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Computational Simulations of the 10-MW TP3 Arc-Jet Facility Flow

机译:10兆瓦TP3弧喷设施流量的计算模拟

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This paper reports computational simulations and analysis in support of calibration tests in a high enthalpy arc-jet facility at NASA Ames Research Center. These tests were conducted using stagnation calorimeters and two different blunted wedge models with calibration plates at a wide range of conditions in the NASA Ames 10-MW TP3 facility. Data were obtained using four different conical nozzles with the same test configuration in which the models were placed in a free jet downstream of the nozzle. Experimental surveys of arc-jet test flow with pitot and null-point heat flux probes were also performed at several arc-heater conditions, providing assessment of the flow uniformity and valuable data for the flow characterization. The present analysis comprises computational fluid dynamics simulations of the nonequilibrium flowfield in the facility nozzle and test box, including the models tested, and comparisons with the experimental measurements. These computational simulations provide estimates of the arc-jet test environment parameters that are not measured but are needed to evaluate the performance of thermal protection system materials, along with further valuable insights into the arc-jet testing environment. Simulation results are used to estimate centerline total enthalpy, surface shear, boundary layer thickness, and boundary layer edge Mach number and to verify that specific test requirements from the Orion program are met.
机译:本文报告了在美国国家航空航天局艾姆斯研究中心的高焓电弧喷射设施中进行的计算仿真和分析,以支持校准测试。这些测试是在美国宇航局Ames 10兆瓦TP3设施中,在各种条件下使用滞止量热计和两个带有校准板的钝钝楔形模型进行的。使用具有相同测试配置的四个不同的锥形喷嘴获得数据,其中将模型放置在喷嘴下游的自由射流中。还在几个电弧加热器条件下用皮托管和零点热通量探头对电弧喷射试验流进行了实验调查,从而提供了流动均匀性的评估和用于流动表征的有价值的数据。本分析包括设施喷嘴和测试箱中非平衡流场的计算流体动力学模拟,包括测试的模型,以及与实验测量值的比较。这些计算仿真提供了未测量但评估热保护系统材料性能所需的电弧喷射测试环境参数的估计值,以及对电弧喷射测试环境的进一步有价值的见解。仿真结果用于估计中心线总焓,表面剪切力,边界层厚度和边界层边缘马赫数,并验证是否满足Orion程序的特定测试要求。

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