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首页> 外文期刊>International Journal of Theoretical and Applied Multiscale Mechanics >Viscous potential flow analysis of capillary instability with radial electric field
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Viscous potential flow analysis of capillary instability with radial electric field

机译:径向电场对毛细管不稳定性的黏性势流分析

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摘要

A linear analysis of capillary instability with radial electric field is carried out using viscous potential flow theory. In viscous potential flow, the viscous term in the Navier-Stokes equation vanishes as vorticity is zero but viscosity is not zero. Viscosity enters through normal stress balance in viscous potential flow theory and the tangential stresses are not considered. The effect of gravity and free surface charges at the interface are neglected. A dispersion relation is derived for the case of radially imposed electric field and stability is discussed in terms of various parameters such as Ohnesorge number, permittivity ratio, etc. A condition for neutral stability is obtained and it is given in terms of critical value of electric field. It is observed that the radial electric field has dual effect on the stability of the system corresponding to the values of conductivities and permittivities of the fluids.
机译:使用粘性势流理论对径向电场对毛细管不稳定性的线性分析。在粘性势流中,当涡度为零但粘度不为零时,Navier-Stokes方程中的粘性项消失。粘性是通过粘性势流理论中的法向应力平衡进入的,因此不考虑切向应力。忽略了界面处的重力和自由表面电荷的影响。对于径向施加的电场,导出了色散关系,并根据各种参数(例如,欧姆数,介电常数等)讨论了稳定性。获得了中性稳定性的条件,并根据电的临界值给出了该条件领域。可以看出,径向电场对系统的稳定性具有双重影响,这与流体的电导率和介电常数的值相对应。

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