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FAQ

1. What cooling technology is implemented in the 7.01MWh LFP 3.2V/435Ah BESS?

The system utilizes a state-of-the-art liquid cooling solution with closed-loop coolant circulation and intelligent temperature control to maintain uniform thermal conditions across the large-scale battery array.

2. What are the advantages of liquid cooling in a 7.01MWh energy storage system?

Liquid cooling offers superior heat dissipation compared to air cooling, enabling higher charge/discharge rates, improved battery lifespan, enhanced safety through effective thermal management, and consistent performance under heavy industrial loads.

3. What applications are suitable for the 7.01MWh liquid-cooled LFP BESS?

This system is ideal for large-scale industrial peak shaving, renewable energy smoothing and storage, grid frequency regulation, critical infrastructure backup, microgrid support, and participation in ancillary grid services.

4. How is safety ensured in the liquid cooling system of this large-scale BESS?

Comprehensive safety measures include real-time coolant leak detection, multi-level temperature monitoring, Battery Management System (BMS) protections, automated fire suppression systems, and emergency shutdown protocols to safeguard system reliability.

5. What maintenance procedures are recommended for the liquid cooling system in a 7.01MWh BESS?

Recommended maintenance involves regular inspection of coolant quality and levels, checking pumps and valves, cleaning heat exchangers, monitoring for leaks, and performing system diagnostics to ensure optimal thermal management and extend system lifespan.

6. Can the 7.01MWh system be expanded or integrated with other energy sources?

Yes, the modular design allows scalable expansion and seamless integration with solar, wind, diesel generators, and grid systems to form hybrid microgrids and optimize overall energy management.

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