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A NUMERICAL MODELLING OF TWO-PHASE FLOW SYSTEM

机译:两相流系统的数值模拟

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摘要

A two-dimensional two-fluid model for two-phase flow system is proposed. This two-dimensional model is based on the hyperbolic one-dimensional model which is improved in its mathematical property by adopting the interfacial pressure jump terms in the momentum equations. Owing to this surface-tension effect incorporated in the momentum equations, eigenvalues of the equation system can be obtained analytically and they are proved to be all real. The eigenvectors can also be obtained analytically with linearly independent form. Further, they consist of phasic convective velocities, the sound speed of gas phase, and the sound speed of liquid phase. Consequently, the governing equation system is mathematically hyperbolic with reasonable characteristic speeds by which the upwind numerical method avails. Advantages and possibility of the present model are discussed in some detail.
机译:提出了两相流系统的二维两流体模型。该二维模型基于双曲一维模型,该模型通过在动量方程中采用界面压力跳跃项来改善其数学性质。由于在动量方程中包含了这种表面张力效应,因此可以解析地获得方程系统的特征值,并证明它们都是真实的。特征向量也可以解析地以线性独立的形式获得。此外,它们由相流对流速度,气相声速和液相声速组成。因此,控制方程系统在数学上是双曲线的,具有合理的特征速度,通过该特征速度可以使用迎风数值方法。将详细讨论本模型的优点和可能性。

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