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Department of Aerospace Engineering, Tohoku University, Sendai, Japan 980-8579

机译:东北大学航空航天工程系,仙台,日本980-8579

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This paper describes the addition of an overset grid capability to the DPLR flow solver for hypersonic flow in thermochemical nonequilibrium. Modifications to the preexisting flow solver were simplified through the use of DiRTlib, a "solver neutral" library of overset utilities. The new capability is demonstrated on a series of examples, including the Orion Crew Module and other reentry vehicles. For the overset grids used in these examples, the hole cutting and interpolation stencils were determined using SUGGAR, a generalized grid assembly code that can naturally accommodate both the three-dimensional and true two-dimensional cell-centered discretization schemes in DPLR. First a series of building-block examples are presented which highlight aspects of the new capability and assess the technique with comparisons to baseline, block-structured discretizations. The new capability is then exercised for the specific case of a tension tie geometry protruding from the Orion heatshield at both wind tunnel and flight conditions. The addition of overset capability to the DPLR flow solver is seen to be an essential feature for analyzing increasingly complex geometries in thermochemical nonequilibrium.
机译:本文介绍了在热化学非QuiBibrimium中的超声波流量的DPLR流求解器添加了监督网格能力。通过使用Dirtlib,Solver Neutrics“文库的”Solver Neutrics“文库简化了对预先存在的流动求解器的修改。新能力在一系列示例中证明,包括猎户座船员模块和其他再入式车辆。对于在这些示例中使用的推销网格,使用Suggar确定孔切割和插值模版,广义网格组装代码可以自然地适应DPLR中的三维和真正的二维单元中心离散化方案。介绍了一系列构建块示例,其中突出了新功能的各个方面,并评估了与基线的比较,块结构离散化的技术。然后将新的能力锻炼,用于在风洞和飞行条件下从Orion Heatshield突出的张力绑带几何形状的具体情况。向DPLR流动求解器的推广能力被认为是用于分析热化学非核状中越来越复杂的几何形状的基本特征。

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