Heat Exchanger High Air Flow Low Temperature Difference CAES Systems Shanghai Electric

Heat Exchanger High Air Flow Low Temperature Difference CAES Systems Shanghai Electric

  • Heat Exchanger High Air Flow Low Temperature Difference CAES Systems Shanghai Electric
  • Heat Exchanger High Air Flow Low Temperature Difference CAES Systems Shanghai Electric
Summary
Shanghai Electric's Heat Exchanger for Compressed-air Energy Storage (CAES) systems delivers high air flow rates, minimal temperature differences, and strict air resistance control. Featuring advanced high-finned tubes and pure counterflow hairpin design, it reduces thermal stress, lowers system stages, and enables integrated charge-discharge operation—ideal for large-scale energy storage with enhanced efficiency, reliability, and compact footprint in modern grid-scale applications.More
Specifications
Air Flow Rate:
High
Heat Exchange Temperature Difference:
Small
Air Resistance Requirement:
Strict
  • Heat Exchanger High Air Flow Low Temperature Difference CAES Systems Shanghai Electric

Our heat exchangers for compressed air energy storage system are characterized by high air flow rates, small heat exchange temperature differences, strict air resistance requirements, low heat exchange efficiency, and large heat exchange areas. We took the lead in China to use high-finned tube heat exchangers in the Dingxi Compressed Air Energy Storage Power Station, which effectively reduces the operating resistance of air. Additionally, high-efficiency pure counterflow hairpin heat exchangers are adopted to effectively avoid thermal stress on tube sheets and reduce the number of heat exchanger stages. Moreover, an integrated charge-discharge design is employed to effectively reduce the number of equipment units.

Additionally, high-efficiency pure counterflow hairpin heat exchangers are adopted to effectively avoid thermal stress on tube sheets and reduce the number of heat exchanger stages. Moreover, an integrated charge-discharge design is employed to effectively reduce the number of equipment units.

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