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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Eikonal equation-based front propagation for arbitrary complex configurations
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Eikonal equation-based front propagation for arbitrary complex configurations

机译:基于复杂方程的基于Eikonal方程的前沿传播

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摘要

This paper presents a front propagation method using the Eikonal equation, del phi . del phi = 1, in which, phi represents the smallest Euclidean distance field to the front to be propagated. The offset capturing approach consists in first calculating the phi field over a uniform Cartesian grid fully covering the front to be propagated, and then constructing the iso-phi curves or surfaces as the propagated result. The calculation of phi uses a 3D numerical scheme, the Fast Sweep)ing Scheme. Validation for accuracy of the method is presented using academic test cases. A real 3D industry application, draft tube with two piers, is successfully propagated and demonstrated using special boundary conditions to cope with inlet and outlet planes during front propagtion. This application involves the propagation of a front that exhibits both concave and convex shape regions, sharp corners, and local tangent plane surface discontinuities as well as a multi-connected domain. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:本文提出了一种使用Eikonal方程del phi的前沿传播方法。 del phi = 1,其中phi表示要传播的最前面的最小欧几里得距离场。偏移量捕获方法包括:首先在完全覆盖要传播的前沿的均匀笛卡尔网格上计算phi场,然后构造iso-phi曲线或曲面作为传播结果。 phi的计算使用3D数值方案(快速扫描)方案。使用学术测试案例对方法的准确性进行验证。一个真正的3D工业应用,即带有两个墩的引流管,已成功传播并通过特殊的边界条件进行了演示,以应对前向传播期间的入口和出口平面。此应用程序涉及传播具有凹形和凸形区域,尖角和局部切平面表面不连续性以及多重连接域的前部。版权所有(c)2007 John Wiley&Sons,Ltd.

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