Containerized Immersion Liquid-cooled Energy Storage System
The containerized immersion liquid-cooled energy storage system immerses battery cells directly in coolant to achieve fast and uniform heat dissipation. Its containerized design provides efficient thermal management, stable battery performance, extended service life, and flexible deployment for large-scale energy storage projects.
Warranty 1 year
Product Overview
The containerized immersion liquid-cooled energy storage system is designed for large-scale energy storage applications, combining containerized structure, battery modules, BMS, EMS, PCS, immersion liquid cooling, safety protection, and intelligent monitoring into an integrated system.
By immersing battery cells directly in coolant, the system provides fast and uniform heat dissipation, helping improve battery temperature consistency, enhance operational safety, and support stable performance under high-load charge and discharge conditions.
DHDL containerized immersion liquid-cooled energy storage systems can be customized according to project capacity, battery configuration, cooling requirements, grid connection mode, installation environment, communication protocol, and applicable safety standards.
Technical Specifications
| Item | Specification |
|---|---|
| Product Type | Containerized Immersion Liquid-cooled Energy Storage System |
| System Structure | Containerized energy storage design for convenient transportation, installation, deployment, and project expansion |
| Cooling Method | Immersion liquid cooling, with battery cells directly immersed in coolant for fast and uniform heat dissipation |
| Thermal Management | High-efficiency heat exchange design helps improve battery temperature consistency and reduce overheating risk |
| Main Function | Large-scale energy storage, charge and discharge control, thermal management, safety protection, energy management, and system monitoring |
| Application | Utility-scale energy storage, commercial and industrial energy storage, renewable energy integration, microgrids, and backup power projects |
| Customization | System capacity, battery configuration, cooling system design, container layout, grid connection mode, communication protocol, and safety requirements can be customized |
Product Features
Efficient Immersion Cooling
Battery cells are directly immersed in coolant, ensuring fast and uniform cooling performance for improved temperature consistency.
Containerized System Design
The containerized structure makes transportation, installation, and deployment more convenient, adapting to different energy storage project scenarios.
Safe and Energy-efficient Operation
The liquid cooling system helps reduce overheating risk, extend battery service life, improve overall energy efficiency, and lower energy loss.
Modular Capacity Management
The modular system design supports flexible capacity expansion, making it easier to optimize, upgrade, and adapt the system to project requirements.
Factory Test Items
| Test Item | Test Type |
|---|---|
| Insulation Resistance Test | Routine Test |
| Winding DC Resistance Test | Routine Test |
| Voltage Ratio Test | Routine Test |
| Vector Group Test | Routine Test |
| No-load Loss and No-load Current Test | Routine Test |
| Load Loss and Impedance Voltage Test | Routine Test |
| Power Frequency Withstand Voltage Test | Routine Test |
| Induced Withstand Voltage Test | Routine Test |
| Sealing Test | Routine Test |
| Transformer Oil Test | Routine Test |
| Appearance and Nameplate Inspection | Routine Test |
| Packing Inspection Before Shipment | Routine Test |
Applications
Utility Distribution Networks
Reliable transformer solutions for urban and rural power distribution systems, helping ensure stable voltage conversion and continuous power supply.
Industrial Facilities
Suitable for factories, workshops, production lines, mining sites, and industrial power systems that require long-term stable operation.
Renewable Energy Projects
Applied in solar power plants, wind farms, energy storage stations, and microgrid systems for power conversion and distribution.
AI Data Center Power Infrastructure
Suitable for data center campus substations, medium-voltage power intake systems, and reliable power distribution infrastructure supporting high-density computing loads.
Why Choose DHDL Transformer
DHDL provides reliable transformer manufacturing, strict quality control, and project-based technical support for power distribution, industrial, commercial, and renewable energy applications.
Manufacturing Capability
- Transformers
- Distribution Cabinets
- Prefabricated Substation
- Energy Storage Cabinets
- Charging Piles
Quality Control
- Material inspection
- Winding and assembly control
- Drying and oil treatment process
- Routine testing
- Final inspection before delivery
International Standards
- IEC
- ANSI
- IEEE
- GB
- Project-specific technical requirements
Containerized immersion liquid-cooled energy storage systems are widely used in large-scale independent energy storage stations, renewable energy storage, commercial and industrial energy storage, grid peak shaving and frequency regulation, microgrids, and solar-storage-charging projects.
An immersion liquid-cooled energy storage system uses insulating coolant to directly surround battery cells and remove heat through liquid circulation, achieving efficient and uniform cooling while improving battery safety and cycle life.
Immersion liquid cooling offers more uniform temperature control, higher cooling efficiency, smaller cell temperature differences, lower noise, and stronger thermal runaway prevention for high-capacity and high-rate energy storage applications.
The system integrates battery system, immersion liquid cooling system, BMS, PCS, EMS, fire protection system, and intelligent monitoring system for modular and rapid deployment.
Yes, we support customization of energy storage capacity, output power, battery configuration, PCS brand, grid connection voltage, communication protocol, container size, and overall system solution.
Please provide the energy storage capacity in MWh, power requirement in MW, application scenario, grid connection voltage, operating mode, installation environment, and project quantity so we can provide a complete technical solution and quotation.
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