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Viscous Potential Flow Analysis of Kelvin-Helmholtz Instability of a Cylindrical Flow with Heat and Mass Transfer

机译:传热传质圆柱流的开尔文-亥姆霍兹不稳定性的粘性势流分析

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摘要

A linear analysis of Kelvin-Helmholtz instability of a cylindrical interface has been carried out when there is heat and mass transfer across the interface, using viscous potential flow theory. Both fluids are considered as incompressible, viscous, and thermally conducting with different kinematic viscosities. Both axisymmetric as well as asymmetric disturbances are considered. Stability criterion is given by a critical value of relative velocity and stability is discussed theoretically as well as numerically. Various graphs with respect to physical parameters such as wave number, viscosity ratio, heat transfer coefficients, Reynolds number, etc., have been drawn and the effect of various parameters have been described. A comparison with the linear stability analysis of inviscid fluids (Lee [10]) has been made and it is observed that viscosity has a stabilizing effect on the stability of the system.
机译:使用粘性势流理论,当热量和质量在整个界面上传递时,已经对圆柱界面的Kelvin-Helmholtz不稳定性进行了线性分析。两种流体都被认为是不可压缩的,粘性的且具有不同运动粘度的导热性。轴对称和非对称扰动都被考虑。稳定性标准由相对速度的临界值给出,并且在理论上和数值上都讨论了稳定性。已经绘制了关于诸如波数,粘度比,传热系数,雷诺数等物理参数的各种图表,并且已经描述了各种参数的效果。与无粘性流体的线性稳定性分析(李[10])进行了比较,并且观察到粘度对系统的稳定性具有稳定作用。

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