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Evaluation of an adaptive unstructured remeshing technique for integrated fluid-thermal-structural analysis

机译:自适应非结构​​化网格分析技术在流体-热-结构综合分析中的应用

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摘要

An adaptive unstructured remeshing technique is evaluated for integrated fluid-thermal-structural analysis. The technique is combined with the finite element method to solve: (1) the Navier-Stokes equations for high-speed compressible flow; (2) the energy equation for the structural-thermal response; and (3) the quasi-static equilibrium equations for the structural response. The remeshing technique and the analysis solution procedure are described. The effectiveness of the approach is evaluated with two application studies. The flow analysis of Mach 8 shock-shock interference on a three-inch-diameter cylinder is used as the first application study to demonstrate the capability of the remeshing technique and to examine proper remeshing indicators for the inviscid and boundary layer regions. The applicability of the approach for the thermal and structural analyses of the structure is evaluated in the second application study of a 0.25-inch-diameter convectively cooled leading edge subjected to intense aerodynamic heating. Issues associated with remeshing indicators for thermal stress problems are identified.
机译:评估了一种自适应的非结构化网格刷新技术,用于集成的流体-热结构分析。该技术与有限元方法相结合来求解:(1)高速可压缩流的Navier-Stokes方程; (2)结构热响应的能量方程; (3)结构响应的准静态平衡方程。描述了重新定型技术和分析解决方案的过程。通过两次应用研究评估了该方法的有效性。在3英寸直径的圆柱体上对8马赫冲击波进行的流动分析被用作首次应用研究,以证明重新贴合技术的能力并检查不粘和边界层区域的合适重新贴合指标。在对0.25英寸直径对流冷却的前缘进行强烈空气动力加热的第二次应用研究中,评估了该方法对结构进行热和结构分析的适用性。确定与重新排列热应力问题指示器相关的问题。

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    Dechaumphai, Pramote;

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  • 年度 1990
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