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Electrohydrodynamic Instability of Two Thin Viscous Leaky Dielectric Fluid Films in a Porous Medium

机译:多孔介质中两层粘性泄漏电介质薄膜的电流体动力学不稳定性

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The effect of an applied electric field on the stability of the interface between two thin viscous leaky dielectric fluid films in porous medium is analyzed in the long-wave limit. A systematic asymptotic expansion is employed to derive coupled nonlinear evolution equations of the interface and interfacial free charge distribution. The linearized stability of these equations is determined and the effects of various parameters are examined in detail. For perfect-perfect dielectrics, the various parameters affect only for small wavenumber values. For dielectrics, the various parameters affect only for small wavenumber values. For effect for small wavenumbers, and a stabilizing effect afterwards, and for high wavenumber values for the other physical parameters, new regions of stability or instability appear. For leaky-leaky dielectrics, the conductivity of upper fluid has a destabilizing effect for small or high wavenumbers, while it has a dual role on the stability of the system in a wavenumber range between them. The effects of all other physical parameters behave in the same manner as in the case of perfect-leaky dielectrics, except that in the later case, the stability or instability regions occur more faster than the corresponding case of leaky-leaky dielectrics.
机译:在长波范围内,分析了施加的电场对多孔介质中两个薄粘性泄漏介电流体薄膜之间的界面稳定性的影响。利用系统的渐近展开来导出界面和界面自由电荷分布的耦合非线性演化方程。确定了这些方程的线性稳定性,并详细研究了各种参数的影响。对于完美的电介质,各种参数仅对小波数值有效。对于电介质,各种参数仅对小波数值有效。为了对小波数产生影响,并且随后具有稳定作用,对于其他物理参数的高波数值,出现新的稳定性或不稳定性区域。对于漏泄电介质,上层流体的电导率对于小波数或高波数都具有去稳定作用,而在两者之间的波数范围内,它对系统的稳定性具有双重作用。所有其他物理参数的影响均与完全漏电介质的情况相同,只是在后一种情况下,相比漏电介质的情况,稳定或不稳定性区域的出现速度更快。

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