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首页> 外文期刊>European Physical Journal Plus >Compressibility effects on the Kelvin-Helmholtz and Rayleigh-Taylor instabilities between two immiscible fluids flowing through a porous medium
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Compressibility effects on the Kelvin-Helmholtz and Rayleigh-Taylor instabilities between two immiscible fluids flowing through a porous medium

机译:在穿过多孔介质的两个不混溶的流体之间的Kelvin-Helmholtz和Rayleigh-Taylor造型的可压缩性效应

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摘要

We examine analytically the Kelvin-Helmholtz stability of two compressible superposed viscous fluids flowing through porous medium. The dispersion relationship is derived and evaluated for special cases adopting the normal mode procedure. The results have been compared with the statics (RTI) and incompressible cases. It is shown that the behaviour of KHI tends to RTI behaviour if the difference in the initial velocity of two fluids (U-2-U-1) is small. For incompressible KHI, the kinematic viscosity induces stability. The permeability has also stabilizing role on the perturbation's growth, but the growth rate increases as permeability increases. The porosity has destabilizing effect on KHI for the case of small values of porosity, while for large values, it has stabilizing effect. The compressibility parameters (the specific heats ratio and pressure at equilibrium state) have stabilizing role on KHI. The behaviour of normalized growth rate of a compressible KHI model with the porosity effect in most cases capitulates to effect of porosity.
机译:我们通过多孔介质进行了分析地检查了两个可压缩的叠加粘液流体的Kelvin-Helmholtz稳定性。派生分散关系和评估采用正常模式过程的特殊情况。将结果与估计(RTI)和不可压缩案例进行了比较。结果表明,如果两个流体(U-2-U-1)的初始速度差异很小,则khi的行为趋于RTI行为。对于不可压缩的KHI,运动粘度诱导稳定性。渗透性也稳定在扰动的生长上的作用,但增长率随着渗透性的增加而增加。孔隙率对孔隙率小的情况具有稳定的效果,而对于大的值,它具有稳定效果。压缩性参数(特定的热量和平衡状态下的压力)在khi具有稳定作用。大多数情况下孔隙率效应的可压缩KHI模型规范化生长速率的行为。

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