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ON THE NUMERICAL COMPUTATION FOR A ONE-DIMENSIONAL TWO-PHASE FLOW EQUATIONS

机译:在一维两相流程方程的数值计算上

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This paper describes the development of an approximate solution for the numerical computation for a one-dimensional two-phase flow equations. The equations include source terms which account for the relaxation of volume fraction and the interfacial fraction. A simple splitting numerical method, which handles separately the homogeneous and source terms problems, is used to compute approximations of the solutions. The homogeneous problem is solved numerically using Godunov methods of centred-type. This solution is then employed in the source terms problem to solve the general initial-value problem for the two-phase flow equations. Numerical results are presented demonstrating the complete approach. The results show that the interphase interaction through the source terms appearing in the equations.
机译:本文介绍了一维两相流程方程的数值计算的近似解的开发。等式包括源术语,其考虑放松体积分数和界面分数。一种简单的分割数值方法,它们分别处理均匀和源术语问题,用于计算解决方案的近似值。均匀的问题在数值上使用了富集的型号来解决了。然后在源术语问题中使用该解决方案以解决两相流方程的一般初始值问题。提出了数值结果,展示了完整的方法。结果表明,通过在方程中出现的源术语进行间间交互。

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