Liquid cooled electric energy storage container

Liquid cooled energy storage power container is a complete set of energy storage equipment designed for high energy density and high safety level application scenarios Battery system, energy storage converter (PCS), battery management system (BMS), energy management system (EMS), liquid cooling temperature control system, and distribution protection unit Highly integrated into standardized enclosures, it can be widely used in key scenarios such as data center backup power supply, industrial and commercial energy storage, power grid frequency regulation and peak shaving, and new energy side support.

The product adopts a modular integration and factory prefabrication method. The core components undergo system cascade debugging and safety testing before leaving the factory. On site, only the foundation needs to be in place, and the pipeline and electrical interface connections need to be completed before it can be put into operation, achieving Efficient closed liquid cooling circulation system Effectively shorten the project construction period and reduce implementation risks.

In terms of thermal management and safety performance, liquid cooled energy storage power container configuration Efficient closed liquid cooling circulation system By directly removing the heat generated by the operation of the battery cells through the coolant, higher heat transfer efficiency and more uniform temperature control can be achieved, which can significantly reduce the temperature difference of the battery cells and delay battery degradation, meeting the requirements of high rate charging and discharging and high power density operation. At the same time, the system integrates multi-level electrical protection, thermal runaway monitoring and warning, gas and fire linkage and other safety mechanisms, comprehensively improving the intrinsic safety level of energy storage systems.

Relying on the EMS intelligent scheduling platform, the equipment can achieve Peak shaving and valley filling, demand response, backup power supply, microgrid collaboration, and new energy consumption It operates in multiple method and supports remote monitoring, data analysis, and cluster management to meet the requirements of smart energy and low-carbon operation.

 

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