A Method of Limiting Intermediate Values of Volume Fraction in Iterative Two-Fluid Computations

M. B. Carver
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引用次数: 18

Abstract

Multidimensional computational analysis of fluid flow is usually done by segmented iterative methods, as the equations sets generated are too large to permit simultaneous solution. Frequently the need arises to compute values for variables which must remain bounded for physical reasons. In two-phase computation, for example, the volume fraction is restricted to values between 0 and 1, but iterative procedures often return intermediate values which violate these bounds. It is fairly straightforward to prevent negative values, however no satisfactory method of imposing the upper limit has been published. A method of smoothly applying the limit in reversible fashion is outlined in this note.
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双流体迭代计算中体积分数中间值的限制方法
流体流动的多维计算分析通常采用分段迭代法进行,因为生成的方程组太大,无法同时求解。经常需要为由于物理原因必须保持有界的变量计算值。例如,在两阶段计算中,体积分数被限制在0到1之间的值,但迭代过程经常返回违反这些界限的中间值。它是相当直接的,以防止负值,但没有令人满意的方法施加上限已公布。本文概述了一种以可逆方式平滑地应用极限的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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