Industrial and commercial energy storage device with protection effect
By introducing exhaust fans, vacuum covers, filter boxes and water cooling systems into industrial and commercial energy storage devices, the problem of poor dust and cooling effects in traditional devices is solved, effective dust filtration and efficient cooling are achieved, and equipment service life is extended.
Patent Information
- Application Number
- CN202510232743.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-07-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional industrial and commercial energy storage devices generate a large amount of dust when cooling, which affects the working environment and has poor cooling effect, and equipment protection is not considered.
An industrial and commercial energy storage device with protective effect was designed, including an energy storage box, exhaust fan, vacuum cover, filter box, buffer seat and water cooling system. The exhaust gas is sucked in through the exhaust fan for filtering and water cooling, combined with buffer structure protection equipment.
Effectively filter dust, improve cooling effect, extend equipment life, reduce equipment collision damage, and improve working environment.
Smart Images

Figure CN120280640A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of energy storage related equipment, and particularly to an industrial and commercial energy storage device with a protection effect. Background Art
[0002] An industrial and commercial energy storage device is a system for storing electrical energy, mainly used for balancing power supply and demand, improving energy utilization efficiency, and ensuring stable power supply. Its core functions include electrical energy storage, peak shaving and valley filling, backup power supply, and integration of renewable energy, etc. By storing electrical energy in batteries or other energy storage media, the energy storage device can charge during low electricity consumption periods and discharge during high electricity consumption periods, thereby alleviating the pressure on the power grid and reducing electricity costs. In addition, it can be combined with renewable energy such as solar energy and wind energy to solve the problem of unstable power generation and improve the utilization rate of clean energy. The industrial and commercial energy storage device has the characteristics of high efficiency, flexibility, and reliability. It can quickly respond to changes in power demand, provide stable power output, and reduce the risk of power outages. At the same time, the energy storage device can also bring additional economic benefits to users by participating in power market transactions. Its modular design makes installation and maintenance more convenient and is suitable for various scenarios such as factories, shopping malls, and office buildings. It is not only an important tool for realizing the optimization of the energy structure but also a key technology for promoting the development of the green economy. In the future, with the progress of technology and the decline in costs, the energy storage device will play a greater role in the fields of smart grids, microgrids, distributed energy, etc., providing strong support for building an efficient and low-carbon energy system.
[0003] Traditional industrial and commercial energy storage devices usually do not consider the need for protective functions for the equipment, do not consider the situation that a large amount of dust will be generated when the equipment discharges hot air for cooling, which will deteriorate the working environment and even affect surrounding equipment, and do not consider the poor cooling effect of the equipment when cooling by air cooling.
[0004] In order to solve the above problems and achieve the quality of equipment cooling and dust filtration, it is necessary to provide an industrial and commercial energy storage device with good performance. Summary of the Invention
[0005] Aiming at the problems raised in the above background art, the object of the present invention is to provide an industrial and commercial energy storage device with a protection effect to solve the problems existing in the prior art.
[0006] To achieve the above technical object, the technical solution adopted by the present invention is as follows:
[0007] An industrial and commercial energy storage device with a protection effect, including an energy storage box, the energy storage box is provided with a first support base and a control box door, the control box door is provided with an indicator light, a lockable handle, and a first row of fans, and the energy storage box is provided with a rain shelter;
[0008] A number of second row fans are installed on the energy storage box. A dust suction hood matching the second row fans is installed on the energy storage box. An air inlet pipe is installed on the dust suction hood. The air inlet pipe is connected to an induced draft fan. The induced draft fan is connected to a ventilation pipe. The ventilation pipe is connected to a filter box. A discharge air pipe is installed on the filter box. A second support base is installed on the filter box;
[0009] A buffer seat is installed on the dust suction hood. The buffer seat is connected to a connecting pipe. A buffer box connected to the connecting pipe is installed on the buffer seat. A buffer rod is installed on the buffer seat. A buffer block is installed on the buffer rod.
[0010] Further defined, a limiting ring matching the buffer seat is installed on the buffer rod. With such a structural design, the buffer rod is prevented from slipping out, ensuring its sealing performance and buffer effect, and extending the service life of the equipment.
[0011] Further defined, a liquid adding pipe is installed on the buffer box. A cover plate is installed on the liquid adding pipe. A sealing rubber ring matching the liquid adding pipe is installed on the cover plate. With such a structural design, the buffer liquid in the buffer box can be replenished through the liquid adding pipe according to requirements. At the same time, the cover plate prevents dust and the like from entering, and the sealing rubber ring prevents the buffer liquid from volatilizing and leaking.
[0012] Further defined, a mounting bracket is installed on the dust suction hood. A filter net matching the dust suction hood is installed on the mounting bracket. With such a structural design, the waste gas can be preliminarily filtered, and the service life of the equipment is extended.
[0013] Further defined, a fixing block is installed on the dust suction hood. The fixing block is provided with a first sliding groove. A first spring is installed in the first sliding groove. A limiting block is installed on the first spring. The mounting bracket is provided with a limiting groove matching the limiting block. The fixing block is provided with a second sliding groove. A second spring is installed in the second sliding groove. A slider is installed on the second spring. A first sliding rod is installed on the slider. An interaction block matching the first sliding rod is installed on the limiting block. With such a structural design, when it is necessary to remove the mounting bracket to clean or replace the filter net, press down the first sliding rod. The movement of the first sliding rod drives the movement of the slider. The movement of the slider compresses the second spring. At the same time, the first sliding rod contacts the interaction block. The interaction block is stressed and drives the movement of the limiting block. The limiting block retracts into the first sliding groove and compresses the first spring. At this time, the limiting block disengages from the limiting groove and releases its limiting and fixing effect on the mounting bracket.
[0014] It is further defined that the dust cover is installed with a third slide slot, the third slide slot is installed with a third spring, the third spring is installed with a spring block, and the mounting frame is installed with a second slide rod matching the third slide slot. With such a structural design, when the mounting frame needs to be disassembled to release the limiting effect of the mounting frame, the third spring rebounds to drive the spring block to move, and the movement of the spring block ejects the mounting frame, making the disassembly of the mounting frame more convenient and quick.
[0015] It is further defined that the mounting frame is provided with a handle, and the handle is provided with anti-slip grooves. Such a structural design makes it more convenient to disassemble and assemble the mounting frame, and prevents the mounting frame from falling and breaking.
[0016] It is further defined that the filter box is installed with a water inlet pipe and a sewage pipe, and the filter box is closely attached to the energy storage box. With such a structural design, clean water can be added to the filter box through the water inlet pipe, and the exhaust gas can be filtered by the clean water. After the clean water absorbs impurities, the sewage is discharged through the sewage pipe. At the same time, since the filter box is closely attached to the energy storage box, the clean water in the filter box can play a role of water cooling for the energy storage box, so that the energy storage box can obtain a better cooling effect.
[0017] It is further defined that the ventilation pipe is equipped with a spray pipe, and the spray pipe is equipped with a spray head. Such a structural design enables the exhaust gas discharged from the ventilation pipe to be discharged into the clean water more evenly, making impurities more easily absorbed by the clean water, and enhancing the filtering effect of the filter box.
[0018] It is further defined that the third slide grooves are installed at the upper and lower ends of the dust hood. Such a structural design makes the dust hood more stable during removal and installation, thereby extending the service life of the equipment.
[0019] The technical solution of the present invention has the following beneficial effects:
[0020] The present invention provides a buffer block, a buffer rod and a buffer seat, so that the buffer block can protect the equipment and reduce the impact damage, and the buffer rod and the buffer seat can enhance the buffer effect of the buffer block.
[0021] The present invention is provided with a second exhaust fan, a dust cover, a filter screen, a filter box and an exhaust pipe, so that the present invention can suck the exhaust gas into the filter box through the second exhaust fan and the dust cover for treatment and then discharge it through the exhaust pipe, and the filter screen can play a role of primary filtering, so as to achieve the effect of preventing the dust generated when the equipment is air-cooled and cooled from affecting the surrounding environment;
[0022] The present invention provides a filter box, a water inlet pipe and a sewage pipe, so that the present invention can achieve the effect of air cooling and water cooling of the energy storage box through the filter box, the water inlet pipe and the sewage pipe, so that the cooling effect of the equipment is better and it perfectly copes with hot weather. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The present invention can be further illustrated by the non-limiting embodiments given in the accompanying drawings;
[0024] Figure 1 is a schematic structural diagram of an industrial and commercial energy storage device with a protection effect according to the present invention;
[0025] Figure 2 is a schematic structural diagram of an industrial and commercial energy storage device with a protection effect in another direction according to the present invention;
[0026] Figure 3 is a front sectional view of an industrial and commercial energy storage device with a protection effect according to the present invention;
[0027] Figure 4 is Figure 3 a sectional view taken along line A-A in
[0028] Figure 5 is a rear sectional view of the filter box of an industrial and commercial energy storage device with a protection effect according to the present invention;
[0029] Figure 6 is a front sectional view of the fixing block of an industrial and commercial energy storage device with a protection effect according to the present invention.
[0030] The main element symbols are explained as follows: energy storage box 1; first support base 2; control box door 3; indicator light 4; lockable handle 5; first row of fans 6; rain shelter 7; second row of fans 8; dust suction hood 9; air inlet pipe 10; induced draft fan 11; ventilation pipe 12; filter box 13; exhaust pipe 14; second support base 15; buffer seat 16; connecting pipe 17; buffer box 18; buffer rod 19; limiting ring 20; buffer block 21; liquid adding pipe 22; cover plate 23; mounting bracket 24; filter net 25; fixing block 26; first sliding groove 27; first spring 28; limiting block 29; limiting groove 30; second sliding groove 31; second spring 32; slider 33; first sliding rod 34; interaction block 35; third sliding groove 36; third spring 37; elastic block 38; sewage discharge pipe 39; spray pipe 40; spray head 41; grip 42; second sliding rod 43; water inlet pipe 44. Detailed implementation manners
[0031] In order to enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be further described below with reference to the accompanying drawings and embodiments.
[0032] As Figures 1 to 6 shown, an industrial and commercial energy storage device with a protection effect includes an energy storage box 1. The energy storage box 1 is installed with a first support base 2 and a control box door 3. The control box door 3 is installed with an indicator light 4, a lockable handle 5 and a first row of fans 6. The energy storage box 1 is installed with a rain shelter 7;
[0033] The energy storage box 1 is equipped with several second row fans 8. The energy storage box 1 is equipped with a dust suction hood 9 that matches the second row fans 8. The dust suction hood 9 is equipped with an air inlet pipe 10. The air inlet pipe 10 is connected to an induced draft fan 11. The induced draft fan 11 is connected to a ventilation pipe 12. The ventilation pipe 12 is connected to a filter box 13. The filter box 13 is equipped with an exhaust pipe 14. The filter box 13 is equipped with a second support base 15;
[0034] The dust suction hood 9 is equipped with a buffer seat 16. The buffer seat 16 is connected to a connecting pipe 17. The buffer seat 16 is equipped with a buffer box 18 connected to the connecting pipe 17. The buffer seat 16 is equipped with a buffer rod 19. The buffer rod 19 is equipped with a buffer block 21.
[0035] Principle description:
[0036] Example 1, as Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, the energy storage box 1 is supported by the first support base 2. The indicator light 4 can show the operating status of the device. The energy storage box 1 can be cooled by the first row of fans 6. When the energy storage box 1 needs to be maintained, the control box door 3 is opened through the lockable handle 5 for equipment maintenance operations. The awning 7 can reduce the situation of rainwater flowing into the control box door 3 when the equipment is outdoors in rainy days. It should be noted that when the equipment needs to be cooled, the second row of fans 8 is started to promote air flow for cooling. The induced draft fan 11 is started to make the waste gas enter the dust suction hood 9 and the air inlet pipe 10 through the second row of fans 8, and then the waste gas is introduced into the filter box 13 for treatment. Finally, the clean gas is discharged through the exhaust pipe 14; Buffer liquid is added to the buffer box 18, and the buffer liquid flows into the connecting pipe 17 and the buffer seat 16. When the equipment is impacted, first, the buffer block 21 is stressed to make the buffer rod 19 insert into the buffer seat 16, and the buffer liquid is stressed and pressed into the buffer box 18 through the connecting pipe 17 to play a buffering role and reduce the collision damage caused by the impact;
[0037] Example 2, as Figure 1 、 Figure 2 and Figure 3 shown, this example adds the following structure on the basis of Example 1. The buffer rod 19 is equipped with a limit ring 20 that matches the buffer seat 16. It should be noted that after the equipment is impacted and the buffer rod 19 inserts into the buffer seat 16, the buffer liquid flows back to make the buffer rod 19 slide back to its original position. Such a structural design avoids the buffer rod 19 from slipping out, ensures its sealing performance and buffer effect, and extends the service life of the equipment;
[0038] Example 3, as Figure 1 、 Figure 2 and Figure 3As shown, in this embodiment, the following structure is added on the basis of Embodiment 1. A liquid adding pipe 22 is installed on the buffer tank 18, a cover plate 23 is installed on the liquid adding pipe 22, and a sealing rubber ring matching the liquid adding pipe 22 is installed on the cover plate 23. With such a structural design, the buffer liquid in the buffer tank 18 can be replenished through the liquid adding pipe 22 according to requirements. At the same time, the cover plate 23 prevents dust and the like from entering, and the sealing rubber ring prevents the buffer liquid from volatilizing and leaking;
[0039] Embodiment 4, as Figure 1 、 Figure 2 and Figure 3 shown, in this embodiment, the following structure is added on the basis of Embodiment 1. A mounting bracket 24 is installed on the dust suction hood 9, and a filter net 25 matching the dust suction hood 9 is installed on the mounting bracket 24. It should be noted that the waste gas will enter the air inlet pipe 10 after passing through the dust suction hood 9, and the waste gas is filtered by the filter net 25 in the dust suction hood 9. With such a structural design, the waste gas can be preliminarily filtered, extending the service life of the equipment;
[0040] Embodiment 5, as Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 6 shown, in this embodiment, the following structure is added on the basis of Embodiment 1. A fixing block 26 is installed on the dust suction hood 9, a first sliding groove 27 is provided on the fixing block 26, a first spring 28 is installed in the first sliding groove 27, a limiting block 29 is installed on the first spring 28, a limiting groove 30 matching the limiting block 29 is provided on the mounting bracket 24, a second sliding groove 31 is provided on the fixing block 26, a second spring 32 is installed in the second sliding groove 31, a slider 33 is installed on the second spring 32, a first sliding rod 34 is installed on the slider 33, and an interaction block 35 matching the first sliding rod 34 is installed on the limiting block 29. It should be noted that with such a structural design, when it is necessary to remove the mounting bracket 24 to clean or replace the filter net 25, press down the first sliding rod 34. The movement of the first sliding rod 34 drives the movement of the slider 33. The movement of the slider 33 compresses the second spring 32. At the same time, the first sliding rod 34 contacts the interaction block 35, and the interaction block 35 is stressed to drive the movement of the limiting block 29. The limiting block 29 retracts into the first sliding groove 27 and compresses the first spring 28. At this time, the limiting block 29 disengages from the limiting groove 30, releasing its limiting and fixing effect on the mounting bracket 24;
[0041] Embodiment 6, as Figure 1 、 Figure 2 、 Figure 3 and Figure 4As shown in the figure, the following structure is added in this embodiment on the basis of Embodiment 1. The dust suction hood 9 is provided with a third chute 36, the third chute 36 is provided with a third spring 37, the third spring 37 is provided with a spring block 38, and the mounting bracket 24 is provided with a second slide bar 43 that matches the third chute 36. It should be noted that with such a structural design, when it is necessary to disassemble the mounting bracket 24 to release the limiting effect of the mounting bracket 24, the third spring 37 rebounds to drive the spring block 38 to move, and the movement of the spring block 38 ejects the mounting bracket 24, achieving the effect of making the disassembly of the mounting bracket 24 more convenient and rapid.
[0042] Embodiment 7, as Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown in the figure, the following structure is added in this embodiment on the basis of Embodiment 1. The mounting bracket 24 is provided with a handle 42, and the handle 42 is provided with anti-slip patterns. With such a structural design, it makes the disassembly and assembly of the mounting bracket 24 more convenient and avoids the mounting bracket 24 from falling and being damaged.
[0043] Embodiment 8, as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown in the figure, the following structure is added in this embodiment on the basis of Embodiment 1. The filter box 13 is provided with a water inlet pipe 44 and a sewage discharge pipe 39, and the filter box 13 is closely attached to the energy storage box 1. It should be noted that first, clean water is injected into the filter box 13 through the water inlet pipe 44, the waste gas is introduced into the clean water for adsorption by the clean water, the clean gas is discharged through the exhaust pipe 14, and the sewage is discharged through the sewage discharge pipe 39. With such a structural design, clean water can be added into the filter box 13 through the water inlet pipe 44, the waste gas is filtered by the clean water, and the sewage is discharged through the sewage discharge pipe 39 after the clean water adsorbs impurities. At the same time, since the filter box 13 is closely attached to the energy storage box 1, the clean water in the filter box 13 can play a role in water cooling for the energy storage box 1, enabling the energy storage box 1 to obtain a better cooling effect.
[0044] Embodiment 9, as Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown in the figure, the following structure is added in this embodiment on the basis of Embodiment 1. The ventilation pipe 12 is provided with a spray pipe 40, and the spray pipe 40 is provided with a nozzle 41. It should be noted that the waste gas enters the spray pipe 40 through the ventilation pipe 12 and is sprayed out by the nozzle 41. With such a structural design, the waste gas discharged from the ventilation pipe 12 can be discharged more evenly into the clean water, making it easier for impurities to be absorbed by the clean water and enhancing the filtering effect of the filter box 13.
[0045] Embodiment 10, as Figure 1 , Figure 2 ,Figure 3 and Figure 4 As shown in Figure 4 , the following structure is added to this embodiment on the basis of Embodiment 1. Third sliding grooves 36 are correspondingly installed at the upper and lower ends of the dust suction hood 9. Such a structural design makes the dust suction hood 9 more stable during the process of removal and installation, and extends the service life of the equipment.
[0046] The above embodiments are only used to exemplarily illustrate the principles and effects of the present invention, rather than to limit the present invention. Any person familiar with this technology can modify or change the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or changes completed by those with ordinary knowledge in the technical field without departing from the spirit and technical idea disclosed by the present invention should still be covered by the claims of the present invention.
Claims
1. An industrial and commercial energy storage device with a protective effect, comprising an energy storage box (1), characterized in that: The energy storage box (1) is equipped with a first support base (2) and a control box door (3). The control box door (3) is equipped with an indicator light (4), a lockable handle (5), and a first row of fans (6). The energy storage box (1) is equipped with a rain shelter (7); The energy storage box (1) is equipped with a number of second rows of fans (8). The energy storage box (1) is equipped with a dust suction hood (9) that matches the second row of fans (8). The dust suction hood (9) is equipped with an air inlet pipe (10). The air inlet pipe (10) is connected to an induced draft fan (11). The induced draft fan (11) is connected to a ventilation pipe (12). The ventilation pipe (12) is connected to a filter box (13). The filter box (13) is equipped with an exhaust pipe (14). The filter box (13) is equipped with a second support base (15); The dust suction hood (9) is equipped with a buffer seat (16). The buffer seat (16) is connected to a connecting pipe (17). The buffer seat (16) is equipped with a buffer box (18) connected to the connecting pipe (17). The buffer seat (16) is equipped with a buffer rod (19). The buffer rod (19) is equipped with a buffer block (21).
2. The industrial and commercial energy storage device with a protection effect according to claim 1, characterized in that: The buffer rod (19) is equipped with a limit ring (20) that matches the buffer seat (16).
3. The industrial and commercial energy storage device with a protection effect according to claim 2, characterized in that: The buffer box (18) is equipped with a liquid adding pipe (22). The liquid adding pipe (22) is equipped with a cover plate (23). The cover plate (23) is equipped with a sealing rubber ring that matches the liquid adding pipe (22).
4. A commercial and industrial energy storage device with a protective effect according to claim 1, characterized in that: The dust suction hood (9) is equipped with a mounting bracket (24). The mounting bracket (24) is equipped with a filter net (25) that matches the dust suction hood (9).
5. An industrial and commercial energy storage device with a protection effect according to claim 4, characterized in that: The dust suction hood (9) is equipped with a fixed block (26). The fixed block (26) is provided with a first sliding groove (27). The first sliding groove (27) is equipped with a first spring (28). The first spring (28) is equipped with a limit block (29). The mounting bracket (24) is provided with a limit groove (30) that matches the limit block (29). The fixed block (26) is provided with a second sliding groove (31). The second sliding groove (31) is equipped with a second spring (32). The second spring (32) is equipped with a slider (33). The slider (33) is equipped with a first sliding rod (34). The limit block (29) is equipped with an interaction block (35) that matches the first sliding rod (34).
6. The industrial and commercial energy storage device with a protection effect according to claim 5, characterized in that: The dust suction hood (9) is equipped with a third sliding groove (36). The third sliding groove (36) is equipped with a third spring (37). The third spring (37) is equipped with a spring block (38). The mounting bracket (24) is equipped with a second sliding rod (43) that matches the third sliding groove (36).
7. An industrial and commercial energy storage device with a protective effect according to claim 6, characterized in that: The mounting bracket (24) is equipped with a grip (42). The grip (42) is provided with anti-slip patterns.
8. The industrial and commercial energy storage device with a protection effect according to claim 1, characterized in that: The filter box (13) is equipped with a water inlet pipe (44) and a sewage pipe (39). The filter box (13) is closely attached to the energy storage box (1).
9. The industrial and commercial energy storage device with a protection effect according to claim 8, characterized in that: The ventilation pipe (12) is equipped with a spray pipe (40). The spray pipe (40) is equipped with a nozzle (41).
10. A kind of industrial and commercial energy storage device with a protection effect according to claim 6, characterized in that: The upper and lower ends of the dust suction hood (9) are correspondingly provided with the third sliding grooves (36).