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

机译:粘性校正,用于在传热和传质作用下圆柱流的开尔文-亥姆霍兹不稳定性的粘性势流分析

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We study the linear Kelvin-Helmholtz instability of the interface between two viscous and incompressible fluids, when the phases are enclosed between two horizontal cylindrical surfaces coaxial with the interface in presence of mass and heat transfer across the interface. Here we use an irrotational theory known as viscous correction for the viscous potential flow theory; in which the discontinuities in the irrotational tangential velocity and shear stress are eliminated in the global energy balance by taking viscous contributions to the irrotational pressure. Both asymmetric and axisymmetric disturbances have been studied and stability criterion is given in terms of a critical value of relative velocity. It has been shown that the irrotational viscous flow with viscous correction gives rise to exactly the same dispersion relation as obtained by the dissipation method in which the viscous effect is accounted for by evaluating viscous dissipation using the irrotational flow. It has been observed that heat and mass transfer has destabilizing effect while irrotational shearing stresses stabilize the system.
机译:我们研究了两种粘性和不可压缩流体之间的界面的线性开尔文-亥姆霍兹不稳定性,当相存在于与界面同轴的两个水平圆柱表面之间,并且存在质量和跨界面传热时,相发生了线性不稳定性。在这里,我们使用称为粘性修正的非旋转理论作为粘性势流理论。其中,通过对旋转压力施加粘性贡献,消除了旋转切向速度和切应力的不连续性,从而消除了整体能量平衡。研究了非对称和轴对称扰动,并根据相对速度的临界值给出了稳定性判据。已经表明,具有粘性校正的非旋转粘性流产生与通过耗散方法获得的色散关系完全相同的色散关系,在该耗散方法中,通过使用非旋转性流评估粘性耗散来说明粘性效应。已经观察到,传热和传质具有不稳定作用,而非旋转剪切应力使体系稳定。

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