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Graphite Ablation and Thermal Response Simulation Under Arc-Jet Flow Conditions

机译:电弧射流条件下的石墨烧蚀和热响应模拟

摘要

The Two-dimensional Implicit Thermal Response and Ablation program, TITAN, was developed and integrated with a Navier-Stokes solver, GIANTS, for multidimensional ablation and shape change simulation of thermal protection systems in hypersonic flow environments. The governing equations in both codes are demoralized using the same finite-volume approximation with a general body-fitted coordinate system. Time-dependent solutions are achieved by an implicit time marching technique using Gauess-Siedel line relaxation with alternating sweeps. As the first part of a code validation study, this paper compares TITAN-GIANTS predictions with thermal response and recession data obtained from arc-jet tests recently conducted in the Interaction Heating Facility (IHF) at NASA Ames Research Center. The test models are graphite sphere-cones. Graphite was selected as a test material to minimize the uncertainties from material properties. Recession and thermal response data were obtained from two separate arc-jet test series. The first series was at a heat flux where graphite ablation is mainly due to sublimation, and the second series was at a relatively low heat flux where recession is the result of diffusion-controlled oxidation. Ablation and thermal response solutions for both sets of conditions, as calculated by TITAN-GIANTS, are presented and discussed in detail. Predicted shape change and temperature histories generally agree well with the data obtained from the arc-jet tests.
机译:开发了二维隐式热响应和消融程序TITAN,并将其与Navier-Stokes解算器GIANTS集成在一起,用于高超声速流动环境中热防护系统的多维消融和形状变化模拟。这两个代码中的控制方程式使用相同的有限体积近似值与一般的人体拟合坐标系进行消沉。依赖时间的解决方案是通过使用Gauess-Siedel线松弛和交替扫描的隐式时间行进技术实现的。作为代码验证研究的第一部分,本文将TITAN-GIANTS预测与最近在美国宇航局艾姆斯研究中心的互动加热设施(IHF)中进行的电弧喷射试验获得的热响应和衰退数据进行了比较。测试模型是石墨球锥。选择石墨作为测试材料,以最大程度地减少材料性能的不确定性。衰退和热响应数据是从两个单独的电弧喷射测试系列获得的。第一个系列的热通量主要是由于升华引起的石墨烧蚀,第二个系列的热通量相​​对较低,其中的扩散是扩散控制氧化的结果。介绍并讨论了TITAN-GIANTS计算出的两种情况下的烧蚀和热响应解决方案。预测的形状变化和温度历史通常与从电弧喷射测试获得的数据非常吻合。

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