Source network load storage integrated device

By employing a dual heat dissipation mechanism and intelligent speed control, the problem of insufficient heat dissipation in the integrated source-grid-load-storage device is solved, ensuring the stable operation and lifespan of the energy storage battery, and achieving efficient heat dissipation and energy saving.

CN120999718APending Publication Date: 2025-11-21STATE GRID LIAONING ECONOMIC TECHN INST
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Patent Information

Application Number
CN202511266028.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

Existing integrated energy storage and grid-grid systems suffer from insufficient heat dissipation, which leads to the formation of localized high-temperature areas in the energy storage batteries, affecting their service life and operational stability.

Method used

It adopts a dual heat dissipation mechanism, with two sets of cooling fans connected to the air supply duct of the battery placement rack and the installation chamber respectively. Combined with the green plant mounting rack and cooling pipe, it achieves directional heat dissipation and overall environmental heat dissipation. The opening and closing of the louvered panels are controlled by the linkage of temperature detector and electric telescopic rod, realizing intelligent speed regulation and protection.

Benefits of technology

It effectively avoids the generation of local high temperatures, ensures the stable operation and lifespan of the energy storage battery, saves energy, prevents moisture and dust from entering the bottom of the equipment, and reduces energy consumption.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a source network load storage integrated device, which comprises an equipment integrated cabinet, a battery placing rack, a top groove, a cooling pipe, an air inlet window and a door plate, an installation bin is arranged in the equipment integrated cabinet, the battery placing rack is arranged on a placing plate, a placing bin is arranged on the battery placing rack, an air supply channel is arranged in the battery placing rack, and the air supply channel is communicated with the top groove. Air blowing holes are formed in the bin wall of the placement bin, one set of air outlets of the heat dissipation fan are connected with the air supply channel, the other set of air outlets of the heat dissipation fan are communicated with the mounting bin, a green plant mounting frame is mounted on the top groove, a filter screen is arranged on the bottom surface of the green plant mounting frame, and a cooling pipe is arranged in the inner wall of the equipment integrated cabinet. One end of the cooling pipe is connected with the top groove. Directional heat dissipation of the energy storage battery and heat dissipation of the overall environment of the installation bin can be achieved at the same time, a dual heat dissipation mechanism is formed, local high temperature is avoided, and therefore stable operation and the service life of parts such as the energy storage battery are guaranteed.
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Description

Technical Field

[0001] This invention relates to the field of integrated source-grid-load-storage devices, specifically to an integrated source-grid-load-storage device. Background Technology

[0002] Adequate energy supply plays a vital role in social development. However, due to low efficiency and high emissions, traditional energy systems have led to energy waste and environmental pollution. In recent years, with the rapid development of renewable energy, the development of new power grids will form a pattern dominated by large power grids and the coexistence of multiple grid forms. In the future, multi-level microgrids will be formed in areas of different sizes, such as homes, communities, and industrial parks, to solve the problem of large-scale access and plug-and-play for new energy sources and new loads. The traditional unidirectional process of "generation-transmission-transformation-distribution-consumption" in the power system will be transformed into an integrated cycle of "source-grid-load-storage," increasing the proportion of renewable energy generation consumption. "Source-grid-load-storage integration" refers to the organic integration of energy sources (such as photovoltaics and wind power), the power grid, electricity loads, and energy storage systems to form a comprehensive energy system, in order to achieve efficient energy utilization and optimize the balance between energy supply and demand.

[0003] Existing devices have the following shortcomings when in use: traditional heat dissipation structures are mostly single fans or natural ventilation, which have poor heat dissipation performance and are difficult to dissipate the heat generated by the operation of the equipment in a timely manner. Especially in the installation compartment where energy storage batteries are densely arranged, local high temperature areas are easily formed, causing core components such as energy storage batteries to be in a high temperature environment for a long time, affecting service life and operational stability. Summary of the Invention

[0004] The purpose of this invention is to provide an integrated source-grid-load-storage device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: an integrated source-grid-load-storage device, comprising an integrated equipment cabinet, a battery placement rack, a top groove, a cooling pipe, an air inlet window, and a door panel. The integrated equipment cabinet has an installation compartment, a placement plate is installed in the installation compartment, a battery placement rack is installed on the placement plate, a placement compartment is provided on the battery placement rack, and an energy storage battery is placed in the placement compartment. An air supply duct is provided in the battery placement rack, and air blowing holes are provided on the wall of the placement compartment. A cooling fan is installed in the air inlet window of the integrated equipment cabinet. Two sets of cooling fans are provided; one set of cooling fans has its air outlet connected to the air supply duct, and the other set of cooling fans has its air outlet connected to the installation compartment. A top groove is provided on the top of the integrated equipment cabinet, and a plant mounting rack is installed on the top groove. A filter screen is provided on the bottom surface of the plant mounting rack. A cooling pipe is provided in the inner wall of the integrated equipment cabinet, and one end of the cooling pipe is connected to the top groove.

[0006] By adopting the technical scheme, one of the two groups of heat dissipation fans sucks external air through the air inlet window, and then sends the air into the air supply channel in the battery placing rack, and blows the air out from the air blowing holes in the warehouse wall, so that the air is blown to the surface of the energy storage battery from four sides, thereby realizing directional and uniform cooling of each group of batteries and avoiding that local high temperature affects the performance of the batteries; the other group of heat dissipation fans directly sends cold air to the installation warehouse, thereby rapidly reducing the overall environmental temperature in the installation warehouse; when the equipment integrated cabinet is used outdoors, the green plants are planted in the green plant installation rack in the top groove, thereby preventing the sunlight from directly irradiating the top of the equipment integrated cabinet, reducing the internal temperature rise of the equipment integrated cabinet caused by the sunlight, and filtering the rainwater through the filter screen at the bottom of the green plant installation rack, so that the filtered rainwater flows into the cooling pipe arranged on the inner wall of the equipment integrated cabinet, and the rainwater absorbs the heat in the installation warehouse in the cooling pipe, thereby further improving the cooling effect on the energy storage battery; by arranging the two groups of heat dissipation fans in the equipment integrated cabinet and communicating the heat dissipation fans with the air supply channel of the battery placing rack and the installation warehouse respectively, the directional heat dissipation of the energy storage battery and the heat dissipation of the overall environment of the installation warehouse can be simultaneously realized, a double heat dissipation mechanism is formed, the generation of local high temperature is avoided, and the discharge of hot air is accelerated; meanwhile, the green plant installation rack is arranged in the top groove of the top of the equipment integrated cabinet, thereby further improving the heat dissipation effect and ensuring that the equipment maintains a suitable working temperature in a long-term operation process, so as to ensure the stable operation and service life of the energy storage battery and other components.

[0007] Preferably, a louver plate is rotatably arranged at the air inlet window, and a gear ring is arranged on the louver plate; an electric telescopic rod is arranged on the equipment integrated cabinet, and a gear plate is arranged at one end of the electric telescopic rod; the gear plate is engaged with the gear ring; and a temperature detector is arranged on the door plate.

[0008] By adopting the technical scheme, the temperature detector can monitor the temperature in the installation warehouse in real time; when the temperature is detected to be higher than a preset threshold value, the controller controls the electric telescopic rod and the heat dissipation fan to start, the electric telescopic rod drives the gear plate to move, the gear plate is engaged with the gear ring to drive the louver plate to rotate and open, thereby increasing the air inlet amount of the air inlet window and improving the heat dissipation efficiency in cooperation with the heat dissipation fan; when the temperature is lower than the preset value, the controller controls the electric telescopic rod to reversely operate, thereby driving the gear plate to reset and making the louver plate close, thereby reducing the dust from the outside; meanwhile, the heat dissipation fan reduces the rotating speed or stops operating; through the linkage of the temperature detector, the electric telescopic rod, the gear plate and the gear ring, the automatic opening and closing of the louver plate and the intelligent speed regulation of the heat dissipation fan are realized, so that the heat dissipation effect is ensured at high temperature, the dust invasion is reduced at low temperature, and the energy consumption is reduced, thereby forming a dynamic adjustment heat dissipation protection mechanism to save energy.

[0009] Preferably, a ventilation hole is arranged at the bottom of the equipment integrated cabinet.

[0010] The ventilation hole is connected with the inside of the mounting bin, hot air generated due to heat dissipation in the mounting bin and hot air generated due to heat dissipation of the energy storage battery can be discharged in time, accumulation of the hot air in the mounting bin is avoided, temperature rise is avoided, the hot air is discharged from the bottom of the equipment integrated cabinet, the bottom of the equipment integrated cabinet is avoided to be damp, and rust or short circuit of components at the bottom due to long-term stay in a damp environment is avoided.

[0011] Preferably, the air inlet window is provided with a filter plate and a carbon adsorption plate.

[0012] The filter plate can intercept dust, particulate matter and flocculation in the air, prevent dust impurities from entering the inside of the equipment integrated cabinet, the carbon adsorption plate can adsorb moisture in the air, avoid damp air from corroding electronic components, ensure that the air sent into the mounting bin and the air duct is clean and dry, and prolong the service life of the equipment.

[0013] Preferably, a fixing plate is arranged on the outer wall of the equipment integrated cabinet, a screw rod is threadedly arranged on the fixing plate, and a fixing foot is rotatably arranged at the other end of the screw rod.

[0014] The screw rod threadedly arranged on the fixing plate is rotated, when the equipment integrated cabinet needs to be fixed, the fixing foot is moved downward until the fixing foot contacts and abuts against the ground, the equipment integrated cabinet is lifted at the same time, the bottom of the equipment integrated cabinet is separated from the ground by a certain distance, the ground water vapor directly contacts the bottom of the equipment integrated cabinet is avoided, and the stability and moisture resistance of the equipment are enhanced, when the equipment needs to be moved, the screw rod is reversely rotated, the fixing foot is retracted upward, the universal wheels contact the ground at this time, the equipment integrated cabinet is pushed to move flexibly, and convenient switching between the fixed and moved states is realized.

[0015] Preferably, universal wheels are arranged at the bottom of the equipment integrated cabinet.

[0016] The four universal wheels are symmetrically arranged at the four corners of the bottom of the equipment integrated cabinet, the universal wheels arranged at the bottom of the equipment integrated cabinet change the moving direction of the equipment integrated cabinet, and the labor intensity of manual carrying is greatly reduced.

[0017] Preferably, a rubber plug is arranged at the other end outlet of the cooling pipe, the cooling pipe is coiled in the inner wall of the equipment integrated cabinet, and the pipe body of the cooling pipe is closely attached to the inner wall of the mounting bin.

[0018] The coiled and attached design of the cooling pipe can increase the contact area with the inner wall of the mounting bin, when rainwater circulates in the cooling pipe, heat generated by electronic components in the mounting bin can be quickly absorbed, and the internal environment temperature of the mounting bin is effectively reduced.

[0019] Compared with the prior art, the present application has the following advantages:

[0020] 1. By setting two groups of cooling fans inside the equipment integrated cabinet, which are communicated with the air supply channel of the battery placing rack and the installation bin respectively, the directional cooling of the energy storage battery and the cooling of the whole environment of the installation bin can be realized at the same time, forming a double cooling mechanism to avoid the generation of local high temperature and accelerate the exhaust of hot air. At the same time, the green plant installation rack is installed in the top groove of the equipment integrated cabinet, which further improves the cooling effect and ensures that the equipment maintains an appropriate working temperature during long-term operation, thereby ensuring the stable operation and service life of the energy storage battery and other components.

[0021] 2. The temperature detector can monitor the temperature in the installation bin in real time. When the detected temperature exceeds the preset threshold, the controller controls the electric telescopic rod and the cooling fan to start. The electric telescopic rod drives the gear plate to move, the gear plate is meshed with the gear ring to drive the louver plate to rotate and open, increasing the air intake of the air inlet window, and cooperating with the cooling fan to improve the cooling efficiency. When the temperature is lower than the preset value, the controller controls the electric telescopic rod to run reversely, drives the gear plate to reset, and makes the louver plate close to reduce the dust entering from outside. At the same time, the cooling fan reduces the rotating speed or stops running. Through the linkage cooperation of the temperature detector, the electric telescopic rod, the gear plate and the gear ring, the automatic opening and closing of the louver plate and the intelligent speed regulation of the cooling fan are realized. It can not only ensure the cooling effect at high temperature, but also reduce dust invasion and reduce energy consumption at low temperature, forming a dynamic adjustment cooling protection mechanism to save energy.

[0022] 3. The ventilation hole is communicated with the inside of the installation bin, which can timely exhaust the hot air generated by the cooling in the installation bin, as well as the hot air generated by the cooling of the energy storage battery, to avoid the accumulation of hot air in the installation bin leading to temperature rise. At the same time, the hot air is exhausted from the bottom of the equipment integrated cabinet, which can avoid the dampness of the bottom of the equipment integrated cabinet and prevent the bottom components from rusting or short circuiting due to long-term stay in a damp environment. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 It is a perspective structural schematic diagram of the present application;

[0024] Figure 2 It is a front cross-sectional structural schematic diagram of the present application;

[0025] Figure 3 It is a side cross-sectional structural schematic diagram of the present application;

[0026] Figure 4 It is a back structural schematic diagram of the present application.

[0027] Figure 5 It is an enlarged schematic diagram of the opening and closing structure of the present application.

[0028] In the figure: 1, equipment integrated cabinet; 2, installation bin; 3, placing plate; 4, battery placing rack; 5, placing bin; 6, top groove; 7, green plant installation rack; 8, gas sending way; 9, blowing hole; 10, cooling pipe; 11, ventilation hole; 12, universal wheel; 13, fixed plate; 14, screw rod; 15, fixed foot; 16, heat dissipation fan; 17, air inlet window; 18, filter screen; 19, door plate; 20, temperature detector; 21, electric telescopic rod; 22, louver board; 23, filter plate; 24, carbon adsorption plate; 25, gear ring; 26, gear plate. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments.

[0030] Please refer to Figures 1-5The application provides a source network and energy storage integrated device, which comprises a device integrated cabinet 1, a battery placing rack 4, a top groove 6, a cooling pipe 10, an air inlet window 17 and a door plate 19, the device integrated cabinet 1 is provided with a mounting bin 2, the mounting bin 2 is provided with a placing plate 3, the placing plate 3 is provided with the battery placing rack 4, the battery placing rack 4 is provided with a placing bin 5, the placing bin 5 is provided with an energy storage battery, the battery placing rack 4 is provided with a gas feeding channel 8, the bin wall of the placing bin 5 is provided with a blowing hole 9, the air inlet window 17 of the device integrated cabinet 1 is provided with a cooling fan 16, the cooling fan 16 is provided with two groups, one group of the cooling fan 16 is connected with the gas feeding channel 8, and the other group of the cooling fan 16 is connected with the mounting bin 2, the top of the device integrated cabinet 1 is provided with the top groove 6, the top groove 6 is provided with a green plant mounting rack 7, the bottom surface of the green plant mounting rack 7 is provided with a filter screen 18, the inner wall of the device integrated cabinet 1 is provided with the cooling pipe 10, and one end of the cooling pipe 10 is connected with the top groove 6. By starting the two groups of cooling fans 16, one group of the cooling fans 16 sucks external air through the air inlet window 17, then sends the air into the gas feeding channel 8 formed in the battery placing rack 4, and blows the air out from the blowing hole 9 formed in the bin wall of the placing bin 5, so that the air is blown to the surface of the energy storage battery from four sides, directional and uniform cooling of each group of batteries is realized, and the influence of local high temperature on the performance of the batteries is avoided; the other group of the cooling fans 16 directly sends cold air into the mounting bin 2, so that the overall environmental temperature in the mounting bin 2 is rapidly reduced, when the device integrated cabinet 1 is used outdoors, the green plant mounting rack 7 in the top groove 6 can be planted with green plants, the device integrated cabinet 1 is prevented from being directly irradiated by sunlight through the green plants, the internal temperature of the device integrated cabinet 1 is reduced due to the sunlight, meanwhile, the filter screen 18 on the bottom surface of the green plant mounting rack 7 can filter rainwater, the filtered rainwater flows into the cooling pipe 10 arranged in the inner wall of the device integrated cabinet 1, and the rainwater can absorb heat in the mounting bin 2 in the cooling pipe 10, so that the cooling effect of the energy storage battery is further improved, by arranging two groups of cooling fans in the device integrated cabinet and connecting the two groups of cooling fans with the gas feeding channel of the battery placing rack and the mounting bin respectively, directional cooling of the energy storage battery and cooling of the overall environment of the mounting bin can be realized at the same time, a double cooling mechanism is formed, local high temperature is avoided, hot air is discharged quickly, meanwhile, the green plant mounting rack is arranged in the top groove of the device integrated cabinet, the cooling effect is further improved, the device can keep an appropriate working temperature in a long-term running process, and therefore the stable running and service life of the energy storage battery and other components are ensured.

[0031] The air inlet window 17 is rotatably installed with a louver plate 22, the louver plate 22 is installed with a gear ring 25, the equipment integrated cabinet 1 is installed with an electric telescopic rod 21, one end of the electric telescopic rod 21 is installed with a gear plate 26, the gear plate 26 is engaged with the gear ring 25, and the door plate 19 is installed with a temperature detector 20. The temperature detector 20 can monitor the temperature in the installation bin 2 in real time. When it is detected that the temperature exceeds the preset threshold value, the controller controls the electric telescopic rod 21 and the cooling fan 16 to start, the electric telescopic rod 21 drives the gear plate 26 to move, the gear plate 26 is engaged with the gear ring 25 to drive, the louver plate 22 is rotated to open, the air inlet amount of the air inlet window 17 is increased, and the cooling efficiency is improved in cooperation with the cooling fan 16; when the temperature is lower than the preset value, the controller controls the electric telescopic rod 21 to operate reversely, drives the gear plate 26 to reset, makes the louver plate 22 close, reduces the dust from the outside, and at the same time, the cooling fan 16 reduces the rotating speed or stops running. Through the linkage cooperation of the temperature detector 20, the electric telescopic rod 21, the gear plate 26 and the gear ring 25, the automatic opening and closing of the louver plate 22 and the intelligent speed regulation of the cooling fan 16 are realized. The cooling effect can be ensured at high temperature, the dust invasion can be reduced at low temperature, and the energy consumption can be reduced, forming a dynamic adjustment cooling protection mechanism to save energy.

[0032] The bottom of the equipment integrated cabinet 1 is provided with a ventilation hole 11. The ventilation hole 11 is communicated with the inside of the installation bin 2, can timely discharge the hot air generated by the heat dissipation in the installation bin 2 and the hot air generated by the heat dissipation of the energy storage battery, avoids the accumulation of the hot air in the installation bin 2 to cause the temperature rise, and at the same time, the hot air is discharged from the bottom of the equipment integrated cabinet 1, can avoid the moisture of the bottom of the equipment integrated cabinet 1, and prevent the rust or short circuit of the bottom components in the long-term humid environment.

[0033] The air inlet window 17 is installed with a filter plate 23 and a carbon adsorption plate 24. The filter plate 23 can intercept dust, particulate matter and flocculation in the air, prevent dust impurities from entering the inside of the equipment integrated cabinet 1, the carbon adsorption plate 24 can adsorb moisture in the air, avoid the humid air from corroding electronic components, ensure that the air sent into the installation bin 2 and the air duct 8 is clean and dry, and prolong the service life of the equipment.

[0034] The outer wall of the equipment integrated cabinet 1 is provided with a fixing plate 13, the fixing plate 13 is provided with a screw rod 14, the other end of the screw rod 14 is rotatably provided with a fixing foot 15. By rotating the screw rod 14 provided on the fixing plate 13, when the equipment integrated cabinet 1 needs to be fixed, rotating the screw rod 14 makes the fixing foot 15 move downward until contacting the ground and being tightly pressed, at the same time, the equipment integrated cabinet 1 is lifted to a certain distance from the ground, avoiding the direct contact of ground water vapor with the bottom of the equipment integrated cabinet, and enhancing the stability and moisture resistance of the equipment; when the equipment needs to be moved, the screw rod 14 is reversely rotated to make the fixing foot 15 retract upward, at this time, the universal wheel 12 contacts the ground, facilitating the flexible movement of the equipment integrated cabinet, and realizing the convenient switching between the fixed and moved states.

[0035] The bottom of the equipment integrated cabinet 1 is provided with a universal wheel 12. Four universal wheels 12 are symmetrically distributed at the four corner positions of the bottom of the equipment integrated cabinet 1, through the universal wheels 12 provided at the bottom of the equipment integrated cabinet 1, the equipment integrated cabinet 1 can change the moving direction, greatly reducing the labor intensity of manual carrying.

[0036] The other end of the cooling pipe 10 is provided with a rubber plug, the cooling pipe 10 is coiled in the inner wall of the equipment integrated cabinet 1, and the pipe body of the cooling pipe 10 is closely attached to the inner wall of the installation bin 2. The coiled and attached design of the cooling pipe 10 can increase the contact area with the inner wall of the installation bin, when the rainwater circulates in the cooling pipe, the heat generated by the operation of the electronic components in the installation bin can be quickly absorbed, and the internal environment temperature of the installation bin is effectively reduced.

[0037] The circuit module and electronic components involved in the present application are mature technologies, there are many products on the market, and they are general standard parts or components known to those skilled in the art, the structure and principle thereof can be known by the technical personnel through the technical manual or through the conventional use, the protection content of the present application does not involve the improvement of software and method, so the electronic component model and the control process of the control system are not described in detail here.

[0038] Working principle: The temperature detector 20 can monitor the temperature in the installation bin 2 in real time. When the temperature detected exceeds the preset threshold value, the controller controls the electric telescopic rod 21 and the cooling fan 16 to start. The electric telescopic rod 21 drives the gear plate 26 to move, and the gear plate 26 is meshed with the gear ring 25 to drive the louver plate 22 to rotate and open, thereby increasing the air inlet of the air inlet window 17 and improving the cooling efficiency. After starting two groups of cooling fans 16, one group of cooling fans 16 sucks external air through the air inlet window 17, and then sends the air into the air supply channel 8 in the battery placing rack 4, and blows out from the air blowing hole 9 in the placing bin 5 wall, so that the air is evenly blown to the surface of the energy storage battery from four directions, realizing directional and uniform cooling of each group of batteries, avoiding the influence of local high temperature on the performance of the battery; the other group of cooling fans 16 directly sends cold air into the installation bin 2, quickly reduces the overall environmental temperature in the installation bin 2, and cooperates with the ventilation hole 11 at the bottom of the equipment integrated cabinet 1 to timely discharge the hot air in the installation bin 2 due to heat dissipation, and the hot air generated by the energy storage battery, avoiding the accumulation of hot air in the installation bin 2 to cause temperature rise, and at the same time, the hot air is discharged from the bottom of the equipment integrated cabinet 1, which can avoid the moisture at the bottom of the equipment integrated cabinet 1, prevent the bottom components from rusting or short-circuiting due to long-term exposure to a humid environment, and when the temperature is lower than the preset value, the controller controls the electric telescopic rod 21 to operate in the reverse direction, drives the gear plate 26 to reset, and makes the louver plate 22 close, thereby reducing the dust entering from the outside. At the same time, the cooling fan 16 reduces the rotating speed or stops running. Through the linkage of the temperature detector 20, the electric telescopic rod 21, the gear plate 26 and the gear ring 25, the automatic opening and closing of the louver plate 22 and the intelligent speed regulation of the cooling fan 16 are realized, which can not only ensure the cooling effect at high temperature, but also reduce dust invasion and energy consumption at low temperature, forming a dynamic adjustment cooling protection mechanism to save energy. When the equipment integrated cabinet 1 is used outdoors, the green plant installation rack 7 in the top groove 6 can plant green plants, which can prevent the direct sunlight from shining on the top of the equipment integrated cabinet 1, reduce the temperature rise in the equipment integrated cabinet 1 due to sunlight exposure, and at the same time, the filter screen 18 at the bottom of the green plant installation rack 7 can filter rainwater, and the filtered rainwater flows into the cooling pipe 10 arranged on the inner wall of the equipment integrated cabinet 1. The rainwater in the cooling pipe 10 can absorb the heat in the installation bin 2, further improving the cooling effect of the energy storage battery. By arranging two groups of cooling fans in the equipment integrated cabinet, which are respectively communicated with the air supply channel of the battery placing rack and the installation bin, the directional cooling of the energy storage battery and the overall cooling of the installation bin environment can be realized at the same time, forming a double cooling mechanism to avoid local high temperature and accelerate the discharge of hot air. At the same time, the green plant installation rack is installed in the top groove of the equipment integrated cabinet, which further improves the cooling effect and ensures the stable operation and service life of the energy storage battery and other components during the long-term operation of the equipment.

[0039] It will be apparent to those skilled in the art that the application is not limited to the details of the above-exemplified embodiments and that the present application can be implemented in other particular forms without departing from the spirit or essential characteristics of the present application. The embodiments should therefore be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the above description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims with respect to the figures of the patent document.

Claims

1. A source network load integrated device, comprising a device integrated cabinet (1), a battery placing rack (4), a top groove (6), a cooling pipe (10), an air inlet window (17) and a door plate (19), characterized in that: The equipment integrated cabinet (1) is provided with an installation bin (2), the installation bin (2) is provided with a placing plate (3), the placing plate (3) is provided with a battery placing rack (4), the battery placing rack (4) is provided with a placing bin (5), the placing bin (5) is provided with an energy storage battery, the battery placing rack (4) is provided with a gas feeding channel (8), the placing bin (5) is provided with a blowing hole (9), the equipment integrated cabinet (1) is provided with an air inlet window (17), the air inlet window (17) is provided with a cooling fan (16), the cooling fan (16) is provided with two groups, one group of the cooling fan (16) is connected with the gas feeding channel (8), the other group of the cooling fan (16) is connected with the installation bin (2), the top of the equipment integrated cabinet (1) is provided with a top groove (6), the top groove (6) is provided with a green plant mounting rack (7), the bottom surface of the green plant mounting rack (7) is provided with a filter screen (18), the inner wall of the equipment integrated cabinet (1) is provided with a cooling pipe (10), one end of the cooling pipe (10) is connected with the top groove (6).

2. The source-network-payload-accumulator integrated device of claim 1, wherein: The air inlet window (17) is provided with a louver plate (22), the louver plate (22) is provided with a gear ring (25), the equipment integrated cabinet (1) is provided with an electric telescopic rod (21), one end of the electric telescopic rod (21) is provided with a gear plate (26), the gear plate (26) is engaged with the gear ring (25), the door plate (19) is provided with a temperature detector (20).

3. The source-network-payload- storage integrated device of claim 1, wherein: The bottom of the equipment integrated cabinet (1) is provided with a ventilation hole (11).

4. The source-network-payload- storage integrated device of claim 1, wherein: The air inlet window (17) is provided with a filter plate (23) and a carbon adsorption plate (24).

5. The source-network-payload integrated device of claim 1, wherein: The outer wall of the equipment integrated cabinet (1) is provided with a fixed plate (13), the fixed plate (13) is provided with a lead screw (14), the other end of the lead screw (14) is provided with a fixed foot (15).

6. The source-network-payload integrated device of claim 1, wherein: The bottom of the equipment integrated cabinet (1) is provided with a universal wheel (12).

7. The source-network-payload- storage integrated device of claim 1, wherein: The other end of the cooling pipe (10) is provided with a rubber plug, the cooling pipe (10) is coiled in the inner wall of the equipment integrated cabinet (1), and the pipe body of the cooling pipe (10) is closely attached to the inner wall of the installation bin (2). The air inlet window (17) is provided with a louver plate (22), the louver plate (22) is provided with a gear ring (25), the equipment integrated cabinet (1) is provided with an electric telescopic rod (21), one end of the electric telescopic rod (21) is provided with a gear plate (26), the gear plate (26) is engaged with the gear ring (25), the door plate (19) is provided with a temperature detector (20). The bottom of the equipment integrated cabinet (1) is provided with a ventilation hole (11). The air inlet window (17) is provided with a filter plate (23) and a carbon adsorption plate (24). The outer wall of the equipment integrated cabinet (1) is provided with a fixed plate (13), the fixed plate (13) is provided with a lead screw (14), the other end of the lead screw (14) is provided with a fixed foot (15). The bottom of the equipment integrated cabinet (1) is provided with a universal wheel (12). The other end of the cooling pipe (10) is provided with a rubber plug, the cooling pipe (10) is coiled in the inner wall of the equipment integrated cabinet (1), and the pipe body of the cooling pipe (10) is closely attached to the inner wall of the installation bin (2).