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Flowfield Analysis of a Small Entry Probe (SPRITE) Tested in an Arc Jet

机译:在电弧射流中测试的小型进入探头(SPRITE)的流场分析

摘要

Results of simulations of flow of an arc-heated stream around a 14-inch diameter 45 sphere-cone configuration are presented. Computations are first benchmarked against pressure and heat flux measurements made using copper slug calorimeters of different shapes and sizes. The influence of catalycity of copper on computed results is investigated. Good agreements between predictions and measurements are obtained by assuming the copper slug to be partially catalytic to atomic recombination. With total enthalpy estimates obtained from these preliminary computations, calculations are then performed for the test article, with the nozzle and test article considered as an integrated whole the same procedure adopted for calorimeter simulations. The resulting heat fluxes at select points on the test article (points at which fully instrumented plugs were placed) are used in material thermal response code calculations. Predicted time histories of temperature are compared against thermocouple data from the instrumented plugs, and recession determined. Good agreement is obtained for in-depth thermocouples.
机译:给出了围绕14英寸直径45球锥配置的电弧加热流的流动模拟结果。首先针对使用不同形状和尺寸的铜塞热量计进行的压力和热通量测量对基准进行基准测试。研究了铜的催化性对计算结果的影响。通过假设铜团块对原子重组具有部分催化作用,可以在预测和测量之间取得良好的一致性。利用从这些初步计算获得的总焓估计值,然后对测试物品进行计算,将喷嘴和测试物品视为一个整体,与量热仪模拟所采用的相同步骤相同。在测试物品上选择的点(放置有完整仪器的塞子的点)产生的热通量用于材料热响应代码计算。将预测的温度历史时间与来自已插装插头的热电偶数据进行比较,并确定衰退程度。深入的热电偶取得了良好的协议。

著录项

  • 作者

    Prabhu Dinesh K.;

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  • 年度 2011
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