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首页> 外文期刊>Journal of engineering mathematics >Inviscid instability of an unbounded shear layer: effect of surface tension, density and velocity profile
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Inviscid instability of an unbounded shear layer: effect of surface tension, density and velocity profile

机译:无边界剪切层的无形不稳定性:表面张力,密度和速度分布的影响

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摘要

The inviscid temporal stability analysis of an unbounded shear layer of two fluids of different density is investigated. Two background velocity profiles are considered: the piecewise-linear profile and the more realistic error-function profile. The disturbance kinetic energy is analyzed to physically understand the mechanism that causes instability. The surface-tension effect is investigated extensively. Surface tension is found to destabilize the neutrally stable waves that exist when surface tension is absent. This surface-tension-induced unstable mode is generally weaker than the dominant mode and extremely less evident when the density and/or viscosity difference increases. Short-wavelength instability is observed with a background viscosity jump at the interface. A comparison between the two velocity profiles is presented. The piecewise-linear profile does not match the more realistic results obtained with the error-function profile in the short wavelength range, especially in nonhomogeneous shear-layer flows; however, the phase-speed results are in a good agreement with those of the error-function profile.
机译:研究了两种不同密度的流体的无边界剪切层的无形时间稳定性分析。考虑了两个背景速度曲线:分段线性曲线和更实际的误差函数曲线。分析扰动动能以从物理上理解引起不稳定的机理。表面张力效应已被广泛研究。发现表面张力会使缺乏表面张力时存在的中性稳定波不稳定。当密度和/或粘度差增加时,这种由表面张力引起的不稳定模式通常要弱于主导模式,并且明显不那么明显。观察到短波长不稳定性,并且界面处的背景粘度跃升。给出了两个速度曲线之间的比较。在短波长范围内,尤其是在非均质剪切层流中,分段线性分布与通过误差函数分布获得的更实际的结果不匹配。但是,相速度结果与误差函数曲线的结果相吻合。

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