首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Development of CIP-Reversed Weighted Residual Methoi for Water Flow with Free Water Surface and Arbitrary Topography (Algorithmic Improvements and Applications)
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Development of CIP-Reversed Weighted Residual Methoi for Water Flow with Free Water Surface and Arbitrary Topography (Algorithmic Improvements and Applications)

机译:开发具有自由水面和任意地形的水流的CIP反向加权残值法(算法改进和应用)

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摘要

A new numerical method for solving a flow with a free water surface and an arbitrary topography is described. The method is based on the constrained interpolation profile (CIP) scheme and the finite-element method (FEM). Although advection terms are accurately solved using the conventional CIP scheme, nonadvection terms are solved by FEM. To solve nonadvection terms, the reversed weighted residual method (RWRM) based on FEM is proposed. Using the RWRM, surface boundary conditions can be imposed on an arbitrarily curved water surface appropriately even if a simple Cartesian mesh system is employed and the surface is not fitted to the boundaries of a computational mesh. Furthermore, in this paper, an algorithmic improvement in the pressure acceleration phase is proposed. By using the improved numerical procedure, the computational cost due to a matrix-solution can be reduced efficiently. The improved CIP-RWRM solver is applied to 2-D Solutions to examine its efficiency and accuracy. The computational results show good agreements with the results calculated by other numerical methods for a multiphase flow.
机译:描述了一种求解具有自由水面和任意地形的流动的新数值方法。该方法基于约束内插轮廓(CIP)方案和有限元方法(FEM)。尽管使用常规CIP方案可以精确求解对流项,但通过FEM可以解决非对流项。为了解决非平流项,提出了基于有限元的反向加权残差法(RWRM)。使用RWRM,即使采用简单的笛卡尔网格系统并且该表面不适合计算网格的边界,也可以适当地在任意弯曲的水表面上施加表面边界条件。此外,本文提出了在压力加速阶段的算法改进。通过使用改进的数值程序,可以有效地降低由于矩阵求解而引起的计算成本。改进的CIP-RWRM求解器应用于2-D解决方案,以检查其效率和准确性。计算结果与通过其他数值方法计算的多相流结果具有良好的一致性。

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