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On the stability of a one-dimensional two-fluid model

机译:一维两流体模型的稳定性

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An analysis on the stability of the governing differential equations for area averaged one-dimensional two-fluid model is presented. The momentum flux parameters for gas and liquid are introduced to incorporate the effect of void fraction profiles and velocity profiles. The stability of the governing differential equations is determined in terms of gas and liquid momentum flux parameters. It is shown that the two-fluid model is well posed with certain restrictions on the liquid and gas momentum flux parameters. Simplified flow configurations for bubbly flow, slug flow, and annular flow are constructed to test the validity of proposed stability criteria. The momentum flux parameters are calculated for these flow configurations by assuming a power-law profile for both velocity and void fraction. Existing correlation for volumetric distribution parameter C_o is used. By employing simplified velocity profiles, the void fraction profile is determined from C_o correlation. It is found that the void fraction is wall-peaked at low void fraction and it becomes center-peaked as the void fraction increases. A simplified annular flow is also constructed. With these flow configurations, the momentum flux parameters are determined. It is shown that the calculated momentum flux parameters are located in the stable region above the analytically determined stability boundary. The analyses results indicate that the use of momentum flux parameter is promising, since they reflect flow structure and help to stabilize the governing differential equations.
机译:提出了面积平均一维两流体模型控制微分方程稳定性的分析。引入了用于气体和液体的动量通量参数,以合并空隙分数分布和速度分布的影响。控制微分方程的稳定性取决于气体和液体动量通量参数。结果表明,该双流体模型对液体和气体动量通量参数具有一定的限制。构造了气泡流,团状流和环形流的简化流结构,以测试所提出的稳定性标准的有效性。通过假设速度和空隙率的幂律分布,可以为这些流动配置计算动量通量参数。使用体积分布参数C_o的现有相关性。通过采用简化的速度曲线,由C 0相关确定空隙分数曲线。发现空隙率在低空隙率时在壁峰处,并且随着空隙率增加而变为中心峰。还构造了简化的环形流。通过这些流动配置,可以确定动量通量参数。结果表明,计算出的动量通量参数位于解析确定的稳定边界上方的稳定区域。分析结果表明,动量通量参数的使用是有希望的,因为它们反映了流动结构并有助于稳定控制微分方程。

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