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Radiation Heat Transfer Between Diffuse-Gray Surfaces Using Higher Order Finite Elements

机译:使用高阶有限元的扩散灰色表面之间的辐射传热

摘要

This paper presents recent work on developing methods for analyzing radiation heat transfer between diffuse-gray surfaces using p-version finite elements. The work was motivated by a thermal analysis of a High Speed Civil Transport (HSCT) wing structure which showed the importance of radiation heat transfer throughout the structure. The analysis also showed that refining the finite element mesh to accurately capture the temperature distribution on the internal structure led to very large meshes with unacceptably long execution times. Traditional methods for calculating surface-to-surface radiation are based on assumptions that are not appropriate for p-version finite elements. Two methods for determining internal radiation heat transfer are developed for one and two-dimensional p-version finite elements. In the first method, higher-order elements are divided into a number of sub-elements. Traditional methods are used to determine radiation heat flux along each sub-element and then mapped back to the parent element. In the second method, the radiation heat transfer equations are numerically integrated over the higher-order element. Comparisons with analytical solutions show that the integration scheme is generally more accurate than the sub-element method. Comparison to results from traditional finite elements shows that significant reduction in the number of elements in the mesh is possible using higher-order (p-version) finite elements.
机译:本文介绍了使用p版本有限元分析扩散灰色表面之间的辐射热传递的开发方法的最新工作。这项工作是通过对高速民用运输(HSCT)机翼结构进行热分析而得出的,该分析表明了辐射热在整个结构中传递的重要性。分析还显示,细化有限元网格以准确捕获内部结构上的温度分布会导致非常大的网格,且执行时间过长。计算面对面辐射的传统方法基于不适合p版本有限元的假设。针对一维和二维P型有限元,开发了两种确定内部辐射热传递的方法。在第一种方法中,高阶元素被分为多个子元素。传统方法用于确定沿每个子元素的辐射热通量,然后映射回父元素。在第二种方法中,辐射传热方程在数值上被积分在高阶元素上。与分析解决方案的比较表明,集成方案通常比子元素方法更准确。与传统有限元结果的比较表明,使用高阶(p版本)有限元可以大大减少网格中元素的数量。

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    Gould Dana C.;

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  • 年度 2000
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