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Structural assessment of a space station solar dynamic heat receiver thermal energy storage canister

机译:空间站太阳动态受热器储热罐的结构评估

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摘要

The structural performance of a space station thermal energy storage (TES) canister subject to orbital solar flux variation and engine cold start up operating conditions was assessed. The impact of working fluid temperature and salt-void distribution on the canister structure are assessed. Both analytical and experimental studies were conducted to determine the temperature distribution of the canister. Subsequent finite element structural analyses of the canister were performed using both analytically and experimentally obtained temperatures. The Arrhenius creep law was incorporated into the procedure, using secondary creep data for the canister material, Haynes 188 alloy. The predicted cyclic creep strain accumulations at the hot spot were used to assess the structural performance of the canister. In addition, the structural performance of the canister based on the analytically determined temperature was compared with that based on the experimentally measured temperature data.
机译:评估了受轨道太阳通量变化和发动机冷启动工况影响的空间站热能储存(TES)罐的结构性能。评估了工作流体温度和无盐分布对罐结构的影响。进行了分析和实验研究,以确定罐的温度分布。随后使用分析和实验获得的温度对碳罐进行了有限元结构分析。使用罐材料Haynes 188合金的二次蠕变数据,将Arrhenius蠕变定律纳入该程序。在热点处预测的循环蠕变应变累积被用来评估滤罐的结构性能。另外,将基于分析确定的温度的罐的结构性能与基于实验测量的温度数据的罐的结构性能进行了比较。

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