Energy storage container

By vertically concealing the fire-fighting pipes within the partition, the problem of compact space in energy storage containers is solved, enabling a more efficient layout of battery packs and equipment, and improving the stability and service life of the fire-fighting pipes.

CN224554523UActive Publication Date: 2026-07-24SHANGHAI SINGAMAS INTEGRATED EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANGHAI SINGAMAS INTEGRATED EQUIP CO LTD
Filing Date
2025-07-11
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

The exposed fire-fighting pipes inside the energy storage container occupy space, resulting in a compact layout that is not conducive to the installation of more battery packs and equipment, and is also susceptible to collision damage.

Method used

The vertical pipes of the fire protection system are concealed inside the partition, while the horizontal pipes run through the interior of the box. The partition divides the box into multiple sub-spaces, and the vertical and horizontal pipes are connected through the partition, which avoids occupying the interior space and improves stability.

Benefits of technology

It increases the storage space for battery packs and equipment inside the energy storage container, improves the stability and service life of fire-fighting pipelines, and avoids the risk of collisions during assembly and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an energy storage container, which comprises a box body, a partition plate and a fire-fighting pipeline. The partition plate is arranged in the box body and separates the internal space of the box body along the longitudinal beam of the box body. The transverse pipeline of the fire-fighting pipeline at least penetrates part of the internal space of the box body, and the vertical pipeline is accommodated in the partition plate. The internal space of the box body is separated by the partition plate, the vertical pipeline of the fire-fighting pipeline is accommodated in the partition plate, that is, the vertical pipeline is concealed in the partition plate, so that the vertical pipeline does not occupy the internal space of the box body, more battery packs can be arranged in the energy storage container or the equipment in the box body can be arranged more optimally, and the vertical pipeline can be prevented from being collided in the process of equipment assembly or subsequent maintenance and repair, so that the stability and service life of the fire-fighting pipeline are improved.
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Description

Technical Field

[0001] This application relates to the field of container technology, and more particularly to an energy storage container. Background Technology

[0002] Energy storage containers, with their large number of batteries stored within a limited space, pose a serious fire hazard and are extremely dangerous. Fire prevention within these containers typically involves integrating fire-fighting devices or fully automated systems to address the issue at minimal cost. Traditional fire-fighting systems include sensors, sprinklers, and extinguishing equipment. However, the inventors of this paper discovered in practice that in existing technologies, the sprinkler pipes are exposed within the container, further encroaching on the already limited space and making the structural layout even more compact, which is detrimental to accommodating larger battery packs within the energy storage container.

[0003] Therefore, improvements to existing technologies are necessary. Utility Model Content

[0004] This application aims to solve at least one of the technical problems existing in the prior art, and provides an energy storage container in which the internal space of the container is divided by a partition, and the vertical pipes of the fire protection pipeline are housed inside the partition, that is, the vertical pipes are concealed in the partition, which avoids the vertical pipes occupying the internal space of the container, which is conducive to the energy storage container to house more battery packs or to better arrange the equipment inside the container, and can prevent the vertical pipes from being collided during equipment assembly and even subsequent maintenance and repair, thereby improving the stability and service life of the fire protection pipeline.

[0005] According to one aspect of this application, this application provides an energy storage container, including a container body, partitions, and fire protection pipes; the partitions are disposed inside the container body and divide the internal space of the container body along the longitudinal beams of the container body; the horizontal pipes of the fire protection pipes at least penetrate a portion of the internal space of the container body, and the vertical pipes are housed within the partitions.

[0006] In one embodiment, the partition divides the interior space of the enclosure into a battery compartment and an equipment compartment; a portion of the horizontal pipes of the fire protection pipeline pass through the battery compartment; another portion of the horizontal pipes of the fire protection pipeline are located on the base frame of the enclosure and below the equipment compartment; the horizontal pipes in the battery compartment and the horizontal pipes below the equipment compartment are connected by vertical pipes.

[0007] In one embodiment, the partition includes a plate body and a sealing plate; the surface of the plate body facing the equipment compartment space is provided with a mounting groove, and the vertical pipe is accommodated in the mounting groove; the sealing plate is connected to the plate body and at least covers the mounting groove.

[0008] In one embodiment, the underframe has a clearance notch, one end of the vertical pipe extends to the clearance notch, and the connecting portion of the vertical pipe and the horizontal pipe located below the equipment compartment is accommodated in the clearance notch.

[0009] In one embodiment, the device further includes a mounting component disposed at the bottom of the partition plate. The mounting component has a mounting through hole, and one end of the vertical pipe extends through the mounting through hole to the clearance notch.

[0010] In one embodiment, a reinforcing plate is further included, the reinforcing plate surrounding the clearance notch.

[0011] In one embodiment, a protective cover is also included; the crossbeam of the base frame is provided with an installation notch, the protective cover is snapped into the installation notch, and the connection portion between the vertical pipe and the horizontal pipe located below the equipment compartment is accommodated within the protective cover.

[0012] In one embodiment, the protective cover is disposed on one side of the longitudinal beam of the base frame in the radial direction, and the protective cover is connected to the longitudinal beam and the crossbeam of the base frame.

[0013] In one embodiment, the bottom crossbeam at the end of the housing has an opening, and the outlet of the transverse pipe located below the equipment compartment corresponds to the opening. The bottom crossbeam at the end of the housing has a water inlet.

[0014] The beneficial effects of this application are: an energy storage container is designed in which the internal space of the container is divided by a partition, and the vertical pipes of the fire protection pipeline are housed inside the partition, that is, the vertical pipes are concealed in the partition, which avoids the vertical pipes occupying the internal space of the container. This is conducive to the energy storage container to house more battery packs or to better arrange the equipment inside the container, and can prevent the vertical pipes from being collided during equipment assembly and even subsequent maintenance and repair, thereby improving the stability and service life of the fire protection pipeline. Attached Figure Description

[0015] The technical solution and other beneficial effects of this application will become apparent from the following detailed description of specific embodiments in conjunction with the accompanying drawings.

[0016] Figure 1 This is a top view schematic diagram of an energy storage container provided in an embodiment of this application.

[0017] Figure 2 This is a schematic diagram of the front view of an energy storage container provided in an embodiment of this application.

[0018] Figure 3 This is a schematic diagram of a fire protection pipeline provided in an embodiment of this application.

[0019] Figure 4 yes Figure 2 A magnified view of a portion of point B in the middle.

[0020] Figure 5 yes Figure 1 Enlarged view of point A in the middle.

[0021] Figure 6 yes Figure 4 Left view.

[0022] Figure 7 yes Figure 4 Left view in another embodiment.

[0023] Figure 8 This is a schematic diagram of the structure of a partition provided in an embodiment of this application.

[0024] Figure 9 This is a schematic diagram of another partition structure provided in an embodiment of this application.

[0025] In the picture:

[0026] 10. Box body; 11. Base frame; 111. Clearance notch; 112. Mounting notch; 113. Crossbeam; 114. Longitudinal beam; 12. End bottom crossbeam;

[0027] 20. Partition; 21. Panel body; 211. Mounting groove; 22. Sealing plate;

[0028] 30. Internal space; 31. Battery compartment; 32. Equipment compartment; 33. Electrical compartment;

[0029] 40. Fire protection piping; 41. Horizontal piping; 411. Inlet section; 412. Reducing section; 413. Connecting section; 42. Vertical piping;

[0030] 50. Exports;

[0031] 60. Mounting component; 61. Mounting through hole;

[0032] 70. Reinforcing plate;

[0033] 80. Protective cover. Detailed Implementation

[0034] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0035] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between them; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0036] The energy storage container of this application will now be described in detail with reference to the accompanying drawings and specific embodiments.

[0037] The inventors of this case discovered that in the prior art, the water pipes for spraying are all exposed inside the container, which means that the already small space inside the container must be further occupied, making the structural layout more compact. This is not conducive to the installation of more battery packs in the energy storage container, nor is it conducive to the layout of equipment inside the container.

[0038] To address the aforementioned technical problems, this application provides an energy storage container, including a container body, partitions, and fire-fighting pipelines; the partitions are disposed inside the container body, dividing the internal space of the container body along the longitudinal beams of the container body; the horizontal pipes of the fire-fighting pipelines at least penetrate a portion of the internal space of the container, and the vertical pipes are housed within the partitions.

[0039] Specifically, in this embodiment, the internal space of the container is divided by partitions, and the vertical pipes of the fire protection pipeline are housed inside the partitions, i.e., the vertical pipes are concealed within the partitions. This avoids the vertical pipes occupying internal space within the container, allowing the energy storage container to house more battery packs and equipment. Simultaneously, the concealed installation of the vertical pipes prevents collisions with personnel or equipment entering or exiting during assembly or maintenance, improving the stability of the vertical pipes and extending the overall service life of the fire protection pipeline. This will be elaborated upon below.

[0040] See Figure 1 and Figure 2 The energy storage container includes a container body 10, a partition 20, and a fire-fighting pipeline 40. The partition 20 is located inside the container body 10 and divides the internal space 30 of the container body 10 along the longitudinal beams of the container body 10. The horizontal pipe 41 of the fire-fighting pipeline 40 passes through at least part of the internal space 30, and the vertical pipe 42 is housed within the partition 20.

[0041] like Figure 1 , Figure 2The enclosure 10 shown has two partitions 20, which further divide the interior of the enclosure 10 into three spaces: an electrical compartment 33, a battery compartment 31, and an equipment compartment 32. The equipment compartment 32 corresponds to the battery temperature control; for example, the battery compartment 31 is a liquid-cooled battery compartment, and the equipment compartment 32 is a liquid-cooled machine compartment. Through the partitions 20, the internal space 30 of the enclosure 10 is divided along the longitudinal beam (i.e., along...). Figure 1 The container is divided into multiple sub-spaces (from the left and right perspective). In actual use, each sub-space is relatively independent, which facilitates the internal layout of the container and helps to improve the safety of energy storage container use.

[0042] In the energy storage container, the main function of the fire-fighting pipeline 40 is to extinguish fires in the batteries inside the battery compartment 31. Therefore, when the fire-fighting pipeline 40 is installed inside the battery compartment 31, it is located at the top of the battery compartment 31 and almost runs through the entire battery compartment 31, so that it can spray water in a timely and precise manner to extinguish fires when batteries in the battery compartment 31 catch fire. In terms of the overall design of the fire-fighting pipeline 40 inside the container, the fire-fighting pipeline 40 needs to run almost through the entire battery compartment 31, and it also needs to have an outlet 50 (the water inlet of the fire-fighting pipeline 40) outside the container or at the bottom of the container to connect with the external water system. In other words, in addition to being located at the top of the battery compartment 31, the fire-fighting pipeline 40 also needs to be led out to the outside or bottom of the container.

[0043] In this embodiment, in order to facilitate the portable water intake of the fire-fighting pipe 40, the outlet 50 of the fire-fighting pipe 40 is located at the bottom of the box. Therefore, when arranging the fire-fighting pipe 40, in addition to the horizontal pipe 41 set at the top of the battery compartment 31, a vertical pipe 42 is also required to lead the fire-fighting pipe 40 from the top of the box 10 to the bottom of the box 10. Considering the compact size of the equipment and batteries inside the energy storage container, in this embodiment, the vertical pipe 42 of the fire protection pipeline 40 is housed within the partition 20, i.e., the vertical pipe 42 is concealed within the partition 20. This avoids the vertical pipe 42 encroaching on the space for the equipment or batteries inside the container. Utilizing the internal space of the partition 20 to install the vertical pipe 42 allows the energy storage container to house more battery packs and equipment (e.g., the battery compartment 31 can be appropriately expanded to accommodate more battery packs; and the equipment layout in the equipment compartment 32 can be optimized due to the concealed vertical pipe 42), thus improving the utilization rate of the container's internal space 30. At the same time, the concealed vertical pipe 42 prevents collisions between personnel or equipment entering and exiting during assembly or maintenance. The vertical pipe 42 is no longer exposed, improving its stability and extending the service life of the fire protection pipeline 40.

[0044] It is worth mentioning that the horizontal pipe 41 of the fire-fighting pipeline 40 penetrates at least part of the container space 30, enabling it to spray fire extinguishing inside the container 10, thus improving the safety of the energy storage container.

[0045] It should be noted that the horizontal pipe 41 of the fire protection pipe 40 is... Figure 1 as well as Figure 3 The pipes extending left and right in the perspective, the vertical pipe 42 of the fire protection pipe 40 is... Figure 1 as well as Figure 3 The vertical pipe 42 extends vertically in the viewpoint; in actual use, the vertical pipe 42 is not necessarily parallel to the corner posts of the container, but can be set at a certain angle to the corner posts of the container, but the overall extension trend is vertical, and it can be called the vertical pipe 42; similarly, the horizontal pipe 41 is not necessarily parallel to the bottom longitudinal beam of the container, but can also be set at a certain angle to the bottom longitudinal beam, which will not be elaborated here; similar arrangements where the vertical pipe 42 is housed inside the partition 20 and does not occupy the internal space 30 of the container all fall within the protection scope of this application.

[0046] See Figure 1-3 In some embodiments, the partition 20 divides the internal space 30 of the enclosure 10 into at least a battery compartment 31 and an equipment compartment 32; a portion of the horizontal pipes 41 of the fire protection pipes 40 pass through the battery compartment 31; another portion of the horizontal pipes 41 of the fire protection pipes 40 are located on the base frame 11 of the enclosure 10 and below the equipment compartment 32 of the enclosure 10; the horizontal pipes 41 located in the battery compartment 31 and the horizontal pipes 41 located below the equipment compartment 32 are connected by vertical pipes 42, thereby achieving the overall connection of the fire protection pipes 40.

[0047] The battery compartment 31 is used to store battery packs, and the equipment compartment 32 is used to store related equipment used in the energy storage container. When the battery compartment 31 needs to be sprayed for fire suppression, the horizontal pipes 41 of some fire-fighting pipes 40 pass through the battery compartment 31, which can cover a large area of ​​the battery compartment 31, increasing the spray area and improving the safety of the battery compartment 31 (container).

[0048] In practical use, the transverse pipe 41 running through the battery compartment 31 can be suspended at the top of the battery compartment 31, resulting in good spray fire suppression effect. In some embodiments, the transverse pipe 41 is located in the middle of the top of the battery compartment 31, and multiple nozzles are spaced apart on the transverse pipe 41 with adjacent nozzles having opposite water discharge directions. With this arrangement, only one transverse pipe 41 needs to be arranged in the battery compartment 31 to achieve all-round spray fire suppression in the battery compartment 31. Of course, in some embodiments, the energy storage container is large in size, and the arrangement can be flexibly arranged according to the actual size of the energy storage container, not limited to the installation of a single transverse pipe 41.

[0049] It is worth mentioning that the vertical pipe 42 of the fire-fighting pipe 40 extends and adjusts the horizontal pipe 41 from the top to the bottom area of ​​the enclosure 10. Considering that the equipment compartment 32 also has a certain horizontal space, in order to facilitate the leading of the outlet 50 of the fire-fighting pipe 40 to the area near the bottom of the enclosure, in this embodiment, part of the horizontal pipe 41 of the fire-fighting pipe 40 is also housed in the base frame 11 of the enclosure 10. Ultimately, the horizontal pipe 41 located in the battery compartment 31 and the horizontal pipe 41 located below the equipment compartment 32 are connected through the vertical pipe 42; water is introduced through the horizontal pipe 41 below the equipment compartment 32, and... Firefighting water is transported through vertical pipe 42 to horizontal pipe 41 in battery compartment 31; the inlet pipe of fire protection pipe 40 (the horizontal pipe 41 located below equipment compartment 32, the same below) is located below equipment compartment 32, which facilitates personnel to carry out firefighting operations and also facilitates maintenance (the fire protection pipe 40 located below equipment compartment 32 can be seen from the bottom of the box, and this part of the fire protection pipe 40 located in the bottom frame 11 of the box can be easily inspected and replaced). The fire protection pipe 40 is reasonably arranged, and some of it is concealed, so that the fire protection pipe 40 can only be seen in battery compartment 31 inside the box, making the internal layout of the box simpler.

[0050] See Figure 8 In some embodiments, the partition 20 includes a panel body 21 and a sealing plate 22; the surface of the panel body 21 facing the equipment compartment 32 space (i.e., Figure 8 , Figure 9 From the perspective of the plate body 21, the upper surface of the plate body 21 (the same below) is provided with a mounting groove 211, and the vertical pipe 42 is accommodated in the mounting groove 211; the sealing plate 22 is connected to the plate body 21 and at least covers the mounting groove 211.

[0051] The vertical pipe 42 is installed by opening an installation groove 211 on the plate body 21. The installation groove 211 can restrict the position of the vertical pipe 42, which is beneficial to ensure the stability of the vertical pipe 42 during installation and reduces labor intensity. At the same time, the sealing plate 22 covers the installation groove 211 to prevent the vertical pipe 42 from being disturbed by the outside world and has a protective effect on the vertical pipe 42.

[0052] It is worth mentioning that, in this embodiment, the surface of the sealing plate 22 facing the equipment compartment 32 is flush with the surface of the plate body 21 facing the equipment compartment 32, which helps to ensure the flatness of the partition 20 surface. Furthermore, the sealing plate 22 is embedded in the mounting groove 211, which facilitates its positioning during installation, reduces labor intensity, and makes installation convenient. In this embodiment, the surface of the sealing plate 22 facing the mounting groove 211 abuts against the vertical pipe 42, which can limit the relative position of the vertical pipe 42 in the mounting groove 211, preventing the vertical pipe 42 from shaking within the groove, thus extending its service life and reducing noise. In actual operation, there is no restriction on the sealing plate 22 pressing against the vertical pipe 42; a certain distance can also exist between the surface of the sealing plate 22 facing the vertical pipe 42 and the vertical pipe 42 (e.g., ...). Figure 9 As shown, there is a certain distance between the sealing plate 22 and the vertical pipe 42.

[0053] It should be noted that the surface of the plate body 21 facing the battery compartment 31 is also provided with through holes for connecting the vertical pipe 42 and the horizontal pipe 41 inside the battery compartment 31; the mounting groove 211 is opened on the surface of the plate body 21 facing the equipment compartment 32, which ensures the integrity of the surface of the plate body 21 facing the battery compartment 31, provides good heat insulation for the battery compartment 31, ensures the stable operation of the battery pack, and improves the safety of the energy storage container.

[0054] In some embodiments, such as Figure 9 As shown, the cover plate 22 can also completely cover the surface of the plate body 21 facing the equipment compartment 32, which can further enhance the thermal insulation performance of the battery compartment 31 and prevent the working temperature of the equipment in the equipment compartment 32 from affecting the stable operation of the battery pack in the battery compartment 31; in some embodiments, the cover plate 22 can also be arranged in other forms, at least able to cover the mounting groove 211, and is not limited to this.

[0055] It is worth mentioning that there can be two sealing plates 22 facing each other, with the plate body 21 facing the surface of the battery compartment 31. Figure 8 , Figure 9 From the perspective of the panel body 21, a sealing plate 22 is also provided on the lower surface of the panel body 21, which can further enhance the thermal insulation performance of the battery compartment 31. The sealing plate 22 located on the lower surface of the panel body 21 also needs to be provided with corresponding through holes for the connection between the vertical pipe 42 and the horizontal pipe 41 in the battery compartment 31.

[0056] See Figure 4-6 In some embodiments, the base frame 11 is provided with a clearance notch 111, one end of the vertical pipe 42 extends to the clearance notch 111, and the connection portion of the vertical pipe 42 and the horizontal pipe 41 located below the equipment compartment 32 is accommodated in the clearance notch 111.

[0057] In this embodiment, the connection between the vertical pipe 42 and the horizontal pipe 41 located below the equipment compartment 32 is a connecting elbow. The connection between the vertical pipe 42 and the horizontal pipe 41 is achieved through the connecting elbow, which is simple to operate and convenient to connect. The setting of the avoidance gap 111 provides space for the connecting elbow, which is reasonable in structure. Moreover, the connecting elbow (connecting part) set in the avoidance gap 111 is surrounded by the base frame 11, which plays a protective role and avoids the connecting elbow from being affected by external interference, resulting in loose connection, water leakage and other phenomena.

[0058] It should be noted that the connection between the vertical pipe 42 and the horizontal pipe 41 located below the equipment compartment 32 can also be in other forms. For example, a complete pipe can be formed into the vertical pipe 42 and the horizontal pipe 41 by cold bending or hot bending, with the bent part set in the clearance space, and it is not limited to this.

[0059] In some embodiments, the energy storage container further includes an installation component 60, which is disposed at the bottom of the partition 20. The installation component 60 has an installation through hole 61, and one end of the vertical pipe 42 passes through the installation through hole 61 and extends to the avoidance gap 111.

[0060] One end of the vertical pipe 42 passes through the mounting hole 61. The installation part 60 can limit and fix the end (bottom) of the vertical pipe 42, which helps to improve the stability of the vertical pipe 42. When water flows from the horizontal pipe 41 at the bottom of the equipment compartment 32 to the vertical pipe 42, it will cause an impact on the vertical pipe 42 (change the direction of water flow). The installation part 60 (installation hole 61) can effectively stabilize the vertical pipe 42.

[0061] In some embodiments, the energy storage container also includes a reinforcing plate 70, which surrounds the clearance gap 111.

[0062] By setting the reinforcing plate 70, the strength of the base frame 11 near the clearance gap 111 can be increased, eliminating the impact of the reduced overall rigidity of the base frame 11 caused by the setting of the clearance gap 111.

[0063] See Figure 7 In some embodiments, the energy storage container also includes a protective cover 80; the crossbeam 113 of the base frame 11 is provided with an installation notch 112, the protective cover 80 is snapped into the installation notch 112, and the connection portion of the vertical pipe 42 and the horizontal pipe 41 located below the equipment compartment 32 is housed within the protective cover 80.

[0064] By providing an installation notch 112 on the crossbeam 113 of the base frame 11, an installation space is provided for the protective cover 80. The protective cover 80 is snapped into the installation notch 112, making installation convenient. The protective cover 80 can also enhance the strength of the crossbeam 113 of the base frame 11 (because the installation notch 112 on the crossbeam 113 has compromised the integrity of the crossbeam 113). The connecting portion of the vertical pipe 42 and the horizontal pipe 41 located below the equipment compartment 32 is housed within the protective cover 80, which can protect the connecting portion. This is similar to the relevant discussion of the avoidance notch 111 in the previous embodiment, and will not be repeated here.

[0065] It should be noted that the top of the protective cover 80 is adapted to have a through hole for the vertical pipe 42 to extend into the interior of the protective cover. This through hole has a limiting effect on the vertical pipe 42, similar to the through hole 61 in the previous embodiment, which will not be described again here.

[0066] In some embodiments, the protective cover 80 is disposed on one side of the longitudinal beam 114 of the base frame 11 in the radial direction, and the protective cover 80 is connected to the longitudinal beam 114 and the cross beam 113 of the base frame 11.

[0067] The protective cover 80 is connected to both the longitudinal beam 114 and the transverse beam 113 of the base frame 11, increasing the connection area and connection points of the protective cover 80, which is beneficial to the stability of the connection of the protective cover 80. Furthermore, by connecting the transverse beam 113 and the longitudinal beam 114 of the base frame 11 together through the protective cover 80, it is beneficial to reduce the impact of the installation gap 112 on the strength of the base frame 11 and improve the overall structural strength.

[0068] In some embodiments, an opening is provided on the bottom crossbeam 12 at the end of the housing 10, and the port of the horizontal pipe 41 located below the equipment compartment 32 (the outlet 50 of the fire pipe 40) corresponds to the opening; that is, the water inlet (outlet 50) of the fire pipe 40 is located at the end of the housing 10, which is conducive to connecting the external water supply pipe to the horizontal pipe 41 below the equipment compartment 32, making it convenient for the fire pipe 40 to be portable and easy to use.

[0069] It is worth mentioning that the horizontal pipe 41 located below the equipment compartment 32 includes an inlet section 411, a reducing section 412, and a connecting section 413. The reducing section 412 is connected between the inlet section 411 and the connecting section 413. The inlet is located on the inlet section 411, and the diameter of the inlet section 411 is larger than the diameter of the connecting section 413. When water flows in from the inlet section 411, passes through the reducing section 412, and enters the connecting section 413, the flow velocity increases, thereby improving the fire protection capability of the fire-fighting pipeline 40.

[0070] Using the technical solution provided in this application embodiment, the internal space of the container 10 is divided by the partition 20, and the vertical pipe 42 of the fire protection pipeline 40 is housed inside the partition 20, that is, the vertical pipe 42 is concealed in the partition 20, which avoids the vertical pipe 42 occupying the internal space 30 of the container 10. This is conducive to the energy storage container to house more battery packs or to better arrange the equipment inside the container, and can prevent the vertical pipe 42 from being collided during equipment assembly and even subsequent maintenance and repair, thereby improving the stability and service life of the fire protection pipeline.

[0071] In the various embodiments of this application, unless otherwise specified or logically conflicting, the terminology or descriptions between different embodiments are consistent and can be referenced mutually. Technical features in different embodiments can be combined to form new embodiments based on their inherent logical relationships. In this application, "at least one" means one or more, and "more than one" means two or more.

[0072] It is understood that the various numerical designations used in the embodiments of this application are merely for descriptive convenience and are not intended to limit the scope of the embodiments of this application. The order of the process numbers described above does not imply the order of execution; the execution order of each process should be determined by its function and internal logic.

[0073] The energy storage container provided in the embodiments of this application has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this application. The description of the above embodiments is only for the purpose of helping to understand this application and its core ideas. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of this application. Therefore, the content of this specification should not be construed as a limitation of this application.

Claims

1. An energy storage container, characterized in that, include: Box; A partition is provided inside the box body, dividing the internal space of the box body along the longitudinal beams of the box body; as well as The fire protection piping has horizontal pipes that penetrate at least part of the space inside the box, and vertical pipes that are housed within the partition.

2. The energy storage container as described in claim 1, characterized in that, The partition divides the internal space of the enclosure into a battery compartment and an equipment compartment. A portion of the horizontal pipes of the fire protection piping pass through the battery compartment; another portion of the horizontal pipes of the fire protection piping are installed on the base frame of the enclosure and located below the equipment compartment of the enclosure. The horizontal pipe located in the battery compartment is connected to the horizontal pipe located below the equipment compartment via a vertical pipe.

3. The energy storage container as described in claim 2, characterized in that, The partition includes a panel body and a sealing plate; The plate body has a mounting groove on its surface facing the equipment compartment space, and the vertical pipe is accommodated in the mounting groove; The sealing plate is connected to the plate body and at least covers the mounting groove.

4. The energy storage container as described in claim 2, characterized in that, The base frame is provided with a clearance notch, one end of the vertical pipe extends to the clearance notch, and the connection portion of the vertical pipe and the horizontal pipe located below the equipment compartment is accommodated in the clearance notch.

5. The energy storage container as described in claim 4, characterized in that, It also includes an installation component, which is disposed at the bottom of the partition plate. The installation component has an installation through hole, and one end of the vertical pipe extends through the installation through hole to the clearance gap.

6. The energy storage container as described in claim 4, characterized in that, It also includes a reinforcing plate surrounding the clearance gap.

7. The energy storage container as described in claim 2, characterized in that, It also includes a protective shield; The crossbeam of the base frame is provided with an installation notch, the protective cover is snapped into the installation notch, and the connection portion between the vertical pipe and the horizontal pipe located below the equipment compartment is housed within the protective cover.

8. The energy storage container as described in claim 7, characterized in that, The protective cover is disposed on one side of the longitudinal beam of the base frame in the radial direction, and the protective cover is connected to the longitudinal beam and the crossbeam of the base frame.

9. The energy storage container as described in claim 2, characterized in that, An opening is provided on the bottom crossbeam at the end of the box, and the outlet of the horizontal pipe located below the equipment compartment corresponds to the opening.