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IVA_5M numerical method for analysis of three-fluid multi-component flows in boundary-fitted multi-blocks

机译:IVA_5M数值方法分析边界拟合多块中的三流体多组分流

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摘要

This paper presents a numerical solution method for multi-phase flow analysis based on local volume and time averaged conservation equations. The emphasis of this development was to create a computer code architecture that absorb all the constitutive physics and functionality from the past 25 years development of the three fluid multi-component IVA-entropy concept for multi-phase flows into a boundary fitted orthogonal coordinate framework. Collocated discretization for the momentum equations is used followed by weighted averaging for the staggered grids resulting in analytical expressions for the normal velocities. Using the entropy concept analytical reduction to a pressure-velocity coupling is found. The performance of the method is demonstrated by comparison of two cases for which experimental results and numerical solution with the previous method are available. The agreement demonstrates the success of this development.
机译:本文提出了一种基于局部体积和时间平均守恒方程的多相流分析数值解法。这项开发的重点是创建一种计算机代码架构,该架构吸收了过去25年中三流体多组分IVA熵概念(用于多相流进入边界拟合正交坐标框架)的开发的所有本构物理和功能。动量方程采用并置离散化,然后对交错网格进行加权平均,得出法向速度的解析表达式。使用熵的概念,可以找到压力-速度耦合的解析还原。通过比较两种情况可以证明该方法的性能,在两种情况下都可以得到实验结果和数值解。该协议证明了这一发展的成功。

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