储能集装箱
By installing the fire protection system control unit and main control unit on the hatch of the energy storage container, the problem of the fire protection system occupying internal space is solved, achieving a balance between high safety and high energy density, and improving the overall performance of the energy storage container.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ENVISION DYNAMICS TECH (JIANGSU) CO LTD
- Filing Date
- 2025-08-12
- Publication Date
- 2026-07-17
AI Technical Summary
Existing energy storage containers have shortcomings in balancing safety and energy density. In particular, the layout of the fire protection system occupies internal space, resulting in a reduction in energy density. Furthermore, the manual control of the fire protection system is lagging, affecting safety and control accuracy.
A fire protection system control unit is installed in the energy storage container. The fire protection system control unit is located on the side of the hatch near the container body and is connected to the fire protection system. The main control unit is arranged along the height of the container body, occupying the hatch space but not the internal space of the container body, so as to achieve precise control of the fire protection system.
It improves the safety of battery clusters and energy storage containers while maintaining high energy density, and the layout of the fire protection system is more reasonable, improving spatial integration and control accuracy.
Smart Images

Figure CN224520074U_ABST
Abstract
Claims
1. An energy storage container, characterized by, include: The enclosure includes a plurality of energy storage compartments and functional compartments arranged continuously along a first direction, wherein the energy storage compartments are used to accommodate battery clusters and the functional compartments include doors; The fire protection system is located inside the enclosure; A fire protection system control unit is located on the side of the hatch near the housing and is connected to the fire protection system. The main control unit is installed on the hatch and connected to the fire protection system control unit. The main control unit and the fire protection system control unit are arranged along the height direction of the enclosure.
2. The energy storage container of claim 1, wherein, The fire protection system control unit includes a host and an addressing module. The host is connected to the fire protection system and is used to control the fire protection system. The addressing module is connected to each of the battery clusters and is used to collect the electrical signals of each battery cluster. The host and the addressing module are both connected to the main control unit. In the height direction of the enclosure, the host and the addressing module are located on both sides of the main control unit.
3. The energy storage container of claim 2, wherein, It also includes a temperature and humidity control unit, which is used to adjust the temperature and humidity inside the functional compartment. The temperature and humidity control unit is installed on the compartment door and connected to the main control unit. The temperature and humidity control unit, the main control unit and the fire protection system control unit are arranged along the height direction of the enclosure.
4. The energy storage container of claim 3, wherein, It also includes an alarm unit, which is installed on the hatch and is connected to both the fire protection system control unit and the main control unit. The alarm unit and the temperature and humidity control unit are arranged along a second direction, which is perpendicular to both the first direction and the height direction of the enclosure.
5. The energy storage container of claim 4, wherein, It also includes a wiring harness box, which is located on the side of the door near the enclosure. The wiring harness box is used to accommodate wiring harnesses extending from the enclosure to the door. The wiring harness box extends along the height direction of the enclosure, and the wiring harness box and the fire protection system control unit are arranged along the second direction.
6. The energy storage container of claim 5, wherein, The hatch includes an inner panel and an outer panel, with a cavity between the inner and outer panels. The fire protection system control unit and the wiring harness box are located on the inner panel. The main control unit, the alarm unit, and the temperature and humidity control unit are all located on the inner panel and partially extend through the cavity and out of the outer panel. The fire protection system control unit, the main control unit, the alarm unit, and / or the temperature and humidity control unit are connected by a wiring harness located within the cavity.
7. The energy storage container of claim 6, wherein, The enclosure includes a bottom plate, and the main control unit includes a main control box and a main control button located inside the main control box. Both the main control box and the main control button extend out of the outer plate. The main control box includes a first opening, which is located away from the outer plate. The main control box includes a main control base plate, which is located close to the bottom plate. The main control base plate is inclined, and the vertical distance between the main control base plate and the bottom plate gradually decreases along the direction from the energy storage compartment to the functional compartment. The vertical distance is the distance in the height direction of the enclosure.
8. The energy storage container of claim 7, wherein, The main control unit also includes a shield for covering the first opening, and a safety hammer is provided on the outer plate, with the safety hammer positioned close to the shield.
9. The energy storage container of claim 6, wherein, The enclosure includes a bottom plate. The alarm unit includes an alarm box, an alarm button, and an alarm light located inside the alarm box. The alarm box, the alarm button, and the alarm light all extend out of the outer plate. The alarm box includes a second opening, which is located away from the outer plate. The alarm box also includes an alarm base plate, which is located close to the bottom plate. The alarm base plate is inclined, and the vertical distance between the alarm base plate and the bottom plate gradually decreases along the direction from the energy storage compartment to the functional compartment. The vertical distance is the distance in the height direction of the enclosure.
10. The energy storage container of claim 3, wherein, The enclosure includes a bottom plate, and the functional compartment includes an electrical compartment and a fire compartment arranged along the height direction of the enclosure. The electrical compartment is located on the side of the fire compartment away from the bottom plate, and the fire protection system is partially located inside the fire compartment. The orthographic projection of the electrical compartment on the door at least partially overlaps with the orthographic projection of the temperature and humidity control unit on the door.
11. The energy storage container of claim 1, wherein, The fire protection system includes a fire storage tank and fire pipelines connected to the fire storage tank. The fire storage tank is located inside the functional compartment. The fire pipelines pass through the functional compartment and extend into the plurality of energy storage compartments. The fire pipelines are electrically connected to the fire protection system control unit.