This application relates to the technical field of energy storage systems, for example, to a container-type energy storage system.
Existing energy storage systems are usually based on internal maintenance, that is, a maintenance channel is pre-defined inside the container to facilitate maintenance personnel to enter the maintenance channel to maintain the energy storage equipment or energy storage system in the container.
However, since the maintenance channel is arranged inside the container, it will occupy part of the space inside the container, resulting in a low overall energy density of the container. On another hand, due to the limited internal space of the container, the maintenance channel is relatively small, which is not convenient for the entry of large maintenance equipment, and is not conducive to the smooth progress of maintenance work. Since the lithium-ion batteries in the energy storage equipment or in energy storage system are chemically instable, they will cause certain dangers to maintenance personnel when performing internal maintenance, resulting in a low safety of maintenance work.
The present application proposes a container-type energy storage system, which allows a larger space for use inside the container, and is conducive to the smooth progress of maintenance work and can improve the safety of maintenance work.
The present application provides a container-type energy storage system, comprising:
1, container; 2, battery compartment; 3, equipment compartment; 4, battery cluster; 41, battery support; 411, bottom frame; 4111, first support frame; 4112, foot; 412, top frame; 4121, third support frame; 4122, cover plate; 413, intermediate frame; 4131, second support frame; 4132, snap-fitting member; 414, mounting hole; 42, battery module; 5, first compartment door; 6, second compartment door; 7, clustering module; 8, power distribution module; 9, liquid cooling module; 10, fire control module.
All features, or steps in all methods or processes disclosed in this specification, except for mutually exclusive features and/or steps, can be combined in any way.
Any feature disclosed in this specification, unless otherwise stated, can be replaced by other equivalent or alternative features with similar purposes. That is, unless otherwise stated, each feature is only an example of a series of equivalent or similar features. Throughout the specification, the same reference numerals indicate the same elements.
In order to make the technical problems solved by the present application, the technical solutions adopted and the technical effects achieved clearer, the technical solutions of the present application are further explained in conjunction with the accompanying drawings and through specific embodiments.
In this embodiment, a container-type energy storage system is proposed, which allows a larger space for use inside the container, and is conducive to the smooth progress of maintenance work and can improve the safety of maintenance work. The container-type energy storage system in this embodiment is based on liquid cooling. In other embodiments, the container-type energy storage system may be based on air cooling or other cooling ways, and the specific cooling way of the container-type energy storage system is not limited here.
For example, as shown in
The battery compartment 2 is defined in the container 1, the plurality of battery clusters 4 are arranged in the battery compartment 2, and the plurality of first compartment doors 5 are provided on the container 1, and the battery clusters 4 are in one-to-one correspondence with the first compartment doors 5. Therefore, when the battery clusters 4 are to be maintained, each of the battery clusters 4 can be maintained after the first compartment door 5 corresponding to the battery cluster 4 is opened. In this way, an external maintenance is applied, and the internal maintenance in the related art is no longer applied. That is to say, there is no need to define a maintenance channel inside the container 1, so that the space for use inside the container 1 can be larger, thereby improving the overall energy density of the container 1, and it is convenient for large maintenance equipment to enter the first compartment door 5 for maintenance, which is conducive to the smooth progress of maintenance work. Since the external maintenance is applied, the maintenance personnel do not need to enter the interior of the container 1, so as to avoid the problem that the battery cluster 4 has a certain danger to the maintenance personnel performing internal maintenance due to the chemical instability of the battery clusters 4. When there is a problem with the battery clusters 4, the maintenance personnel can immediately be evacuated from the container 1 to a safe place, thereby making the maintenance work safer.
For example, the plurality of battery clusters 4 are arranged side by side in the battery compartment 2, and each first compartment door 5 is arranged on either of the sides of the container 1 in a second direction at a position directly facing the corresponding battery cluster 4, so that the first compartment doors 5 can be opened from one side or both sides of the container 1. Therefore, the operation of opening the first compartment doors 5 is relatively simple and convenient. The second direction is parallel to the width direction of the container 1, and the second direction can be shown by arrow B in
For example, as shown in
The second compartment door 6 is arranged on the side of the container 1 in the second direction at a position directly facing the equipment compartment 3. Therefore, when the parts in the equipment compartment 3 are to be maintained, the parts in the equipment compartment 3 can be maintained after opening the second compartment door 6 without the maintenance personnel entering the interior of the container 1. In this way, an external maintenance is applied, and the internal maintenance in the related art is no longer applied. That is to say, there is no need to set a maintenance channel inside the container 1, so that the space for use inside the container 1 can be larger, thereby better improving the overall energy density of the container 1. Since the second compartment door 6 can provide a larger maintenance space, it is convenient for large maintenance equipment to enter the second compartment door 6 for maintenance, which is conducive to the smooth progress of maintenance work.
For example, the first compartment doors 5 and the second compartment door 6 are both outward-opening doors, so that when the first compartment doors 5 and the second compartment door 6 are opened from the outside, the first compartment doors 5 and the second compartment door 6 will not occupy the internal space of the container 1, and thus the space for use inside the container 1 is larger. In other embodiments, the first compartment doors 5 and/or the second compartment door 6 may be inward-opening doors.
For example, a flame retardant is provided between the battery compartment 2 and the equipment compartment 3, and the flame retardant extends along the second direction so that the ends thereof abuts against the inner walls of the container 1. As a result, the battery compartment 2 and the equipment compartment 3 can be completely isolated. The flame retardant in this embodiment may be a flame retardant plastic. In other embodiments, the flame retardant may be made of other flame retardant materials. The specific material of the flame retardant is not limited here, as long as the flame retardant can meet the flame retardant requirements.
By providing a flame retardant to completely isolate the battery compartment 2 from the equipment compartment 3, the battery compartment 2 and the equipment compartment 3 do not affect each other. As a result, the various parts in the battery compartment 2 and the equipment compartment 3 will not affect each other during the working process, so that the battery compartment 2 and the equipment compartment 3 are better independent from each other. On another hand, when one of the compartments is in maintenance, it will not affect the other compartment, so as to better protect the safety of the maintenance personnel, and make the maintenance work safer.
For example, as shown in
For example, a plurality of battery management modules are arranged in the equipment compartment 3. The battery management modules are in one-to-one correspondence with the battery branches. The battery management modules are connected to the corresponding battery branches by cables for signal transmission, so that the battery branches can be managed. As shown in
For example, as shown in
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For example, the first support frame 4111, the second support frames 4131 and the third support frame 4121 have the same structure. In other embodiments, the first support frame 4111, the second support frames 4131 and the third support frame 4121 may have different structures.
| Number | Date | Country | Kind |
|---|---|---|---|
| 202222097612.X | Aug 2022 | CN | national |
| PCT/CN2022/124530 | Oct 2022 | WO | international |
This application is a continuation of International Application No. PCT/CN2022/124530, filed on Oct. 11, 2022, which claims priority to and the benefit of Chinese Patent Application No. 202222097612.X, filed on Aug. 10, 2022. The disclosures of the aforementioned applications are incorporated herein by reference in their entireties.
| Number | Date | Country | |
|---|---|---|---|
| Parent | PCT/CN2022/124530 | Oct 2022 | WO |
| Child | 19037302 | US |