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首页> 外文期刊>International Journal of Heat and Mass Transfer >Pressure corrections for the potential flow analysis of Kelvin-Helmholtz instability with heat and mass transfer
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Pressure corrections for the potential flow analysis of Kelvin-Helmholtz instability with heat and mass transfer

机译:通过传热和传质对Kelvin-Helmholtz不稳定性进行潜在流动分析的压力校正

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摘要

Pressure corrections for the viscous potential flow analysis of Kelvin-Helmholtz instability at the interface of two viscous fluids have been carried out when there is heat and mass transfer across the interface. Both fluids are taken as incompressible and viscous with different kinematic viscosities. In 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 for two fluids. It has been observed that heat and mass transfer has destabilizing effect on the stability of the system. A comparison between viscous potential flow (VPF) solution and viscous contribution to the pressure for potential flow (VCVPF) solution has been made and it is found that the effect of irrotational shearing stresses stabilizes the system.
机译:当热量和质量在界面上传递时,已经对两种粘性流体的界面处的Kelvin-Helmholtz不稳定性的粘性势流分析进行了压力校正。两种流体均被视为具有不同运动粘度的不可压缩和粘性。在粘性势流理论中,粘度通过法向应力平衡进入,并且完全忽略了剪切应力的影响。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在界面处切向应力的不连续性。已经观察到,传热和传质对系统的稳定性具有不稳定作用。比较了粘性势流(VPF)溶液和粘性对势流压力(VCVPF)溶液的贡献,发现旋切应力的作用使系统稳定。

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