Energy storage container and mobile power supply vehicle

By dividing the interior of the energy storage container into a battery compartment, an electrical equipment compartment, an auxiliary equipment compartment, and a cable compartment, and placing the cable compartment below the auxiliary equipment compartment, the problems of low space utilization and easy damage to cables in the energy storage container are solved, achieving more efficient space utilization and cable protection.

CN223828595UActive Publication Date: 2026-01-23CIMC ENERGY STORAGE TECH CO LTD +3
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Patent Information

Application Number
CN202423248270.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-23
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing energy storage boxes have low space utilization, and cables are easily damaged and inconvenient to retract if improperly placed.

Method used

The energy storage container is internally divided into a battery compartment, an electrical equipment compartment, an auxiliary equipment compartment, and a cable compartment. The battery compartment is located in the middle, the electrical equipment compartment and the auxiliary equipment compartment are located at both ends, and the cable compartment is located below the auxiliary equipment compartment. It is equipped with a roller shutter door and a cable reel system.

Benefits of technology

It improves the space utilization of energy storage containers, protects cables, facilitates cable deployment and retraction, and extends the service life of cables.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223828595U_ABST
    Figure CN223828595U_ABST
Patent Text Reader

Abstract

The utility model provides an energy storage container and a mobile power supply vehicle. The energy storage container comprises a container body. The box body comprises a separation structure, and the separation structure divides the interior of the box body into a plurality of cabins. The plurality of compartments includes a battery compartment, an electrical equipment compartment, an auxiliary equipment compartment, and a cable compartment. In the length direction of the box body, the battery compartment is arranged in the middle of the box body, the electrical equipment compartment is arranged at one end of the box body, and the auxiliary equipment compartment and the cable compartment are arranged at the other end of the box body. And the cable cabin is arranged below the auxiliary equipment cabin, and the cable is accommodated in the cable cabin, so that the cable can be protected. And the cable cabin is located at the lowest height of the energy storage container, so that an operator can take the cable conveniently. Besides, on the basis that the performance of the energy storage container is not affected, the space below the auxiliary equipment compartment is reasonably utilized through the arrangement of the cable compartment, the space of the battery compartment is prevented from being occupied, and the space of the energy storage container is more reasonably utilized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the energy storage technical field especially relates to a kind of energy storage container and mobile power supply car. BACKGROUND

[0002] At present, mobile power supply car is widely applied in various scenes with its flexible movement, rapid deployment characteristics.Mobile power supply car usually includes energy storage box, which is mainly used for storing and managing electric energy.However, the design of the energy storage box is insufficient, and the space utilization inside the energy storage box is low.

[0003] In addition, mobile power supply car usually also includes cable to expand the power supply range of mobile power supply car.However, the placement position of the current cable is also insufficient, or directly hung at the tail of mobile power supply car, which is easy to cause wear and tear of the cable;Or clamped between the head and frame of mobile power supply car, which is not convenient to store and take out. UTILITY MODEL CONTENT

[0004] One purpose of the utility model is to solve the deficiencies in the prior art, and to provide an energy storage container truck that improves the space utilization of the energy storage container, prolongs the service life of the cable, and facilitates the storage and taking out of the cable.

[0005] Another purpose of the utility model is to provide a mobile power supply car with the above-mentioned energy storage container.

[0006] To solve the above technical problems, the utility model adopts the following technical scheme:

[0007] An energy storage container includes:

[0008] The box body includes a partition structure that divides the inside of the box body into multiple compartments, including a battery compartment, an electrical equipment compartment, an auxiliary equipment compartment and a cable compartment.The battery compartment is located in the middle of the box body along the length direction of the box body, the electrical equipment compartment is located at one end of the box body, the auxiliary equipment compartment and the cable compartment are located at the other end of the box body, and the cable compartment is located below the auxiliary equipment compartment.The cable compartment is used to store cables.

[0009] In an example embodiment, the auxiliary equipment compartment includes a fire-fighting compartment and a liquid cooling compartment, and the liquid cooling compartment and the fire-fighting compartment are arranged side by side along the width direction of the box body, and the cable compartment is located below the liquid cooling compartment and the fire-fighting compartment.

[0010] In an example embodiment, it also includes a liquid cooling compartment, and the liquid cooling compartment and the auxiliary equipment compartment are arranged side by side along the width direction of the box body, the auxiliary equipment compartment is a fire-fighting compartment, and the cable compartment is located below the fire-fighting compartment.

[0011] In an example embodiment, the hatch of the cable cabin is oriented away from the battery cabin, and a rolling door is arranged at the hatch for sealing the hatch of the cable cabin.

[0012] In an example embodiment, the box body is provided with end plates at two ends thereof, the battery cabin is provided with a plurality of battery clusters, the electrical equipment cabin is provided with a control cabinet, a transformer, a converter, a quick plug socket, and at least one charging machine, the converter is electrically connected to the control cabinet, the transformer, the charging machine, and the battery clusters, and the transformer is electrically connected to the quick plug socket.

[0013] In an example embodiment, the quick plug socket is arranged close to the end plate and is arranged at the bottom of the box body, and the end plate is provided with a first cabinet door arranged opposite to the quick plug socket.

[0014] In an example embodiment, the number of the charging machines is one, the charging machine, the control cabinet, and the transformer are arranged in sequence and at intervals along the length direction of the box body, the converter is arranged opposite to the control cabinet, and the charging machine and the quick plug socket are arranged close to the end plate of the box body.

[0015] In an example embodiment, the number of the charging machines is two, the two charging machines are arranged in parallel along the width direction of the box body close to the end plate of the box body, the quick plug socket is arranged between the two charging machines, the converter is arranged close to the battery cabin, and the transformer and the control cabinet are arranged in the middle of the electrical equipment cabin and in parallel along the width direction of the box body.

[0016] In an example embodiment, the electrical equipment cabin comprises at least one base and a charging gun, the base is arranged below the charging machine in correspondence, the base is hollow inside, the charging gun is placed inside the base, the base is provided with an opening, the opening is communicated with the inside of the base, the opening is oriented away from the battery cabin, the end plate is provided with a second cabinet door arranged opposite to the opening.

[0017] In an example embodiment, the electrical equipment cabin comprises an operation panel, the operation panel is arranged at the bottom of the side wall of the electrical equipment cabin, and the operation panel is electrically connected to the charging machine.

[0018] In an example embodiment, the partition structure comprises a first partition structure, the auxiliary equipment cabin and the battery cabin are separated by the first partition structure; the uninterruptible power supply, the fire-fighting cabinet, the fire-fighting host and the dehumidifier are arranged in the auxiliary equipment cabin, the fire-fighting host is electrically connected with the uninterruptible power supply, and the dehumidifier is arranged on the first partition structure; a cabin door is arranged on the side wall of the fire-fighting cabin, and the fire-fighting host is arranged on the inner wall of the cabin door.

[0019] In an example embodiment, the battery cabin comprises an air inlet, an air outlet and an exhaust fan, the air inlet is arranged on the side wall of one side of the battery cabin;

[0020] the air outlet is arranged on the side wall of the other side of the battery cabin, and the exhaust fan is arranged on the air outlet; or,

[0021] the energy storage container comprises a liquid cooling cabin, the partition structure comprises a second partition structure, the second partition structure separates the liquid cooling cabin and the battery cabin, and the air outlet is arranged on the second partition structure.

[0022] In an example embodiment, the box body comprises a reel system, the reel system comprises a rotating disc and a driving mechanism, the cable is wound around the outer periphery of the rotating disc, and the driving mechanism is drivingly connected with the rotating disc to drive the rotating disc to rotate.

[0023] A mobile power supply vehicle comprises a vehicle head, a vehicle frame and the energy storage container as described above, the energy storage container is arranged on the vehicle frame, and the auxiliary equipment cabin is arranged at one end of the vehicle frame close to the vehicle head.

[0024] According to the technical scheme, the energy storage container has at least the following advantages and positive effects:

[0025] The energy storage container comprises a box body. The box body comprises a partition structure, and the partition structure separates the inside of the box body into multiple cabin rooms. The multiple cabin rooms comprise a battery cabin, an electrical equipment cabin, an auxiliary equipment cabin and a cable cabin. In the length direction of the box body, the battery cabin is arranged at the middle part of the box body, the electrical equipment cabin is arranged at one end of the box body, and the auxiliary equipment cabin and the cable cabin are arranged at the other end of the box body. The cable cabin is arranged below the auxiliary equipment cabin, and the cable is contained in the cable cabin, which is beneficial to protect the cable. In addition, the cable cabin is arranged at the lowest height of the energy storage container, which is convenient for the operator to take the cable. Moreover, the arrangement of the cable cabin reasonably utilizes the space below the auxiliary equipment cabin without affecting the performance of the energy storage container, avoids occupying the space of the battery cabin, and makes the space utilization of the energy storage container more reasonable. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is a perspective view of the energy storage container of an embodiment of the utility model.

[0027] Figure 2 yes Figure 1 The diagram shows a top view of the energy storage container without the top plate assembly.

[0028] Figure 3 yes Figure 1 The diagram shown is a perspective view of the energy storage container omitting the top panel assembly, the second door of the fire compartment, and the roller shutter door of the cable compartment.

[0029] Figure 4 yes Figure 3 The image shows a three-dimensional view of the energy storage container from another angle.

[0030] Figure 5 yes Figure 1 The image shows a three-dimensional view of the energy storage container from another angle.

[0031] Figure 6 This is a perspective view of an energy storage container according to another embodiment of the present invention.

[0032] Figure 7 yes Figure 6 The image shows a three-dimensional view of the energy storage container from another angle.

[0033] Figure 8 yes Figure 6 The diagram shows a top view of the energy storage container without the top plate assembly.

[0034] Figure 9 yes Figure 6 The diagram shown is a perspective view of the energy storage container omitting the top panel assembly and the roller shutter door of the cable compartment.

[0035] The annotations in the attached figures are explained as follows:

[0036] 100. Enclosure; 101. Top panel assembly; 102. End panel; 1021. First cabinet door; 1022. Second cabinet door; 103. First partition structure; 10. Battery compartment; 11. First compartment door; 12. Battery cluster; 13. Intake fan; 14. Exhaust fan; 15. Pressure relief window; 20. Electrical equipment compartment; 21. Control cabinet; 22. Transformer; 23. Converter; 24. Quick-connect female connector; 25. Charger; 26. Base; 27. Charging gun; 28. Operation panel; 2 9. Exterior door; 30. Auxiliary equipment compartment; 31. Firefighting compartment; 311. Backup power supply; 312. Uninterruptible power supply; 313. Fire cabinet; 314. Fire control panel; 315. Fan control cabinet; 316. Second compartment door; 317. Dehumidifier; 318. Water fire interface; 319. Water pipes; 310. Fire control panel; 32. Liquid cooling compartment; 321. Liquid cooling system; 40. Cable compartment; 41. Cable; 42. Turntable; 43. Drive mechanism; 44. Roller shutter door;

[0037] 200, box body; 201, end plate; 202, second partition structure; 50, electrical equipment cabin; 51, charger; 52, quick plug female seat; 53, converter; 54, transformer; 55, control cabinet; 56, operation panel; 57, charging gun; 58, charging seat; 60, liquid cooling cabin; 70, auxiliary equipment cabin; 71, fire fighting operation panel; 72, door assembly; 73, exhaust fan; 74, air inlet fan; 75, water fire fighting interface; 76, second cabin door; 80, cable cabin; 81, roller shutter door; 90, battery cabin; 91, pressure relief window; 92, battery cluster. DETAILED DESCRIPTION

[0038] The typical embodiments embodying the features and advantages of the present application will be described in detail in the following description. It should be understood that the present application can have various changes in different embodiments, which do not deviate from the scope of the present application, and the description and drawings in essence are used for description, not for limiting the present application.

[0039] In the description of the present application, it should be understood that in the embodiments shown in the drawings, the indication of direction or position relationship (such as up, down, left, right, front and back, etc.) is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation. When the position of these elements is changed, the indication of these directions is also changed accordingly.

[0040] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implying the number of indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0041] The present application provides a kind of energy storage container and mobile power supply car with energy storage container, wherein by the structure layout of energy storage container, effectively improve the internal space utilization of energy storage container, and make cable can be effectively protected, specific scheme is explained by following embodiment.

[0042] Mobile power supply car includes car head, frame and energy storage container. Wherein energy storage container is arranged on frame. Car head and frame form car body. Energy storage container moves with car body and can be applied to various power consumption scenes, and power supply for power consumption equipment in different scenes.

[0043] Please refer to Figure 1The energy storage container includes a container body 100. The container body 100 can be a standard size container, so as to better meet the transportation requirements and adapt to more transportation tools.

[0044] The size of the container body 100 can be 20 feet, 40 feet, etc., which can be set according to actual needs, and is not limited herein. In this embodiment, the container body 100 is taken as a 20-foot container for illustration.

[0045] The container body 100 includes a top plate assembly 101, end plates 102 arranged at both ends, a bottom plate assembly, and side plate assemblies arranged at both sides. The top plate assembly 101, the bottom plate assembly, the end plates 102, and the side plate assemblies are enclosed, so that the container body 100 is hollow inside.

[0046] Referring to Figure 2 and Figure 3 The container body 100 includes a partition structure, which divides the inside of the container body 100 into multiple compartments. The multiple compartments include a battery compartment 10, an electrical equipment compartment 20, an auxiliary equipment compartment 30, and a cable compartment 40.

[0047] The battery compartment 10 is arranged at the middle part of the container body 100. The battery compartment 10 is internally provided with multiple battery clusters 12. Along the length direction of the container body 100, the side wall of the battery compartment 10 is provided with multiple first compartment doors 11. Each first compartment door 11 is arranged opposite to a battery cluster 12. When a certain battery cluster 12 needs to be overhauled, the operator can open the first compartment door 11 opposite to the battery cluster 12 to directly and quickly contact the target battery cluster 12.

[0048] The arrangement of the battery compartment 10 at the middle part of the container body 100 can provide a relatively safe space for protecting the battery clusters 12 in the battery compartment 10, and to a certain extent, can avoid damage to the battery clusters 12 due to accidental collision, etc.

[0049] Each battery cluster 12 includes multiple battery boxes and a high-voltage box. The multiple battery boxes are arranged in a stacked manner along the height direction of the container body 100 to form a battery module. The high-voltage box is arranged at the bottom of the battery module. It can be understood that the high-voltage box is arranged at the bottom of the container body 100. Since the energy storage container is loaded on a vehicle frame, the energy storage container is at a certain distance from the ground. Therefore, the arrangement of the high-voltage box at the bottom of the container body 100 effectively improves the operation convenience, so that the operator does not need to bend down to perform related operations on the high-voltage box.

[0050] It should be noted that the number of battery clusters 12 and the number of battery boxes in the battery cluster 12 can be set according to actual needs, and are not limited herein.

[0051] Referring to Figure 4 and Figure 5In some embodiments of the present application, the battery cabin 10 comprises an air inlet, an air outlet, an air inlet fan 13 arranged at the air inlet, and an air outlet fan 14 arranged at the air outlet. The air inlet can be arranged on the side wall of one side of the battery cabin 10, and the air outlet can be arranged on the side wall of the other side of the battery cabin. When an emergency such as thermal runaway occurs in the battery cabin 10, the air inlet fan 13 and the air outlet fan 14 are started, so that an air duct can be formed in the battery cabin 10, and the smoke, volatile organic compounds, etc. generated inside due to the emergency can be discharged from the battery cabin 10 in time, so as to effectively reduce the risk of combustion and explosion in the battery cabin 10.

[0052] It should be noted that in other embodiments, the battery cabin 10 can also comprise an air inlet, an air outlet, and an air outlet fan arranged at the air outlet. The air inlet is naturally ventilated with the air outlet fan.

[0053] It should be noted that the air inlet and the air outlet can also be arranged in a structure similar to a louver or a grating, which can be arranged according to actual needs.

[0054] In some embodiments, the air inlet fan 13 and the air outlet fan 14 can be arranged respectively, so as to increase the exhaust efficiency of the flue gas. One can be arranged near the top of the box body 100, and the other can be arranged near the bottom of the box body 100.

[0055] See Figure 1 The top of the battery cabin 10 is provided with a pressure relief window 15. When an emergency such as thermal runaway or fire occurs in the battery cabin 10, causing the pressure in the battery cabin 10 to be higher than a threshold value, the pressure relief window 15 is quickly opened to release the pressure in the battery cabin 10. Moreover, the arrangement of the pressure relief window 15 at the top can also effectively avoid the injury of people near the box body 100 when the pressure is released.

[0056] See Figure 2 The electrical equipment cabin 20 is arranged at one end of the box body 100. Specifically, the electrical equipment cabin 20 is arranged at the end of the vehicle frame far from the vehicle head. The interior of the electrical equipment cabin 20 is provided with a control cabinet 21, a transformer 22, a converter 23, a quick plug female socket 24, and at least one charger 25. The number of the charger 25 can be arranged according to actual needs, which is not limited herein.

[0057] The converter 23 is electrically connected with the control cabinet 21, the transformer 22, the charging machine 25 and the battery cluster 12, and the transformer 22 is electrically connected with the quick plug female socket 24. The charging machine 25 can be used to charge an external electric vehicle. An operator can use a cable 41, one end of which is connected with the quick plug female socket 24 and the other end of which is connected with an external electric device to be charged, so as to transfer the electric energy stored in the battery cluster 12 to the external electric device to be charged and supply power to the external electric device to be charged. Alternatively, one end of the cable 41 is connected with the quick plug female socket 24 and the other end of the cable 41 is connected with an external power supply device, such as a power grid, so as to charge the battery cluster 12 by the external power supply device. It should be noted that the power output by the external power supply device is alternating current.

[0058] It should be noted that the control cabinet 21 comprises a current collecting function and a control function for the battery cluster 12.

[0059] It should be noted that the control cabinet 21 comprises a current collecting function and a control function for the battery cluster 12. Figure 4 In some embodiments of the present application, the quick plug female socket 24 is arranged close to the end plate 102 and at the bottom of the box body 100, so as to facilitate the operator to plug and unplug the cable 41.

[0060] The end plate 102 is provided with a first cabinet door 1021 opposite to the quick plug female socket 24. When the quick plug female socket 24 is not needed, for example, when the energy storage container is moved with the vehicle body or when the external electric vehicle is charged, the first cabinet door 1021 is closed to facilitate the protection of the quick plug female socket 24. When the quick plug female socket 24 is needed, the operator only needs to open the first cabinet door 1021.

[0061] In some embodiments, the electrical equipment cabin 20 comprises at least one base 26 and a charging gun 27. The number of the bases 26 is consistent with the number of the charging machines 25. Each base 26 is arranged below a corresponding charging machine 25. The inside of the base 26 is hollow. The charging gun 27 is placed in the inside of the base 26. The charging gun 27 is electrically connected with the charging machine 25. It can be understood that the arrangement of the base 26 and the charging gun 27 effectively utilizes the space occupied by the charging machine 25, thereby improving the space utilization rate of the electrical equipment cabin 20.

[0062] The base 26 is provided with an opening, which is communicated with the inside of the base 26. In the length direction of the box body 100, the opening faces away from the battery cabin 10. The end plate 102 is provided with a second cabinet door 1022 opposite to the opening. When the external electric vehicle is needed to be charged, the operator only needs to open the second cabinet door 1022, take out the charging gun 27 and then connect the charging gun 27 with the external electric vehicle.

[0063] The electrical equipment compartment 20 also includes an operation panel 28. Along the length of the enclosure 100, the operation panel 28 is located on the side wall of the electrical equipment compartment 20, and also at the bottom of the electrical equipment compartment 20. The operation panel 28 is electrically connected to the charger 25. Preferably, the operation panel 28 is located near the end plate 102 to facilitate wiring between the operation panel 28 and the charger 25. Operators can use the operation panel 28 to control charging amount, charging rate, charging time, etc.

[0064] In some embodiments, a cover 29 may be provided on the surface of the control panel 28 facing away from the charger 25. The operator can open or close the cover 29 according to the usage status of the control panel 28.

[0065] See Figures 2 to 4 The auxiliary equipment compartment 30 is located at the other end of the housing 100. Specifically, the auxiliary equipment compartment 30 is located at the end of the frame near the front of the vehicle. The auxiliary equipment compartment 30 can be a liquid-cooled compartment, a fire compartment, a tool compartment, or a combination of a liquid-cooled compartment and a fire compartment, or a combination of a liquid-cooled compartment and a tool compartment, etc., and can be set according to actual needs, without any restrictions here.

[0066] In the first embodiment, the auxiliary equipment compartment 30 includes a fire-fighting compartment 31 and a liquid-cooled compartment 32.

[0067] The fire compartment 31 is located at the end of the vehicle frame near the front of the vehicle, so that when a fire occurs inside the box 100, the operator in the cab of the vehicle can quickly reach the fire compartment 31, activate the fire-fighting equipment, and suppress the fire in a timely manner.

[0068] In some embodiments, the fire compartment 31 is equipped with an uninterruptible power supply 312, a fire cabinet 313, a fire control panel 314, and a fan control cabinet 315. The fan control cabinet 315 is electrically connected to the intake fan 13 and the exhaust fan 14, and can control the opening and closing of the intake fan 13 and the exhaust fan 14. The fire control panel 314 is electrically connected to the fan control cabinet 315 and the fire cabinet 313 to control the opening and closing of the fan control cabinet 315 and the fire cabinet 313. The fire cabinet 313 contains fire-fighting fluid, which may be perfluoroacetone, etc.

[0069] Along the length of the enclosure 100, a second door 316 is provided on the side wall of the fire compartment 31. The fan control cabinet 315 and the fire control host 314 can be fixedly installed on the second door 316, so that the operator can operate and maintain the fan control cabinet 315 and the fire control host 314 simply by opening the second door 316, without having to enter the interior of the fire compartment 31.

[0070] In some embodiments, a warning device may be installed on the second door 316. The warning device is electrically connected to the fire alarm control panel 314, and when an accident occurs inside the enclosure 100, the warning device can emit sound and / or light to alert nearby personnel.

[0071] An uninterruptible power supply (UPS) 312 is electrically connected to the fire control panel 314, and the UPS 312 supplies power to the fan control cabinet 315 and the fire control panel 314. The partition structure includes a first partition structure 103, which separates the fire compartment 31 from the cable compartment 40. The UPS 312 can be fixedly installed on the first partition structure 103.

[0072] The backup power supply 311 is electrically connected to the uninterruptible power supply 312, and the backup power supply 311 is used to supply power to the uninterruptible power supply 312. The backup power supply 311 can be fixedly installed on the base plate of the fire compartment 31.

[0073] The fire compartment 31 also includes a dehumidifier 317. The dehumidifier 317 is fixedly installed on the first partition structure 103. The dehumidifier 317 is used to regulate the humidity inside the battery compartment 10 and keep the dew point outside the temperature difference range to effectively suppress the occurrence of condensation.

[0074] The liquid-cooled chamber 32 and the fire-fighting chamber 31 are arranged side by side along the width of the enclosure 100. The liquid-cooled chamber 32 is equipped with a liquid-cooling system 321, which is connected to each battery cluster 12 in the battery compartment 10 through liquid-cooling pipes. The liquid-cooling system 321 is used to ensure the temperature uniformity of each battery cluster 12 in the battery compartment 10, so as to ensure the safety of the battery compartment 10.

[0075] The cable compartment 40 is located below the liquid cooling compartment 32 and the fire compartment 31. Along the length of the enclosure 100, a water fire extinguishing interface 318 is provided on the side wall of the cable compartment 40, which is equivalent to the water fire extinguishing interface 318 being located below the second door 316 of the fire compartment 31. One end of a water pipe 319 is connected to the water fire extinguishing interface 318, and the other end passes through the first partition structure 103 and extends into the battery compartment 10. It can be understood that the water pipe 319 passes through both the cable compartment 40 and the fire compartment 31.

[0076] Along the length of the enclosure 100, a fire control panel 310 is also provided on the side wall of the cable compartment 40. The fire control panel 310 is electrically connected to the fire control host 314. The fire control panel 310 is located below the second door 316 of the fire compartment 31. The fire control panel 310 is located near the bottom of the enclosure 100 to facilitate manual operation of the fire control host 314 by the operator to link other fire-fighting equipment. The cable compartment 40 is used to store cables 41. There can be multiple cables 41. Cables 41 can be placed directly inside the cable compartment 40. Alternatively, a cable reel system can be installed to better untangle the cables 41, reduce cable tangling, extend the service life of the cables 41, and facilitate the operation of the operator in unwinding and rewinding the cables 41.

[0077] In some embodiments, the cable reel system includes a turntable 42 and a drive mechanism 43. The turntable 42 is disposed within the cable compartment 40. The cable 41 is wound around the outer circumferential surface of the turntable 42. The drive mechanism 43 may be disposed within the fire compartment 31, and the drive mechanism 43 drives the turntable 42. When the drive mechanism 43 is activated, it can drive the turntable 42 to rotate forward or backward. The drive mechanism 43 may include a hydraulic pump, a motor, or a combination of hydraulic pumps and motors.

[0078] In this embodiment, the cable compartment 40 is provided with two turntables 42. The specific number of turntables 42 in the cable compartment 40 is related to the size of the turntables 42 and the actual needs of the user, and can be set according to actual needs, and is not limited here.

[0079] See Figure 3 and Figure 5 The cable compartment 40 has its hatch facing away from the battery compartment 10. A roller shutter door 44 is provided at the hatch. The roller shutter door 44 is used to seal the hatch of the cable compartment 40. The operator can easily open and close the roller shutter door 44 by simply pulling it. In some embodiments, a lock may be provided at the bottom of the roller shutter door 44 to ensure the safety of the cables 41 inside the cable compartment 40 and prevent the theft of the cables 41.

[0080] See you later Figure 1 and Figure 2 In this embodiment, there is one charger 25. The charger 25, control cabinet 21 and transformer 22 are arranged side by side and spaced apart along the length of the enclosure 100. The converter 23 is located on the opposite side of the control cabinet 21 to facilitate the connection between the devices.

[0081] The charger 25 and quick-connect female connector 24 are positioned near the end plate 102 of the housing 100, and the end plate 102 is away from the front of the vehicle, thus facilitating the operator's use of the charging gun 27 located below the charger 25, and the quick-connect female connector 24 for rapid cable insertion and removal. The cable may be cable 41 in the cable compartment 40.

[0082] In this embodiment, four battery clusters 12 are provided. Each battery cluster 12 includes eight battery boxes. Furthermore, two pressure relief windows 15 are provided on the top of the battery compartment 10. Along the length of the housing 100, an intake fan 13 is provided on one side wall of the battery compartment 10, and an exhaust fan 14 is provided on the other side wall of the battery compartment 10.

[0083] See Figures 6 to 9 In the second embodiment, the electrical equipment compartment 50 is located at one end of the enclosure 200. The electrical equipment compartment 50 contains a control cabinet 55, a transformer 54, a converter 53, a quick-connect female connector 52, and two chargers 51.

[0084] Two chargers 51 are arranged side-by-side near the end plate 201 of the enclosure 200 and along the width of the enclosure 200. A quick-connect female connector 52 is located between the two chargers 51. A converter 53 is located near the battery compartment 90. A transformer 54 and a control cabinet 55 are located in the middle of the electrical equipment compartment 50 and are arranged side-by-side along the width of the enclosure 200 to facilitate wiring between various electrical devices.

[0085] Along the length of the enclosure 200, the electrical equipment compartment 50 has an operation panel 56 on each of its two side walls, corresponding to each charger 51. The operation panel 56 is located at the bottom of the enclosure 200 for easy operation by the operator.

[0086] In this embodiment, a charging dock 58 is also provided inside the electrical equipment compartment 50. The charging dock 58 is located on the opposite side of the inverter 53 and is positioned near the bottom of the housing 200. Multiple charging docks 58 may be provided. External charging devices, especially those that output direct current, can charge devices such as the battery cluster 92 inside the housing 200 through this charging dock 58.

[0087] The liquid cooling compartment 60 and the auxiliary equipment compartment 70 are located at the other end of the enclosure 200. The auxiliary equipment compartment 70 is a fire-fighting compartment. The liquid cooling compartment 60 and the auxiliary equipment compartment 70 are arranged side by side along the width of the enclosure 200. The cable compartment 80 is located only below the fire-fighting compartment.

[0088] The fire compartment is equipped with various fire-fighting devices, which are largely the same as those in the fire compartment of the first embodiment, and will not be described in detail here. A water fire-fighting interface 75 and a fire-fighting control panel 71 are provided on the side wall of the cable compartment 80. The water fire-fighting interface 75 and the fire-fighting control panel 71 are located below the second door 76, as close as possible to the vehicle frame for easy operation by personnel.

[0089] In some embodiments, a door assembly 72 may also be provided on the surface of the fire control panel 71. Under normal conditions, the door assembly 72 is closed to cover the surface of the fire control panel 71 to prevent accidental contact with the fire control panel 71. When the fire control panel 71 needs to be used, simply open the door assembly 72.

[0090] In this embodiment, the battery compartment 90 is located in the middle of the housing 200. The top of the battery compartment 90 has three pressure relief windows 91. The battery compartment 90 contains five battery clusters 92. Each battery cluster 92 includes eight battery boxes.

[0091] It should be noted that in other embodiments, the number of battery clusters 92 and the number of battery boxes in the battery clusters 92 can be set according to actual needs, and are not limited here.

[0092] The battery compartment 90 has an air inlet, an air outlet, an intake fan 74 mounted on the air inlet, and an exhaust fan 73 mounted on the air outlet on its side wall. The partition structure includes a second partition structure 202, which separates the liquid cooling compartment 60 and the battery compartment 90. The second partition structure 202 and the first partition structure can be integrally formed. In this embodiment, the air inlet is located on one side wall of the battery compartment 90, and the air outlet is located on the second partition structure 202.

[0093] The energy storage container in this application is divided into multiple compartments by a partition structure. These compartments include a battery compartment, an electrical equipment compartment, an auxiliary equipment compartment, and a cable compartment. Along the length of the container, the battery compartment is located in the middle, the electrical equipment compartment at one end, and the auxiliary equipment and cable compartments at the other end. The cable compartment is located below the auxiliary equipment compartment, housing the cables for protection. Furthermore, the cable compartment is situated at the lowest point of the energy storage container, facilitating cable access for operators. Additionally, without compromising the performance of the energy storage container, the cable compartment's placement makes efficient use of the space below the auxiliary equipment compartment, avoiding encroachment on the battery compartment's space and resulting in more efficient space utilization within the energy storage container.

[0094] The above embodiments are merely illustrative examples of structures. The structures in each embodiment are not fixed combinations. In the absence of structural conflicts, the structures in multiple embodiments can be arbitrarily combined and used.

[0095] Although the present invention has been described with reference to several typical embodiments, it should be understood that the terminology used is descriptive and exemplary, and not restrictive. Since the present invention can be embodied in many forms without departing from the spirit or essence of the invention, it should be understood that the above embodiments are not limited to any of the foregoing details, but should be interpreted broadly within the spirit and scope defined by the appended claims. Therefore, all variations and modifications falling within the scope of the claims or their equivalents should be covered by the appended claims.

Claims

1. An energy storage container, characterized in that, include: The enclosure includes a partition structure that divides the interior of the enclosure into multiple compartments, including a battery compartment, an electrical equipment compartment, an auxiliary equipment compartment, and a cable compartment. Along the length of the enclosure, the battery compartment is located in the middle of the enclosure, the electrical equipment compartment is located at one end of the enclosure, and the auxiliary equipment compartment and the cable compartment are located at the other end of the enclosure. The cable compartment is located below the auxiliary equipment compartment and is used to store cables.

2. The energy storage container according to claim 1, characterized in that, The auxiliary equipment compartment includes a fire-fighting compartment and a liquid-cooling compartment, which are arranged side by side along the width of the enclosure. The cable compartment is located below the liquid-cooling compartment and the fire-fighting compartment.

3. The energy storage container according to claim 1, characterized in that, It also includes a liquid cooling chamber, which and the auxiliary equipment chamber are arranged side by side along the width of the enclosure. The auxiliary equipment chamber is a fire-fighting chamber, and the cable chamber is located below the fire-fighting chamber.

4. The energy storage container according to claim 1, characterized in that, The cable compartment has its hatch facing away from the battery compartment, and a roller shutter door is provided at the hatch to seal the cable compartment hatch.

5. The energy storage container according to claim 1, characterized in that, The enclosure has end plates at both ends, the battery compartment contains multiple battery clusters, and the electrical equipment compartment contains a control cabinet, a transformer, a converter, a quick-connect female connector, and at least one charger. The converter is electrically connected to the control cabinet, the transformer, the charger, and the battery clusters, and the transformer is electrically connected to the quick-connect female connector.

6. The energy storage container according to claim 5, characterized in that, The quick-connect female connector is located near the end plate and is located at the bottom of the enclosure; the end plate is provided with a first cabinet door, which is located opposite to the quick-connect female connector.

7. The energy storage container according to claim 5, characterized in that, The number of chargers is one. The charger, the control cabinet, and the transformer are arranged side by side and spaced apart along the length of the enclosure. The converter is located on the opposite side of the control cabinet. The charger and the quick-connect female connector are located near the end plate of the enclosure.

8. The energy storage container according to claim 5, characterized in that, The number of chargers is two. The two chargers are arranged side by side near the end plate of the enclosure and along the width of the enclosure. The quick-connect female connector is located between the two chargers. The inverter is located near the battery compartment. The transformer and the control cabinet are located in the middle of the electrical equipment compartment and are arranged side by side along the width of the enclosure.

9. The energy storage container according to claim 5, characterized in that, The electrical equipment compartment includes at least one base and a charging gun. The base is located below the charger and is hollow inside. The charging gun is placed inside the base. The base has an opening that communicates with the interior of the base and faces away from the battery compartment. A second cabinet door is provided on the end plate and is positioned opposite to the opening.

10. The energy storage container according to claim 5, characterized in that, The electrical equipment compartment includes an operation panel located at the bottom of the side wall of the electrical equipment compartment, and the operation panel is electrically connected to the charger.

11. The energy storage container according to claim 2, characterized in that, The partition structure includes a first partition structure, which separates the auxiliary equipment compartment and the battery compartment. The auxiliary equipment compartment is equipped with an uninterruptible power supply, a fire cabinet, a fire control unit, and a dehumidifier. The fire control unit is electrically connected to the uninterruptible power supply, and the dehumidifier is mounted on the first partition structure. The fire compartment has a door on its side wall, and the fire control unit is mounted on the inner wall of the door.

12. The energy storage container according to claim 1, characterized in that, The battery compartment includes an air inlet, an air outlet, and an exhaust fan. The air inlet is located on a side wall of one side of the battery compartment. The exhaust vent is located on the side wall of the other side of the battery compartment, and the exhaust fan is mounted on the exhaust vent; or, The energy storage container includes a liquid cooling compartment, and the partition structure includes a second partition structure that separates the liquid cooling compartment and the battery compartment. The exhaust vent is located on the second partition structure.

13. The energy storage container according to claim 1, characterized in that, The housing includes a cable reel system, which includes a turntable and a drive mechanism. The cable is wound around the outer circumference of the turntable, and the drive mechanism drives the turntable to rotate.

14. A mobile power supply vehicle, characterized in that, It includes a front end, a frame, and an energy storage container as described in any one of claims 1 to 13, wherein the energy storage container is mounted on the frame, and the auxiliary equipment compartment is located at one end of the frame near the front end.