are provided on both sides of the cleaning chamber 3. The two guide rods 222 of the two dustproof mechanisms 2 slide along the two arc-shaped limiting grooves 32 respectively. A stop block 321 is slidably provided on the arc-shaped limiting groove 32. The stop block 321 can block the guide rod 222. In addition, the power for the stop block 321 to slide along the arc-shaped limiting groove 32 comes from an external driving mechanism, such as a hydraulic driving mechanism and a screw and nut pair mechanism. The preferred driving method here is a hydraulic telescopic rod drive.

[0038] Specifically, the two dustproof mechanisms 2 are slidably disposed in the cleaning chamber 3 and the ventilation slot 11, so that their vertical positions are different, that is, the two dustproof mechanisms 2 are slid into the cleaning chamber 3 at different positions, which further makes the rotation trajectories of the two dustproof racks 22 different. Therefore, two arc-shaped limiting grooves 32 are provided so that when the two dustproof racks 22 rotate, the two baffles 322 can slide along the two arc-shaped limiting grooves 32 respectively, thereby ensuring that the two dustproof racks 22 can vibrate under the action of the arc-shaped limiting grooves 32 and the baffles 321, shaking off the dust attached to the dustproof net 23;

[0039] The dustproof frame 22 is fixedly provided with racks 223 on both sides;

[0040] A support plate 421 is fixedly installed on the side of the movable plate 42 near the dustproof frame 22. A gear 422 is rotatably installed on the support plate 421, and a gear 423 is fixedly installed on the rotating shaft. The gear 423 meshes with the gear 422, and the gear 422 meshes with the rack 223.

[0041] The bottom of the cleaning chamber 3 is provided with a dust discharge port 34, and a partition plate is slidably provided on the dust discharge port 34. A dust scraper 35 is also slidably provided on the bottom of the cleaning chamber 3. The power for the scraper 35 to slide along the cleaning chamber 3 comes from an external drive mechanism, such as a hydraulic drive mechanism and a screw and nut pair mechanism. The preferred drive method here is the screw and nut pair mechanism.

[0042] In implementation, two dustproof mechanisms 2 are used alternately to remove dust from the air entering the control cabinet 1. That is, when the dustproof screen 23 of one dustproof mechanism 2 needs to be cleaned, the other dustproof mechanism 2 is slid into the ventilation slot 11 for dustproofing. The dustproof mechanism 2 that needs to be cleaned is slid into the cleaning chamber 3 and cleaned by the cleaning component 4. When the slide 21 slides to the bottom of the slide groove, that is, after the dustproof mechanism 2 enters the cleaning chamber 3, the sealing block 213 is driven to slide along the hydraulic chamber 212, so that the guide rod 214 slides along the arc groove 221 and drives the dustproof frame 22 to deflect. At this time, the guide rod 222 at the bottom of the dustproof frame 22 can slide along an arc-shaped limiting groove 32 at the bottom of the cleaning chamber 3. When the guide rod 222 slides to the output end of the arc-shaped limiting groove 32, it drives the stop block 321 to slide, so that the stop block 321 is stuck in the arc-shaped limiting groove 32 to block the guide rod 222. Then, it drives the sealing block 213 to slide up and down, so that the dustproof frame 22 deflects back and forth and hits the output end of the arc-shaped limiting groove 32 and the stop block 321, thereby generating vibration, so that the dust attached to the surface of the dustproof net 23 is shaken off to the bottom of the cleaning chamber 3. Then, it drives the two cleaning blocks 222 to slide back and forth. The movable plates 42 in the cleaning assembly 4 slide, causing the two movable plates 42 to drive the two cleaning roller brushes 43 to respectively adhere to both sides of the dustproof net 23, and causing gear one 422 to mesh with the rack 223. Then, the driving mechanism 5 drives the two cleaning assemblies 4 to slide along the inclined groove 31. During this process, gear one 422 meshes and rotates under the action of the rack 223, while driving gear two 423 to rotate, causing the cleaning roller brushes 43 to rotate and clean the dustproof net 23. The rotation direction of the cleaning roller brushes 43 is downward along the dustproof net 23, so that the cleaned dust can be directed towards the cleaning chamber 3. After the dustproof net 23 is cleaned, the two cleaning components 4 and the dustproof frame 22 are reset. Then, the partition plate is opened and the dust scraper 35 is driven to slide along the cleaning chamber 3, pushing the dust that has fallen to the bottom of the cleaning chamber 3 out of the dust discharge port 34, completing one cleaning operation. Then, when another dustproof mechanism 2 needs to be cleaned, the cleaned dustproof mechanism 2 is first slid into the ventilation slot 11, and then the dustproof mechanism 2 that needs to be cleaned is slid into the cleaning chamber 3 for cleaning. This realizes the autonomous replacement and cleaning of the dustproof net 23, thereby eliminating the need for manual periodic replacement and improving the overall convenience of the device.

[0043] In this embodiment, as Figure 7 The driving mechanism 5 includes two driving plates 51 and two rotating rods 52 rotatably disposed between the two driving plates 51. The driving plates 51 are slidably disposed in the cleaning chamber 3.

[0044] Two elastic dust curtains 33 are fixedly installed in the cleaning chamber 3. The other ends of the two dust curtains 33 pass around the two rotating rods 52 and are fixedly connected to the two support plates 41 in the two cleaning components 4.

[0045] Specifically, the cleaning roller brush 43 is driven to rotate by two meshing gears, so that when the cleaning assembly 4 slides along the dustproof frame 22, the rotation direction of the cleaning roller brush 43 is towards the bottom of the cleaning chamber 3. In addition, two elastic dust curtains 33 are provided to isolate the bottom and top of the cleaning assembly 4 as the moving plate 51 slides downward. That is, the cleaned dustproof net 23 is separated from the uncleaned dustproof net 23. This allows the dust flying up during the cleaning process to be blocked at one end of the uncleaned dustproof net 23 by the dust curtains 33 and the arc-shaped baffle 44, thereby preventing the dust from falling back onto the dustproof net 23 during the cleaning process and allowing the cleaned dust to fall to the bottom of the cleaning chamber 3, further improving the cleaning effect on the dustproof net 23.

[0046] In this embodiment, as Figure 7 The drive board 51 has two drive slots 511.

[0047] A guide block 412 is fixedly installed on the guide rod 411, and the two guide blocks 412 of the two cleaning components 4 slide along the two drive grooves 511 respectively.

[0048] During implementation, as the drive plate 51 drives the support plate 41 to slide downward, the support plate 41 will slide tilted under the restriction of the inclined groove 31. Therefore, the guide block 412 and the drive groove 511 are provided so that the support plate 41 can slide horizontally along the drive plate 51, thereby enabling the drive plate 51 to drive the support plate 41 to slide along the inclined groove 31. The inclination angle of the inclined groove 31 is the same as the deflection angle of the dustproof frame 22. Therefore, the distance between the support plate 41 and the dustproof frame 22 will not change during the sliding process, that is, the cleaning roller brush 43 can always adhere to the dustproof net 23 and clean the dustproof net.

[0049] In this embodiment, as Figure 2 and Figure 3 The ventilation slot 11 has a plurality of water baffles 13 with an included angle fixedly installed at the air inlet end, and the included angle of the water baffles 13 is in the range of 130° < α < 150°. The water baffles 13 can block the intrusion of rainwater and water sprayed in a direction with an included angle of less than 60° to the vertical.

[0050] In particular, the water baffle 13 prevents rainwater from entering the control cabinet 1 through the ventilation slot 11 when it rains, thereby avoiding damage to the electrical control components in the control cabinet 1.

[0051] In summary, when implemented, this invention utilizes two sliding dustproof mechanisms 2 to perform alternating dust removal on the air entering the control cabinet 1. Specifically, when the dustproof net 23 in one dustproof mechanism 2 needs cleaning, the cleaned dustproof mechanism 2 is slid into the ventilation slot 11 for dust removal. The dustproof mechanism 2 requiring cleaning is then slid into the cleaning chamber 3, and the cleaning component 4 and drive mechanism 5 work together to achieve autonomous cleaning of the dustproof net 23. This enables autonomous replacement and cleaning of the dustproof net 23, eliminating the need for regular manual replacement and significantly improving the overall convenience of the device. Furthermore, multiple water baffles 13 are installed at the ventilation slot 11, effectively preventing rainwater from entering the control cabinet 1 and damaging the electrical control components when the control cabinet 1 is located outdoors and encounters rain.

[0052] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A multi-energy complementary energy storage function control device, characterized in that: The system includes a control cabinet (1), a dustproof mechanism (2), a cleaning chamber (3), a cleaning component (4), and a drive mechanism (5). The control cabinet (1) has a ventilation slot (11) on one side, and an exhaust fan (12) is rotatably installed at the air outlet of the ventilation slot (11). The control cabinet (1) has an air outlet on the other side. The cleaning chamber (3) is fixedly installed at the bottom of the ventilation slot (11). The cleaning chamber (3) and the ventilation slot (11) have two sliding grooves. The dustproof mechanism (2) is slidably installed in the sliding grooves. The cleaning chamber (3) has two symmetrical inclined grooves (31) on both sides. The cleaning component (4) is slidably installed between the two inclined grooves (31) that are opposite to each other. The two cleaning components (4) can respectively fit against the two sides of the dustproof mechanism (2). The drive mechanism (5) is also slidably installed in the cleaning chamber (3). The dustproof mechanism (2) includes a slide (21), a dustproof frame (22), and a dustproof net (23). The slide (21) is slidably disposed in the slide groove. The dustproof frame (22) is rotatably disposed on the slide (21). The dustproof net (23) is fixedly disposed on the dustproof frame (22). The maximum deflection angle of the dustproof frame (22) is the same as the inclination angle of the inclined groove (31). The cleaning component (4) includes a support plate (41), a movable plate (42), and a cleaning roller brush (43). A guide rod (411) is symmetrically fixed on the support plate (41) and slides along the inclined groove (31). The movable plate (42) is hydraulically driven and slidably mounted on the support plate (41). A rotating shaft is rotatably mounted on the output end of the movable plate (42). The cleaning roller brush (43) is fixedly mounted on the rotating shaft. An arc-shaped baffle (44) is fixedly mounted on the output end of the movable plate (42). The arc-shaped baffle (44) can fit against the dustproof net (23). The slide (21) is provided with a vertical groove (211) and a hydraulic chamber (212). A sealing block (213) is provided in the hydraulic chamber (212) and a guide rod (214) is fixedly provided on the sealing block (213). The dustproof frame (22) has an arc-shaped groove (221), and the second guide rod (214) slides along the vertical groove (211) and passes through the vertical groove (211) and slides along the arc-shaped groove (221); The bottom of the dustproof frame (22) is fixedly provided with guide rod three (222); Two arc-shaped limiting grooves (32) are provided on both sides of the cleaning chamber (3). Two guide rods (222) in the two dustproof mechanisms (2) slide along the two arc-shaped limiting grooves (32) respectively. A stop block (321) is slidably provided on the arc-shaped limiting groove (32). The stop block (321) can block the guide rod (222).

2. The multi-energy complementary energy storage function control device according to claim 1, characterized in that: The dustproof frame (22) is fixedly provided with racks (223) on both sides; A support plate (421) is fixedly installed on the side of the movable plate (42) near the dustproof frame (22). A gear one (422) is rotatably installed on the support plate (421), and a gear two (423) is fixedly installed on the rotating shaft. The gear two (423) meshes with the gear one (422), and the gear one (422) meshes with the rack (223).

3. The multi-energy complementary energy storage function control device according to claim 1, characterized in that: The drive mechanism (5) includes two drive plates (51) and two rotating rods (52) rotatably disposed between the two drive plates (51). The drive plates (51) are slidably disposed in the cleaning chamber (3). Two elastic dust curtains (33) are fixedly installed in the cleaning chamber (3). The other ends of the two dust curtains (33) pass around the two rotating rods (52) and are fixedly connected to the two support plates (41) in the two cleaning components (4).

4. The multi-energy complementary energy storage function control device according to claim 3, characterized in that: The drive board (51) has two drive slots (511); A guide block (412) is fixedly provided on the guide rod (411), and the two guide blocks (412) in the two cleaning components (4) slide along the two drive grooves (511) respectively.

5. The multi-energy complementary energy storage function control device according to claim 1, characterized in that: The bottom of the cleaning chamber (3) is provided with a dust discharge port (34), a partition plate is slidably provided on the dust discharge port (34), and a dust scraper (35) is also slidably provided on the bottom of the cleaning chamber (3).

6. The multi-energy complementary energy storage function control device according to claim 1, characterized in that: The air inlet end of the ventilation slot (11) is fixedly provided with a plurality of water baffles (13) with an included angle, and the included angle of the water baffles (13) is in the range of 130°<α<150°. The water baffles (13) can block the intrusion of rainwater and water sprayed in a direction with an included angle of less than 60° to the vertical.

Citation Information

Patent Citations

  • Dustproof method and dustproof unit for ventilating device

    CN101922782A

  • High-low voltage switch cabinet with waterproof and dustproof functions

    CN214589921U

  • Split dry-type transformer shell

    CN214754685U