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Carbon-Carbon Recuperators in Closed-Brayton-Cycle Space Power Systems

机译:密闭布雷顿循环空间动力系统中的碳-碳换热器

摘要

The feasibility of using carbon-carbon (C-C) recuperators in conceptual closed-Brayton-cycle space power conversion systems was assessed. Recuperator performance expectations were forecast based on notional thermodynamic cycle state values for potential planetary missions. Resulting thermal performance, mass and volume for plate-fin C-C recuperators were estimated and quantitatively compared with values for conventional offset-strip-fin metallic designs. Mass savings of 30 to 60 percent were projected for C-C recuperators with effectiveness greater than 0.9 and thermal loads from 25 to 1400 kWt. The smaller thermal loads corresponded with lower mass savings; however, 60 percent savings were forecast for all loads above 300 kWt. System-related material challenges and compatibility issues were also discussed.
机译:评估了在概念性封闭式布雷顿循环空间电力转换系统中使用碳-碳(C-C)换热器的可行性。基于潜在的行星飞行任务的理论热力学循环状态值,对换热器的性能预期进行了预测。估算了板翅式C-C换热器的热性能,质量和体积,并将其与常规偏置条形翅片金属设计的值进行了定量比较。预计C-C换热器的质量节省将达到30%到60%,效率大于0.9,热负荷从25到1400 kWt。较小的热负荷对应较低的质量节省;但是,对于所有超过300 kWt的负载,预计将节省60%。还讨论了与系统有关的重大挑战和兼容性问题。

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