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On Laminar to Turbulent Transition of Arc-Jet Flow in the NASA Ames Panel Test Facility

机译:在NASA Ames面板测试设施中层流到湍流的湍流过渡

摘要

This paper provides experimental evidence and supporting computational analysis to characterize the laminar to turbulent flow transition in a high enthalpy arc-jet facility at NASA Ames Research Center. The arc-jet test data obtained in the 20 MW Panel Test Facility include measurements of surface pressure and heat flux on a water-cooled calibration plate, and measurements of surface temperature on a reaction-cured glass coated tile plate. Computational fluid dynamics simulations are performed to characterize the arc-jet test environment and estimate its parameters consistent with the facility and calibration measurements. The present analysis comprises simulations of the nonequilibrium flowfield in the facility nozzle, test box, and flowfield over test articles. Both laminar and turbulent simulations are performed, and the computed results are compared with the experimental measurements, including Stanton number dependence on Reynolds number. Comparisons of computed and measured surface heat fluxes (and temperatures), along with the accompanying analysis, confirm that that the boundary layer in the Panel Test Facility flow is transitional at certain archeater conditions.
机译:本文提供了实验证据和支持的计算分析,以表征NASA Ames研究中心的高焓电弧喷射设施中的层流到湍流的过渡。在20 MW面板测试设施中获得的电弧喷射测试数据包括水冷校准板上表面压力和热通量的测量,以及反应固化的玻璃涂层瓷砖板上表面温度的测量。进行计算流体动力学模拟以表征电弧喷射测试环境并估计其与设施和校准测量值一致的参数。本分析包括设施喷嘴,测试箱中非平衡流场的模拟,以及测试物品上方的流场的模拟。进行层流和湍流模拟,并将计算结果与实验测量值进行比较,包括斯坦顿数对雷诺数的依赖性。计算和测量的表面热通量(和温度)的比较,以及伴随的分析,确认了在某些电弧炉条件下,面板测试设施流中的边界层是过渡的。

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