The moment-of-fluid method (MOF) is known as an extension of the volume-of-fluid method with piecewise linear interface construction (VOF-PLIC). In this study, several directional splitting advection algorithms are extended from the VOF-PLIC method to the MOF method. Those methods, along with some existing directional splitting algorithms, are presented in detail, especially on the geometrical and non-geometrical nature of the advection algorithm. Besides, we also proposed a simple and efficient analytic form to calculate the volume and centroid of the intersection polyhedron in 3D. Several numerical tests, including both 2D and 3D tests, are carried out to investigate mass conservation and geometrical error. Numerical results suggest that the mixed EI and LE scheme (EILE2D) \citep{aulisa_geometrical_2003} has the best overall performance in 2D and Weymouth and Yue's scheme (WY) has the best overall performance in 3D.
翻译:浮流瞬间法(MOF)被称为“浮流瞬间法”的延伸,以片断线性界面构造(VOF-PLIC)为工具。在本研究中,将几个方向分解算法从VOF-PLIC法扩大到MOF法。这些方法以及一些现有的方向分解算法都详细介绍,特别是关于对流算法的几何和非几何性质。此外,我们还提出了一个简单有效的分析形式,用以计算3D中交汇多环体的体积和中间体。一些数字测试,包括2D和3D测试,用于调查质量保护和几何误。数字结果表明,混合的EI和LE(ELE2D)\citepulisa_geologyal_2003}在2D和Wymouth和Yue计划(WYYY)的总体性能最佳。