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首页> 外文期刊>Journal of Thermophysics and Heat Transfer >Computational Analysis of Arc-Jet Stagnation Tests Including Ablation and Shape Change
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Computational Analysis of Arc-Jet Stagnation Tests Including Ablation and Shape Change

机译:包括消融和形状变化在内的Arc-Jet停滞测试的计算分析

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Coupled fluid-material response analyses of arc-jet stagnation tests conducted in a NASA Ames Research Center arc-jet facility are considered. The fluid analysis includes computational Navier-Stokes simulations of the nonequilibrium flowfield in the facility nozzle and test box as well as the flowfleld over the models. The material response analysis includes simulation of two-dimensional surface ablation and internal heat conduction, thermal decomposition, and pyrolysis gas flow. For ablating test articles including shape change, the material response and fluid analyses are coupled to take into account changes in surface heat flux and pressure distributions with shape. The ablating material used in these arc-jet tests was a phenolic impregnated carbon ablator. Computational predictions of surface recession, shape change, and material response are compared with the experimental measurements.
机译:考虑在美国国家航空航天局艾姆斯研究中心电弧喷射设施中进行的电弧喷射停滞试验的流体-材料响应耦合分析。流体分析包括设施喷嘴和测试箱中非平衡流场的计算Navier-Stokes模拟以及模型上的流场。材料响应分析包括二维表面烧蚀和内部导热,热分解和热解气流的模拟。对于包括形状变化的消融测试物品,将材料响应和流体分析结合起来,以考虑表面热通量和压力分布随形状的变化。这些电弧喷射测试中使用的烧蚀材料是酚醛浸渍碳烧蚀剂。表面衰退,形状变化和材料响应的计算预测与实验测量值进行了比较。

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