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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 use of carbon-carbon (C-C) recuperators in closed-Brayton-cycle space power conversion systems was assessed. Recuperator performance was forecast based on notional thermodynamic cycle state values for 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 40-55% were projected for C-C recuperators with effectiveness greater than 0.9 and thermal loads from 25-1400 kWt. The smaller thermal loads corresponded with lower mass savings; however, at least 50% savings were forecast for all loads above 300 kWt. System-related material challenges and compatibility issues were also discussed.
机译:评估了碳-碳(C-C)换热器在封闭布雷顿循环空间电力转换系统中的使用。根据行星任务的理论热力学循环状态值预测了换热器的性能。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。对于效率大于0.9的C-C换热器以及25-1400 kWt的热负荷,预计可节省40-55%的质量。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,预计至少可节省50%。还讨论了与系统有关的重大挑战和兼容性问题。

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