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NUMERICAL SIMULATION OF GAS-LIQUID TWO-PHASE TURBULENT FLOWS THROUGH A CENTRIFUGAL IMPELLER

机译:通过离心叶轮的气液两相湍流的数值模拟

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On the basis of the theory of the two-fluid model for multiphase flows, the dispersed phase (gm phase in this study) in these flows, at dilute concentration conditions, can be assumed to be a pseudo-fluid, which occupies a certain fraction volume in the whole flow domain shared with the continuum phase, i.e., the real fluid phase. According to this assumption, the simulation of two-dimensional gas-liquid two-phase turbulent flows through a centrifugal pump impeller has been conducted by using the κ-ε-A{sub}p, turbulence model and the SIMPLEC algorithm at dilute gas concentration conditions. The present computer program has been developed to simulate three-dimensional two-phase turbulent flows.
机译:基于多相流动的双流体模型的理论,可以假设在这些流动中在这些流动中的分散相(本研究中的GM相),以稀释浓度条件是伪流体,其占据一定部分与连续阶段共享的整个流程域中的体积,即实际流体相位。根据该假设,通过使用κ-ε-a {sub} p,湍流模型和稀释气体浓度的简单算法进行了通过离心泵叶轮的二维气液两相湍流的模拟状况。已经开发了本计算机程序以模拟三维两相湍流流动。

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