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Multidimensional phase change problems by the dual-reciprocity boundary-element method

机译:双向可逆边界元法求解多维相变问题

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This article addresses the numerical analysis of nonlinear transient heat transfer with melting or solidification. An effective and simple procedure is presented for the simulation of the motion of the boundary and the transient temperature field during the phase change process. To accomplish this purpose, an iterative implicit solution algorithm has been developed by employing the dual-reciprocity boundary-element method. The dual-reciprocity boundary-element approach provided in this article is much simpler than the usual boundary-element method in applying a reciprocity principle and an available technique for dealing with the domain integral of the boundary element formulation simultaneously. In this article, attention is focused on two-dimensional melting (ablation)/solidification problems for simplicity. The accuracy and effectiveness of the present analysis method have been illustrated through comparisons of the calculation results of some examples of one-phase ablation/solidification problems with their known semianalytical or numerical solutions where available.
机译:本文介绍了具有熔化或凝固作用的非线性瞬态传热的数值分析。提出了一种有效而简单的过程,用于模拟相变过程中边界运动和瞬态温度场。为了实现这一目的,通过采用双互易性边界元法开发了一种迭代隐式求解算法。本文提供的双重互惠边界元素方法比通常的边界元素方法简单得多,它同时应用了互惠原理和一种可用于同时处理边界元素公式的域积分的技术。在本文中,为简单起见,注意力集中在二维熔化(消融)/凝固问题上。通过将一相烧蚀/凝固问题的一些示例的计算结果与可用的已知半解析或数值解进行比较,来说明本分析方法的准确性和有效性。

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