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233KWh

233kWh Li-ion/LFP battery energy storage system (BESS) with 3.2V 280Ah cells and liquid cooling technology for optimal performance and reliability.


FAQ

1. What is the structural composition of a 233kWh liquid-cooled LFP energy storage system?

The 233kWh system uses high-capacity battery modules built from 3.2V 280Ah LiFePO₄ cells, configured into high-voltage racks with integrated liquid cooling plates. It includes a battery management system (BMS), energy management system (EMS), heat exchanger, coolant circulation system, fire protection, and can be deployed in an indoor cabinet or modular outdoor enclosure.

2. What are the benefits of using liquid cooling in a 233kWh BESS?

Liquid cooling delivers superior thermal balance, reduces temperature variance between cells, supports faster charge/discharge cycles, and enhances battery lifespan. It is more efficient in dissipating heat, especially in high-density systems, and ensures system stability even under heavy loads or in hot environments.

3. What are the typical use cases for a 233kWh liquid-cooled energy storage system?

This capacity is suitable for industrial facilities, commercial buildings, solar-storage hybrid systems, and data centers. It's also used in EV charging station buffering and peak shaving applications, where high performance and temperature control are crucial.

4. What protection and certification standards does the 233kWh liquid-cooled system follow?

The system complies with global safety and performance standards including IEC 62619, CE, UL 9540A (optional), and UN38.3. Protection features include multi-layer BMS safeguards, coolant leakage detection, overtemperature alarms, smoke sensors, and fire suppression systems (e.g., aerosol, NOVEC, or FM200).

5. How is the 233kWh system maintained and monitored?

Remote and local monitoring is provided via EMS, with real-time visibility into temperature, SoC, SoH, coolant flow, and fault alarms. Maintenance includes coolant refills or replacements, circulation pump inspections, thermal performance checks, and scheduled firmware updates to ensure optimal system operation.

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