Heat dissipation container

By installing heat dissipation and ventilation devices in the energy storage container, the problem of poor internal heat dissipation is solved, achieving effective gas circulation and protection, ensuring the normal operation of electrical components and protection during transportation.

CN224217526UActive Publication Date: 2026-05-08CHUANQI TECH (BEIJING) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHUANQI TECH (BEIJING) CO LTD
Filing Date
2024-12-27
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

Poor heat dissipation inside the energy storage container leads to high-temperature burnout of electrical components, affecting its service life and working efficiency.

Method used

A heat dissipation container was designed, which includes heat dissipation devices and ventilation devices installed on both sides of the container. Hot air is blown out by a fan and cold air is introduced by the ventilation device to achieve gas circulation and prevent impurities from entering.

Benefits of technology

It effectively improves the heat dissipation of the equipment, protects the internal electrical components, prevents impurities from entering during transportation, and ensures the normal operation of the equipment during work and transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a heat dissipation container. The heat dissipation container comprises a container body, two or more heat dissipation devices and two or more ventilation devices. The more than two heat dissipation devices are respectively arranged on two opposite sides of the box body, the more than two ventilation devices are respectively arranged on two opposite sides of the box body, and the heat dissipation devices are positioned above the ventilation devices; each heat dissipation device comprises a fan, a first mounting frame and a first ventilation plate; the first mounting frame is arranged on the side wall of the box body, and one side of the first ventilation plate is hinged to one side of the first mounting frame; the fan is fixed in the cavity of the box body and is suitable for blowing hot air in the box body out of the box body; the ventilation device comprises a second mounting frame, a second ventilation plate and a shutter; the second mounting frame is arranged on the side wall of the box body, one side of the second ventilation plate is hinged to one side of the second mounting frame, and the second ventilation plate is suitable for rotating with the side, hinged to the second mounting frame, of the second ventilation plate as the axis; and the shutter is arranged on the inner side of the second mounting frame.
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Description

Technical Field

[0001] This application relates to the field of ventilation and heat dissipation technology, and more particularly to a heat dissipation container. Background Technology

[0002] Energy storage containers integrate electrical components such as battery clusters and battery management systems, making them integrated energy storage devices. During operation, the internal ambient temperature of the container has a significant impact on these electrical components. If the container's heat dissipation is inadequate, the internal electrical components may burn out due to high temperatures, severely affecting their lifespan and operational efficiency. This application proposes a heat-dissipating container to improve heat dissipation and ensure the normal operation of the internal equipment. Summary of the Invention

[0003] In view of this, this application proposes a heat dissipation container.

[0004] According to one aspect of this application, a heat dissipation container is provided, comprising: a container body, two or more heat dissipation devices and two or more ventilation devices;

[0005] The enclosure has two or more mounting holes on its opposite sides for installing heat dissipation and ventilation devices;

[0006] Two or more heat dissipation devices are respectively installed on opposite sides of the enclosure, and two or more ventilation devices are respectively installed on opposite sides of the enclosure with the heat dissipation devices located above the ventilation devices;

[0007] Each heat dissipation device includes: a fan, a first mounting frame, and a first ventilation plate; the first mounting frame is disposed on the side wall of the housing, one side of the first ventilation plate is hinged to one side of the first mounting frame, and the first ventilation plate is adapted to rotate about the side hinged to the first mounting frame as an axis; the fan is fixed inside the cavity of the housing and is adapted to blow hot air out of the housing.

[0008] The ventilation device includes: a second mounting frame, a second ventilation plate, and louvers; the second mounting frame is disposed on the side wall of the housing, one side of the second ventilation plate is hinged to one side of the second mounting frame, and the second ventilation plate is adapted to rotate about the side hinged to the second mounting frame as an axis; the louvers are disposed on the inner side of the second mounting frame.

[0009] In one possible implementation, the heat dissipation device further includes: a first window opener, which is disposed on a first mounting plate within a first mounting frame, and the drive end of the first window opener is connected to a first ventilation plate and is adapted to drive the first ventilation plate to rotate.

[0010] In one possible implementation, the heat dissipation device further includes a first assist device disposed between the first mounting frame and the first ventilation plate.

[0011] In one possible implementation, the fan is provided with a support, which is located on the inner side wall of the housing, and the fan is placed on the support.

[0012] In one possible implementation, there are a total of 8 heat dissipation devices; 4 of them are located on one side of the enclosure and arranged sequentially along the length of the enclosure, and the other 4 are located on the other side of the enclosure and arranged sequentially along the length of the enclosure.

[0013] In one possible implementation, the ventilation device further includes a second window opener, which is disposed on a second mounting plate within a second mounting frame, and the drive end of the second window opener is connected to the second ventilation plate and is adapted to drive the second ventilation plate to rotate.

[0014] In one possible implementation, the ventilation device further includes a second assist device disposed between the second mounting frame and the second ventilation plate.

[0015] In one possible implementation, there are a total of 12 ventilation devices; 6 of them are located on one side of the enclosure, and the other 6 are located on the other side of the enclosure, with the ventilation devices on both sides of the enclosure facing each other.

[0016] In one possible implementation, cable sheathing tubes are provided on the side walls of the enclosure.

[0017] Beneficial effects: The enclosure provides installation space for internal electrical components, isolates and protects them, and prevents direct exposure of internal electrical components to the air, thus preventing dust accumulation; two or more heat dissipation devices are used to blow out and release hot air from inside the enclosure, and two or more ventilation devices are used to introduce external air into the enclosure to achieve air circulation. The fan of the heat dissipation device of this application can blow hot air out of the enclosure; cold air enters the enclosure from the ventilation device, thereby achieving gas circulation. This not only ensures the air-cooling effect during equipment operation, but also ensures that no impurities fall into the enclosure during operation or transportation, thereby further protecting the internal electrical components.

[0018] Other features and aspects of this application will become clear from the following detailed description of exemplary embodiments with reference to the accompanying drawings. Attached Figure Description

[0019] The accompanying drawings, which are included in and form part of this specification, illustrate exemplary embodiments, features, and aspects of this application together with the specification and serve to explain the principles of this application.

[0020] Figure 1 This diagram illustrates the main structure of the heat dissipation container according to an embodiment of this application.

[0021] Figure 2 A side view of a heat dissipation container according to an embodiment of this application is shown;

[0022] Figure 3 A partial structural diagram of the heat dissipation container according to an embodiment of this application is shown;

[0023] Figure 4 An internal view of a heat dissipation container according to an embodiment of this application is shown;

[0024] Figure 5 This diagram shows the main structural structure of the heat dissipation container according to an embodiment of this application;

[0025] Figure 6 Show Figure 1 A magnified view of a portion of the image;

[0026] Figure 7 This diagram shows the main structure of the heat dissipation device according to an embodiment of this application;

[0027] Figure 8 This diagram shows a partial structural view of the heat dissipation device according to an embodiment of this application;

[0028] Figure 9 This diagram shows a partial structural view of the heat dissipation device according to an embodiment of this application;

[0029] Figure 10 This diagram shows the main structure of the heat dissipation device according to an embodiment of this application;

[0030] Figure 11 This diagram shows a partial structural view of the heat dissipation device according to an embodiment of this application;

[0031] Figure 12 This diagram shows a partial structural view of the heat dissipation device according to an embodiment of this application;

[0032] Figure 13 Partial structural diagram of the heat dissipation container according to an embodiment of this application;

[0033] Figure 14 This diagram shows the main structure of the ventilation device according to an embodiment of this application;

[0034] Figure 15 This diagram shows the main structure of a ventilation device according to an embodiment of this application. Detailed Implementation

[0035] Various exemplary embodiments, features, and aspects of this application will now be described in detail with reference to the accompanying drawings. The same reference numerals in the drawings denote elements that have the same or similar functions. Although various aspects of the embodiments are shown in the drawings, they are not necessarily drawn to scale unless specifically indicated otherwise.

[0036] It should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", and "circumferential" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model or simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0037] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0038] The term “exemplary” as used herein means “serving as an example, embodiment, or illustration.” Any embodiment illustrated herein as “exemplary” is not necessarily to be construed as superior to or better than other embodiments.

[0039] Furthermore, to better illustrate this application, numerous specific details are provided in the following detailed embodiments. Those skilled in the art should understand that this application can be implemented without certain specific details. In some instances, methods, means, components, and circuits well-known to those skilled in the art have not been described in detail in order to highlight the main points of this application.

[0040] Figure 1 This diagram shows the main structural structure of a heat dissipation container according to an embodiment of this application. Figure 1As shown, this heat dissipation container is characterized by comprising: a container body 100, two or more heat dissipation devices, and two or more ventilation devices; two or more first mounting holes 160 are provided on opposite sides of the container body 100 for mounting heat dissipation devices, and two or more second mounting holes 150 are provided on opposite sides of the container body 100 for mounting ventilation devices; the two or more heat dissipation devices are respectively disposed on opposite sides of the container body 100, and the two or more ventilation devices are respectively disposed on opposite sides of the container body 100 with the heat dissipation devices located above the ventilation devices; each heat dissipation device includes: a fan 300, a first mounting frame 230, and a first ventilation plate 200; the first mounting frame 230 is disposed on the side of the container body 100. On the wall, one side of the first ventilation plate 200 is hinged to one side of the first mounting frame 230. The first ventilation plate 200 is adapted to rotate about the side that is hinged to the first mounting frame 230 as an axis. The fan 300 is fixed inside the cavity of the housing 100 and is adapted to blow hot air out of the housing 100. The ventilation device includes: a second mounting frame 450, a second ventilation plate 400, and a louver 500. The second mounting frame 450 is disposed on the side wall of the housing 100. One side of the second ventilation plate 400 is hinged to one side of the second mounting frame 450. The second ventilation plate 400 is adapted to rotate about the side that is hinged to the second mounting frame 450 as an axis. The louver 500 is disposed inside the second mounting frame 450.

[0041] It should be noted that the enclosure 100 is used to provide installation space for internal electrical components and to isolate and protect them, preventing signal interference between internal electrical components and external equipment, and preventing internal electrical components from being directly exposed to the air, which would lead to dust accumulation. Two or more heat dissipation devices are used to blow out and release hot air inside the enclosure 100, and two or more ventilation devices are used to introduce external air into the enclosure 100 to achieve air circulation. Furthermore, the fan 300 of the heat dissipation device is used to blow the heat dissipated by the internal electrical components of the enclosure 100 out of the enclosure 100 through the first mounting hole 160. The first mounting frame 230 is used to fix the first ventilation plate 200 at the first mounting hole 160 of the enclosure 100. The rotatable setting of the first ventilation plate 200 is used to open or close the first mounting hole 160 as needed. When the internal electrical components are working, the first ventilation plate 200 is rotated open, and the fan 300 blows the heat inside the enclosure 100 out of the enclosure 100 to ventilate and dissipate heat. Meanwhile, during the overall transportation of the housing 100, the first ventilation plate 200 is rotated and closed to seal the fan 300 and internal equipment, preventing impurities and debris from falling into the housing 100 through the first mounting hole 160 during transportation. The second mounting frame 450 of the ventilation device is suitable for mounting the entire ventilation device on the second mounting hole 150 on the side wall of the housing 100. The rotatable setting allows the mounting hole to be opened or closed as needed. When the internal electrical components are working, the second ventilation plate 400 is rotated and opened, allowing external cold air to flow through the louvers 500 and enter the cavity of the housing 100 to achieve electrical heat dissipation of the equipment. Similarly, during the overall transportation of the housing 100, the second ventilation plate 400 is rotated and closed to keep the interior of the housing 100 sealed, preventing impurities and debris from falling into the housing 100 through the second mounting hole 150 during transportation. The heat dissipation device of this application blows hot air out of the housing 100 and cool air enters the housing 100 through the ventilation device, thereby realizing gas circulation. This not only ensures the air cooling effect during the operation of the equipment, but also ensures that no impurities fall into the housing 100 during operation or transportation, thereby further protecting the electrical components.

[0042] In one possible implementation, such as Figure 5 As shown, the main body of the enclosure 100 has a cuboid structure. Multiple first mounting holes 160 and multiple second mounting holes 150 are provided on opposite sides of the enclosure 100. The multiple first mounting holes 160 are suitable for installing heat dissipation devices, and the multiple second mounting holes 150 are suitable for installing ventilation devices. It should be noted that the main body of both the first mounting holes 160 and the second mounting holes 150 is a rectangular hole structure. Furthermore, the enclosure 100 consists of a cuboid frame and multiple cover plates 120 covering the frame.

[0043] In one possible implementation, such as Figure 15 As shown, the heat dissipation device also includes a first window opener 250, which is disposed on the first mounting plate 240 within the first mounting frame 230. The driving end of the first window opener 250 is connected to the first ventilation plate 200 and is suitable for driving the first ventilation plate 200 to rotate. It should be noted that the first window opener 250 is suitable for automatically driving the first ventilation plate 200 to rotate, thereby achieving the raising and lowering of the first ventilation plate 200 without manual opening.

[0044] In one possible implementation, such as Figure 14 As shown, the heat dissipation device also includes a first assist device 210, which is disposed between the first mounting frame 230 and the first ventilation plate 200. It should be noted that the first assist device 210 is used to assist in opening the first ventilation plate 200. The first assist device 210 cooperates with the first window opener 250 to ensure the smooth opening and closing of the first ventilation plate 200.

[0045] Preferably, the first assist device 210 is a pneumatic spring rod; one end of the pneumatic spring rod is hinged to the first mounting frame 230, and the other end of the pneumatic spring rod is hinged to the first ventilation plate 200. Further, two first assist devices 210 are provided, and the two first assist devices 210 are symmetrically arranged on both sides of the first mounting frame 230.

[0046] In one possible implementation, such as Figure 14 As shown, the main body of the first ventilation panel 200 is a rectangular plate structure.

[0047] In one possible implementation, such as Figure 15 As shown, the first mounting frame 230 consists of two opposing rod-shaped structures, with a first mounting plate 240 fixedly positioned between them. One side of the first mounting frame 230 is fixedly connected to the housing 100 via multiple bolts 231. The main body of the first mounting plate 240 is a rectangular plate structure, and a rectangular window 242 is provided in the center of the first mounting plate 240. Figure 14 As shown, a through hole 245 is provided below the window 242 of the first mounting plate 240. The two sides of the first window opener 250 are fixed to the inner side of the first mounting plate 240 by fasteners 243. The chain 220 of the first window opener 250 protrudes out of the box 100 through the through hole 245 and is connected to the first ventilation plate 200.

[0048] In one possible implementation, one side of the first ventilation plate 200 is connected by three hinges (the structure of which is similar to...) Figure 11(The hinge 452 in each part has the same structure) and is hinged to one side of the first mounting plate 240. For example... Figure 15 As shown, one side of the hinge is fixedly connected to the first mounting plate 240 by three bolts 241. The hinge is provided with a rotating shaft, which is fixedly connected to the first ventilation plate 200. Since the rotating shaft can rotate on the hinge, the first ventilation plate 200 can rotate under the action of the rotating shaft.

[0049] In one possible implementation, such as Figure 13 As shown, the heat dissipation device also includes an isolation mesh 800, which is disposed on the side of the first mounting plate 240 facing the first ventilation plate 200 and covers the window 242 on the first mounting plate 240. The isolation mesh 800 further improves the filtration effect. Furthermore, the isolation mesh 800 is fixedly connected to the first mounting plate 240 by multiple bolts 244. Preferably, the isolation mesh 800 is made of wire mesh.

[0050] In one possible implementation, the fan 300 is provided with a support, which is disposed on the inner side wall of the housing 100, and the fan 300 is placed on the support. For example... Figure 6 As shown, each support includes: two support frames 600 arranged opposite each other; the two support frames 600 are arranged on both sides of the first mounting hole 160, and the fan 300 is placed above the two support frames 600, with the blowing end of the fan 300 facing the first mounting hole 160, which is suitable for releasing hot air outward from the first mounting hole 160.

[0051] In one possible implementation, the fan 300 is provided with a fan housing 330, such as Figure 4 As shown, the bottom side of the fan housing 330 is provided with an air inlet 310, such as... Figure 13 As shown, the fan housing 330 has an air outlet 320 on the side facing the first mounting hole 160; the fan 300 is installed inside the fan housing 330, and the exhaust side of the fan 300 faces the air inlet 310, thereby drawing hot air out of the housing 100. The bottom of the fan housing 330 is fixedly connected to the support frame 600 by bolts 610.

[0052] In one possible implementation, a total of eight heat dissipation devices are provided; four of these devices are located on one side of the enclosure 100 and arranged sequentially along the length of the enclosure 100, while the other four are located on the other side of the enclosure 100 and arranged sequentially along the length of the enclosure 100. It should be noted that the four heat dissipation devices on both sides of the enclosure 100 are arranged opposite each other.

[0053] In one possible implementation, such as Figure 7 and Figure 8As shown, the ventilation device includes: a second mounting frame 450, a second ventilation plate 400, and a louver 500; the main body of the second mounting frame 450 is rectangular, the second mounting frame 450 matches the second mounting hole 150 of the housing 100, the second mounting frame 450 is embedded in the second mounting hole 150 of the housing 100 and fixed to the housing 100, the inner side of the second mounting frame is provided with a second mounting plate 470, the main body of the second mounting plate 470 is rectangular plate-shaped, and a rectangular window is also opened in the middle of the second mounting plate 470.

[0054] In one possible implementation, the ventilation device further includes a second window opener 430, which is disposed on a second mounting plate 450 within a second mounting frame 450. The drive end of the second window opener 430 is connected to a second ventilation plate 400 and is adapted to drive the second ventilation plate 400 to rotate. The second window opener 430 is adapted to automatically drive the second ventilation plate 400 to rotate, thereby achieving the raising and lowering of the second ventilation plate 400 without manual opening. Similarly, as... Figure 10 As shown, a through hole is provided below the window of the second mounting plate 470. The two sides of the second window opener 430 are fixed to the inner side of the second mounting plate 470 by fasteners 431. The chain 420 of the second window opener 430 protrudes through the through hole to the outside of the box 100 and is connected to the second ventilation plate 400.

[0055] Similarly, one side of the second ventilation panel 400 is hinged to one side of the second mounting plate 470 via three hinges 452. Figure 11 As shown, one side of the hinge 452 is fixedly connected to the second mounting plate 470 by three bolts 453. The hinge 452 is provided with a rotating shaft 451, which is fixedly connected to the second ventilation plate 400. Since the rotating shaft 451 can rotate on the hinge 452, the second ventilation plate 400 can rotate under the action of the rotating shaft 451.

[0056] In one possible implementation, such as Figure 9 As shown, the ventilation device also includes a second assist device 410, which is disposed between the second mounting frame 450 and the second ventilation plate 400. It should be noted that the second assist device 410 is used to assist in opening the second ventilation plate 400. The second assist device 410 cooperates with the second window opener 430 to ensure the smooth opening and closing of the second ventilation plate 400.

[0057] Preferably, the second assist device 410 is a pneumatic spring rod; one end of the pneumatic spring rod is hinged to the second mounting frame 450, and the other end of the pneumatic spring rod is hinged to the second ventilation plate 400. Further, two second assist devices 410 are provided, and the two second assist devices 410 are symmetrically arranged on both sides of the second mounting frame 450.

[0058] In one possible implementation, the venetian blind 500 includes: a window frame 710 and two or more slats; the main body of the window frame 710 is a rectangular frame structure, the window frame 710 is located at the window of the second mounting plate 470 and is fixedly connected to the second mounting plate 470, the two or more slats are arranged sequentially along the length of the window frame 710 and cover the window on the second mounting plate 470, the main body of the two or more slats is a strip-shaped structure, and the two or more slats are installed inside the window frame 710 with a certain tilt angle. It should be noted that the tilt angle of the slats is 60 degrees.

[0059] In one possible implementation, such as Figure 10 As shown, it also includes; sponge net 700; such as Figure 10 As shown, the sponge mesh 700 is embedded within the window frame 710, and the sponge mesh 700 is located on the side of the fan blade facing the inside of the housing 100. The design of the sponge mesh 700 can effectively filter the air entering from the ventilation device, preventing a large amount of dust from being sucked into the interior of the housing 100.

[0060] In one possible implementation, a total of 12 ventilation devices are provided; six ventilation devices are located on one side of the enclosure 100, and the other six ventilation devices are located on the other side of the enclosure 100, with the ventilation devices on both sides of the enclosure 100 arranged opposite each other. Furthermore, the six ventilation devices on one side of the enclosure 100 are arranged in a two-row, three-column configuration.

[0061] It should be noted that the second mounting frame 450 of the ventilation device is larger than the first mounting frame 230 of the heat dissipation device.

[0062] In one possible implementation, both the first window opener 250 and the second window opener 430 employ existing electric chain window openers.

[0063] In one possible implementation, a cable sheathing conduit 110 is provided on the side wall of the enclosure 100. For example... Figure 1 As shown, the side wall of the enclosure 100 is provided with a plurality of adjacently arranged cable sheathing tubes 110. One end of the cable sheathing tube 110 is connected to the side wall of the enclosure 100 and communicates with the internal cavity of the enclosure 100. External cables can pass through the cable sheathing tube 110 into the cavity of the enclosure 100 to make electrical connections with electrical components. Furthermore, the cable sheathing tube 110 is made of rainproof cloth.

[0064] In one possible implementation, it further includes: a control system 130 and a manual switch 140; the manual switch 140 is electrically connected to the control system 130, and the control system 130 is electrically connected to the motors inside the first window opener 250 and the second window opener 430, which is suitable for controlling the working state of the first window opener 250 and the second window opener 430 through the manual switch 140. This part is prior art and will not be described in detail in this application.

[0065] Furthermore, the enclosure is made of Q235 steel; the first ventilation panel 200 and the second ventilation panel 400 are both made of cold-rolled steel 2.0.

[0066] Furthermore, the model number of the 300 fan is: SC450B2-AL5-00-101.

[0067] The various embodiments of this application have been described above. These descriptions are exemplary and not exhaustive, nor are they limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or improvement of the technology in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.

Claims

1. A heat dissipation container, characterized in that, include: The enclosure, two or more heat dissipation devices, and two or more ventilation devices; The enclosure has two or more first mounting holes on its opposite sides for mounting the heat dissipation device; the enclosure also has two or more second mounting holes on its opposite sides for mounting the ventilation device. Two or more heat dissipation devices are respectively arranged on opposite sides of the box body, and two or more ventilation devices are respectively arranged on opposite sides of the box body with the heat dissipation devices located above the ventilation devices; Each of the aforementioned heat dissipation devices includes: a fan, a first mounting frame, and a first ventilation plate; the first mounting frame is disposed on the side wall of the housing, one side of the first ventilation plate is hinged to one side of the first mounting frame, and the first ventilation plate is adapted to rotate about the side hinged to the first mounting frame as an axis; the fan is fixed inside the cavity of the housing and is adapted to blow hot air from the housing out of the housing. The ventilation device includes: a second mounting frame, a second ventilation plate, and louvers; the second mounting frame is disposed on the side wall of the housing, one side of the second ventilation plate is hinged to one side of the second mounting frame, and the second ventilation plate is adapted to rotate about the side hinged to the second mounting frame as an axis; the louvers are disposed on the inner side of the second mounting frame.

2. The heat dissipation container according to claim 1, characterized in that, The heat dissipation device further includes: a first window opener, which is disposed on a first mounting plate within the first mounting frame, and the driving end of the first window opener is connected to the first ventilation plate, and is adapted to drive the first ventilation plate to rotate.

3. The heat dissipation container according to claim 2, characterized in that, The heat dissipation device further includes a first assist device, which is disposed between the first mounting frame and the first ventilation plate.

4. The heat dissipation container according to claim 3, characterized in that, The fan is provided with a support, which is located on the inner side wall of the housing, and the fan is placed on the support.

5. The heat dissipation container according to claim 4, characterized in that, There are a total of 8 heat dissipation devices; 4 of the heat dissipation devices are located on one side of the box and arranged sequentially along the length of the box, and the other 4 heat dissipation devices are located on the other side of the box and arranged sequentially along the length of the box.

6. The heat dissipation container according to claim 1, characterized in that, The ventilation device further includes a second window opener, which is disposed on a second mounting plate within the second mounting frame. The driving end of the second window opener is connected to the second ventilation plate and is adapted to drive the second ventilation plate to rotate.

7. The heat dissipation container according to claim 6, characterized in that, The ventilation device further includes a second assist device, which is disposed between the second mounting frame and the second ventilation plate.

8. The heat dissipation container according to claim 7, characterized in that, There are a total of 12 ventilation devices; 6 of the ventilation devices are located on one side of the box, and the other 6 are located on the other side of the box, with the ventilation devices on both sides of the box facing each other.

9. The heat dissipation container according to claim 1, characterized in that, The side wall of the enclosure is provided with two or more cable sheathing pipes.