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FAQ

1. What is the system architecture of a 372kWh liquid-cooled BESS using LFP 3.2V 280Ah cells?

The 372kWh system consists of high-voltage LFP battery racks built from 3.2V 280Ah cells, integrated into multiple liquid-cooled modules. It includes a BMS for cell-level management, a liquid circulation system with pumps and heat exchangers, and is often pre-installed in a modular outdoor cabinet or container.

2. What are the advantages of liquid cooling in a 372kWh energy storage system?

Liquid cooling ensures consistent temperature control across all battery cells, improves thermal efficiency, supports higher charge/discharge rates, and significantly extends battery lifespan. It's ideal for medium to high-capacity systems operating under continuous cycling or high ambient temperatures.

3. What types of commercial or industrial projects are best suited for a 372kWh BESS?

This system is well-suited for applications such as solar PV self-consumption, peak load reduction, small industrial backup, commercial microgrids, and energy arbitrage. It can also serve as a building block for larger parallel BESS deployments.

4. What certifications and protection features are included in the 372kWh liquid-cooled system?

The system complies with standards such as IEC 62619, CE, UN38.3, and UL 9540A (optional). Key safety features include coolant leak detection, thermal sensors, automatic fire suppression systems (like aerosol or NOVEC), and multi-layer BMS protection for voltage, current, and temperature thresholds.

5. How is monitoring and maintenance handled for the 372kWh liquid-cooled system?

An integrated EMS provides remote real-time monitoring of system status, SoC, SoH, coolant temperature and flow, and fault diagnostics. Regular maintenance includes coolant inspection, system calibration, firmware updates, and preventive checks to ensure reliability and uptime.

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