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Nonlinear analysis of capillary instability with heat and mass transfer

机译:传热和传质对毛细管不稳定性的非线性分析

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The nonlinear capillary instability of the cylindrical interface between the vapor and liquid phases of a fluid is studied when there is heat and mass transfer across the interface, using viscous potential flow theory. The fluids are considered to be viscous and incompressible with different kinematic viscosities. Both asymmetric and axisymmetric disturbances are considered. The analysis is based on the method of multiple scale perturbation and the nonlinear stability is governed by first-order nonlinear partial differential equation. The stability conditions are obtained and discussed theoretically as well as numerically. Regions of stability and instability have been shown graphically indicating the effect of various parameters. It has been observed that the heat and mass transfer has stabilizing effect on the stability of the system in the nonlinear analysis for both axisymmetric as well as asymmetric disturbances.
机译:使用粘性势流理论研究了当流体在气相和液相之间进行传热和传质时,圆柱状界面在流体中的非线性毛细管不稳定性。流体在不同的运动粘度下被认为是粘性的和不可压缩的。同时考虑了非对称和轴对称扰动。该分析基于多尺度摄动法,非线性稳定性由一阶非线性偏微分方程控制。获得了稳定性条件,并在理论上和数值上进行了讨论。已经以图形方式显示了稳定性和不稳定性区域,指示了各种参数的影响。已经发现,在轴对称和非对称扰动的非线性分析中,传热和传质对系统的稳定性具有稳定作用。

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