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Viscous corrections for the viscous potential flow analysis of electrohydrodynamic Kelvin-Helmholtz instability with heat and mass transfer

机译:电热动力学开尔文-亥姆霍兹不稳定性与传热和传质的粘性势流分析的粘性校正

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摘要

The linear analysis of Kelvin-Helmholtz instability of the interface between two viscous fluids in the presence of horizontal electric field has been carried out when there is heat and mass transfer across the interface. The viscous correction for the viscous potential flow theory has been used for the investigation. Both fluids are taken as incompressible, viscous and dielectric with different kinematic viscosities and different permittivities. In the viscous potential flow theory, viscosity enters through normal stress balance and effect of shearing stresses is completely neglected. We include the viscous pressure in the normal stress balance along with irrotational pressure and it is assumed that this viscous pressure will resolve the discontinuity of the tangential stresses at the interface of two fluids. A dispersion relation has been derived and stability is discussed theoretically as well as numerically. Stability criterion is given in terms of a critical value of relative velocity of two fluids as well as critical value of the applied electric field. It has been observed that tangential electric field and vapor fraction both have stabilizing effect on the stability of the system while heat and mass transfer destabilizes the interface. Also, it has been found that the effect of irrotational shearing stresses stabilizes the system.
机译:当存在热和质量传递时,已经在存在水平电场的情况下对两种粘性流体之间的界面的Kelvin-Helmholtz不稳定性进行了线性分析。用于粘性势流理论的粘性校正已用于研究。两种流体均被视为不可压缩的,粘性的和介电的,具有不同的运动粘度和不同的介电常数。在粘性势流理论中,粘度通过法向应力平衡进入,而剪切应力的影响则完全被忽略了。我们将粘性压力与非旋转压力一起包括在法向应力平衡中,并且假定该粘性压力将解决两种流体界面处切向应力的不连续性。得出了色散关系,并从理论和数值上讨论了稳定性。根据两种流体的相对速度的临界值以及所施加电场的临界值来给出稳定性标准。已经观察到,切向电场和蒸汽分数都对系统的稳定性具有稳定作用,而热量和质量传递使界面不稳定。而且,已经发现无旋转剪切应力的作用使系统稳定。

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