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首页> 外文期刊>Computers & mathematics with applications >A paraboloid fitting technique for calculating curvature from piecewise-linear interface reconstructions on 3D unstructured meshes
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A paraboloid fitting technique for calculating curvature from piecewise-linear interface reconstructions on 3D unstructured meshes

机译:一种抛物面拟合技术,用于计算3D非结构化网格上的分段线性界面重建曲率

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摘要

We present a novel method for calculating interface curvature on 3D unstructured meshes from piecewise-linear interface reconstructions typically generated in the volume of fluid method. Interface curvature is a necessary quantity to calculate in order to model surface tension driven flow. Curvature needs only to be computed in cells containing an interface. The approach requires a stencil containing only neighbors sharing a node with a target cell, and calculates curvature from a least-squares paraboloid fit to the interface reconstructions. This involves solving a 6 x 6 symmetric linear system in each mixed cell. We present verification tests where we calculate the curvature of a sphere, an ellipsoid, and a sinusoid in a 3D domain on regular Cartesian meshes, distorted hex meshes, and tetrahedral meshes. For both regular and unstructured meshes, we find in all cases the paraboloid fitting method for curvature to converge between first and second order with grid refinement. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们提出了一种新的方法,用于计算3D非结构化网格上的界面曲率从通常在流体方法的体积中产生的分段 - 线性界面重建。接口曲率是计算表面张力驱动流动的必要量。仅需要在包含接口的单元中计算曲率。该方法需要一个仅包含与目标小区共享节点的邻居的模板,并从最小二乘抛物面适合接口重建来计算曲率。这涉及在每个混合电池中求解6×6对称线性系统。我们呈现验证测试,在常规笛卡尔网格上的3D域中的球体,椭圆体和正弦曲线,扭曲的六角形网眼和四面体网格中的3D域中的曲率。对于常规和非结构化的网格,我们发现所有情况都在所有情况下发现抛物面拟合方法,用于曲率与栅格细化的第一和二阶之间收敛。 (c)2018年elestvier有限公司保留所有权利。

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