Numerical Simulation of Two-Phase Water-Oil Flow in a Horizontal Pipe Using the Smoothed Particle Hydrodynamics Method

Naim Carvalho, Grazione De Souza Boy, Helio Pedro Amaral Souto
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Abstract

In this work, the numerical code DualPhysics, based on the Lagrangian particle and mesh free method Smoothed Particle Hydrodynamics, has been employed to solve the slightly compressible isothermal two-phase water-oil flow. The continuity and momentum equations are solved, and we used the modified Tait equation of state to determine the pressure. To validate the numerical code, we solved the modified Couette flow of two fluids. As a practical case, we solved the isothermal and two-dimensional two-phase water-oil flow. The mixing of the fluids occurs after passing through a 45 degree Y junction placed at the entrance of the horizontal pipeline. Results showed the potential for using the numerical code, although some modifications and alterations are still necessary to solve practical problems.
用光滑粒子流体力学方法数值模拟水平管内两相水-油流动
本文基于拉格朗日粒子和无网格光滑粒子流体力学方法,采用数值程序DualPhysics求解了微可压缩等温两相水-油流动。求解了连续方程和动量方程,利用修正的Tait状态方程确定了压力。为了验证数值代码,我们求解了两种流体的修正Couette流。作为实际算例,我们求解了等温二维两相水-油流动。流体的混合发生在通过放置在水平管道入口的45度Y结后。结果表明,尽管在解决实际问题时仍需要进行一些修改和改变,但使用数字代码具有潜力。
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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