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首页> 外文期刊>Journal of Non-Equilibrium Thermodynamics >Instability of two-phase mixing layers: analysis of exact and approximate base flows from boundary layer theory
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Instability of two-phase mixing layers: analysis of exact and approximate base flows from boundary layer theory

机译:两相混合层的不稳定性:分析边界层理论的精确和近似基础流量

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摘要

The utility of composite error-function velocity profiles for the modeling of gas-liquid shear layers is examined by comparing temporal stability results from such approximate error-function profiles with results from the exact velocity profiles based on the two-fluid boundary layer equations. The stability analysis is restricted to two-dimensional perturbations. The two-fluid boundary layer equations are solved numerically using a shooting method in each fluid layer. The composite error-function profile is constructed by matching displacement thicknesses with the exact solution. With given fluid properties, the displacement thicknesses depend on the asymptotic velocity ratio of the liquid and gas stream in the laboratory frame. For different sets of fluid properties, the maximum growth rates of the Kelvin-Helmholtz instability show good numerical agreement between the exact and the approximate velocity profiles, especially when the asymptotic velocities of the gas and liquid phase are close.
机译:通过基于双流体边界层方程的精确速度分布的结果,通过比较来自这种近似误差函数分布的时间稳定性的时间稳定性来检查用于燃气 - 液剪切层建模的复合误差函数速度分布的效用。稳定性分析仅限于二维扰动。双流体边界层方程在每种流体层中使用拍摄方法进行数字地解决。通过将位移厚度与精确解决方案匹配来构造复合误差功能配置文件。通过给定流体性质,位移厚度取决于实验室框架中液体和气流的渐近速度比。对于不同的流体性质,Kelvin-Helmholtz不稳定性的最大生长速率在精确和近似速度型材之间显示出良好的数值一致性,特别是当气体和液相的渐近速度接近时。

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