Container type energy storage power station heat dissipation device

Through the water cooling system of container-type energy storage power stations, the problem of difficult heat derivation of energy storage batteries is solved, and efficient heat dissipation effect is achieved.

CN223273349UActive Publication Date: 2025-08-26NORTHWEST ENGINEERING CORPORATION LIMITED
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Patent Information

Application Number
CN202422005203.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-08-26
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The ventilation-type heat dissipation method of container-type energy storage power stations is difficult to effectively derive the heat from the energy storage battery, resulting in poor heat dissipation effect.

Method used

The water cooling method is adopted to circulate the water cooling system and heat dissipation components, including water inlet pipes, drain pipes, water pumps, cooling pipes and heat dissipation fins. The water pump is used to circulate the cooling water and accelerate heat dissipation through the heat dissipation fins and heat dissipation fans.

Benefits of technology

The heat dissipation effect of energy storage batteries is improved, the cooling water circulation efficiency is high, the heat dissipation fins and heat dissipation fans further accelerate heat dissipation, achieving rapid heat export.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a container type energy storage power station heat dissipation device which comprises an installation frame and a circulating water cooling system, the installation frame is used for bearing an energy storage battery, and the circulating water cooling system comprises a water inlet pipe, a water drainage pipe, a water pump, a cooling pipe and a heat dissipation assembly. A shell of the energy storage battery is of an interlayer design and is communicated with the water inlet pipe and the water drainage pipe through connecting pipelines, the water pump is installed on the installation frame, a water outlet of the water pump is connected with the water inlet pipe, the cooling pipe is installed on the installation frame and connected with a water inlet of the water pump, and the water drainage pipe is connected with the cooling pipe. And a heat dissipation assembly is arranged on the mounting frame to accelerate heat dissipation of the cooling pipe. According to the container type energy storage power station, a water cooling mode is adopted, the heat dissipation effect of the energy storage battery is improved, meanwhile, cooling water can be recycled through the water pump, heat dissipation of the cooling water is further accelerated through the heat dissipation fins and the heat dissipation fan, heat of the container type energy storage power station is rapidly conducted out, and the effect is better.
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Description

Technical Field

[0001] The utility model belongs to the technical field of heat dissipation devices for energy storage power stations, and in particular relates to a heat dissipation device for a container-type energy storage power station. Background Art

[0002] Containerized energy storage power stations are a flexible and efficient electricity storage solution that combines the convenience of modern logistics with advanced battery energy storage technology. They are a key component of power system modernization, not only providing efficient energy storage solutions but also supporting the stable operation of the power grid and the effective utilization of renewable energy. With continued technological advancements and further cost reductions, containerized energy storage power stations are expected to play an increasingly important role in the future energy market.

[0003] Containerized energy storage power stations use ventilation-type heat dissipation, but the heat from the energy storage batteries inside is not easy to be dissipated, resulting in poor heat dissipation effect. Therefore, a heat dissipation device for a containerized energy storage power station is proposed. Utility Model Content

[0004] The purpose of the utility model is to address the deficiencies of the existing technology and provide a container-type energy storage power station heat dissipation device, which uses water cooling to conduct heat from the energy storage battery for heat dissipation.

[0005] The technical solution adopted by the present invention is a container-type energy storage power station heat dissipation device, including a mounting frame and a circulating water cooling system. The mounting frame is used to carry energy storage batteries. The circulating water cooling system includes a water inlet pipe, a drain pipe, a water pump, a cooling pipe and a heat dissipation component. The shell of the energy storage battery is a sandwich design and is connected to the water inlet pipe and the drain pipe through connecting pipes. The water pump is installed on the mounting frame and its water outlet is connected to the water inlet pipe. The cooling pipe is installed on the mounting frame and connected to the water inlet of the water pump. The drain pipe is connected to the cooling pipe. A heat dissipation component is installed on the mounting frame to accelerate the heat dissipation of the cooling pipe.

[0006] Furthermore, the mounting frame includes a base, a top frame, a side frame and a platform. The side frame is symmetrically fixed on the base. The side frame includes pillars and support beams. There are two pillars and they are fixedly connected to the base. There are several support beams that are evenly and equidistantly fixed between the two pillars. The top frame is fixedly connected to the top of the side frame. The platform is arranged between the two support beams on the same horizontal plane. The energy storage battery is arranged on the platform.

[0007] Furthermore, the water inlet pipe and the drain pipe are both provided with several interfaces for connecting to the connecting pipes. The interface on the water inlet pipe is connected to the bottom end of the outer shell of the energy storage battery through the connecting pipe, and the interface on the drain pipe is connected to the top end of the outer shell of the energy storage battery through the connecting pipe.

[0008] Furthermore, the heat dissipation assembly includes heat dissipation fins, and the heat dissipation fins are installed on the cooling pipes.

[0009] Furthermore, the heat dissipation assembly also includes a heat dissipation fan, which is installed on the mounting frame to accelerate the heat dissipation of the heat dissipation fins.

[0010] The beneficial effects of the present invention are:

[0011] The utility model provides a water cooling method, which improves the heat dissipation effect of the energy storage battery. At the same time, the cooling water can be circulated through the water pump, and the heat dissipation of the cooling water can be further accelerated by using the heat dissipation fins and the heat dissipation fan, so that the heat of the container-type energy storage power station can be quickly extracted, and the effect is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0013] Figure 2 This is a schematic diagram of the structure of the circulating water cooling system of the utility model;

[0014] Markings in the figure: 1. Base; 2. Pillar; 3. Frame; 4. Support beam; 5. Energy storage battery; 6. Platform; 7. Water inlet pipe; 8. Drain pipe; 9. Interface; 10. Connecting pipe; 11. Water pump; 12. Heat sink fins; 13. Cooling pipe; 14. Cooling fan. DETAILED DESCRIPTION

[0015] In order to make the purpose, technical solution and advantages of the present invention clearer and more understandable, the technical solution of the present invention will be further described in detail below in conjunction with the drawings in the embodiments of the present invention.

[0016] Reference Figures 1 to 2 The container-type energy storage power station heat dissipation device described in the present invention includes a mounting frame and a circulating water cooling system. The mounting frame is used to carry the energy storage battery 5. The circulating water cooling system includes an inlet pipe 7, a drain pipe 8, a water pump 11, a cooling pipe 13 and a heat dissipation component. The outer shell of the energy storage battery 5 is a sandwich design and is connected to the inlet pipe 7 and the drain pipe 8 through a connecting pipe 10. The water pump 11 is installed on the mounting frame and its water outlet is connected to the inlet pipe 7. The cooling pipe 13 is installed on the mounting frame and connected to the water inlet of the water pump 11. The drain pipe 8 is connected to the cooling pipe 13. A heat dissipation component is installed on the mounting frame to accelerate the heat dissipation of the cooling pipe.

[0017] The mounting frame includes a base 1, a top frame 3, a side frame and a platform 6. The side frame is symmetrically fixed on the base 1. The side frame includes pillars 2 and support beams 4. There are two pillars 2 and they are fixedly connected to the base 1. There are several support beams 4 that are evenly and equidistantly fixed between the two pillars 2. The top frame 3 is fixedly connected to the top of the side frame. The platform 6 is arranged between the two support beams 4 on the same horizontal plane. The energy storage battery 5 is arranged on the platform 6.

[0018] The water inlet pipe 7 and the drainage pipe 8 need to be fixedly connected to the support beam 4 to enhance the stability of the water inlet pipe 7 and the drainage pipe 8.

[0019] Both the water inlet pipe 7 and the drain pipe 8 are provided with several interfaces 9 for connecting to the connecting pipe 10. The interface 9 on the water inlet pipe 7 is connected to the bottom end of the outer shell of the energy storage battery 5 through the connecting pipe 10, and the interface 9 on the drain pipe 8 is connected to the top end of the outer shell of the energy storage battery 5 through the connecting pipe 10.

[0020] The cooling water is introduced from the bottom of the energy storage battery 5 and discharged from the top, so that the cooling water flows from the bottom to the top of the shell of the energy storage battery 5, thereby absorbing the heat of the energy storage battery 5 more efficiently and thoroughly, ensuring the heat dissipation effect.

[0021] The heat dissipation assembly includes heat dissipation fins 12, which are mounted on cooling pipes 13. The heat dissipation assembly also includes a heat dissipation fan 14, which is mounted on a mounting frame to accelerate the heat dissipation of the heat dissipation fins 12.

[0022] During operation, as the water pump 11 continues to operate, the cooling water will pass through the interface 9 on the water inlet pipe 7, enter the outer shell of the energy storage battery 5 from the connecting pipe 10, and then enter the drain pipe 8, and then enter the cooling pipe 13. Preferably, there are several cooling pipes 13 and adjacent cooling pipes 13 are connected to each other, thereby extending the time for the cooling water to flow through the cooling pipe 13, and then allowing the cooling water to dissipate heat as much as possible through the heat dissipation fins 12 at the cold pipe 13. At the same time, the heat dissipation fan 14 can also accelerate the heat dissipation efficiency of the heat dissipation fins 12.

[0023] The contents not described in detail in this specification belong to the prior art known to those skilled in the art. It should also be noted that, in this specification, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprise", "include" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the phrase "comprising an element defined by ... does not exclude the presence of other identical elements in the process, method, article or device comprising said element".

Claims

1. A container-type energy storage power station heat dissipation device, characterized in that: It includes a mounting frame and a circulating water cooling system. The mounting frame is used to carry the energy storage battery. The circulating water cooling system includes a water inlet pipe, a drain pipe, a water pump, a cooling pipe and a heat dissipation component. The shell of the energy storage battery is a sandwich design and is connected to the water inlet pipe and the drain pipe through connecting pipes. The water pump is installed on the mounting frame and its water outlet is connected to the water inlet pipe. The cooling pipe is installed on the mounting frame and connected to the water inlet of the water pump. The drain pipe is connected to the cooling pipe. A heat dissipation component is installed on the mounting frame to accelerate the heat dissipation of the cooling pipe.

2. The container-type energy storage power station heat dissipation device according to claim 1, characterized in that: The mounting frame includes a base, a top frame, a side frame and a platform. The side frame is symmetrically fixed on the base. The side frame includes pillars and support beams. There are two pillars fixedly connected to the base. There are several support beams that are evenly and equidistantly fixed between the two pillars. The top frame is fixedly connected to the top of the side frame. The platform is arranged between the two support beams on the same horizontal plane. The energy storage battery is arranged on the platform.

3. The container-type energy storage power station heat dissipation device according to claim 1, characterized in that: The water inlet pipe and the drain pipe are both provided with several interfaces for connecting with the connecting pipe. The interface on the water inlet pipe is connected to the bottom end of the outer shell of the energy storage battery through the connecting pipe, and the interface on the drain pipe is connected to the top end of the outer shell of the energy storage battery through the connecting pipe.

4. The container-type energy storage power station heat dissipation device according to claim 1, characterized in that: The heat dissipation component includes heat dissipation fins, and the heat dissipation fins are installed on the cooling pipe.

5. The heat dissipation device of the containerized energy storage power station according to claim 4, characterized in that: The heat dissipation assembly also includes a heat dissipation fan, which is installed on the mounting frame to accelerate the heat dissipation of the heat dissipation fins.