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Stability of natural convection in a vertical dielectric couple stress fluid layer in the presence of a horizontal AC electric field

机译:在水平交流电场作用下,垂直介电耦合应力流体层中自然对流的稳定性

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摘要

The combined effect of couple stresses and a uniform horizontal AC electric field on the stability of buoyancy-driven parallel shear flow of a vertical dielectric fluid between vertical surfaces maintained at constant but different temperatures is investigated. Applying linear stability theory, stability equations are derived and solved numerically using the Galerkin method with wave speed as the eigenvalue. The critical Grashof number G_c, the critical wave number a_c and the critical wave speed c_c are computed for wide ranges of couple stress parameter Λ_c, AC electric Rayleigh number R_(ea) and the Prandtl number Pr. Based on these parameters, the stability characteristics of the system are discussed in detail. The value of Prandtl number at which the transition from stationary to travelling-wave mode takes place is found to be independent of AC electric Rayleigh number even in the presence of couple stresses but increases significantly with increasing Λ_c. Moreover, the effect of increasing R_(ea) is to instill instability, while the couple stress parameter shows destabilizing effect in the stationary mode but it exhibits a dual behavior if the instability is via travelling-wave mode. The streamlines and isotherms presented demonstrate the development of complex dynamics at the critical state.
机译:研究了耦合应力和均匀的水平交流电场对在恒定但不同温度下垂直表面之间的垂直介电液的浮力驱动的平行剪切流的稳定性的综合影响。应用线性稳定性理论,以波速为特征值的Galerkin方法推导并求解了稳定性方程。对于耦合应力参数Λ_c,交流电瑞利数R_(ea)和普朗特数Pr的较宽范围,计算了格拉索夫临界值G_c,临界波数a_c和临界波速c_c。基于这些参数,详细讨论了系统的稳定性特征。发现即使在存在偶数应力的情况下,从静止波模式转换为行波模式的普朗特数的值也与交流电瑞利数无关,但是随着Λ_c的增加而显着增加。此外,增加R_(ea)的作用是灌输不稳定性,而耦合应力参数在固定模式下显示出稳定作用,但如果不稳定性是通过行波模式,则表现出双重行为。呈现的流线和等温线证明了临界状态下复杂动力学的发展。

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