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首页> 外文期刊>Journal of Fluid Mechanics >Stability of lubricated viscous gravity currents. Part 1. Internal and frontal analyses and stabilisation by horizontal shear
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Stability of lubricated viscous gravity currents. Part 1. Internal and frontal analyses and stabilisation by horizontal shear

机译:润滑粘性重力电流的稳定性。 第1部分。水平剪切内部和正面分析和稳定

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A novel viscous fingering instability, involving a less viscous fluid intruding underneath a current of more viscous fluid, was recently observed in the experiments of Kowal & Worster (J. Fluid Mech., vol. 766, 2015, pp. 626–655). We examine the origin of the instability by asking whether the instability is an internal instability, arising from internal dynamics, or a frontal instability, arising from viscous intrusion. We find it is the latter and characterise the instability criterion in terms of viscosity difference or, equivalently, the jump in hydrostatic pressure gradient at the intrusion front. The mechanism of this instability is similar to, but contrasts with, the Saffman–Taylor instability, which occurs as a result of a jump in dynamic pressure gradient across the intrusion front. We focus on the limit in which the two viscous fluids are of equal density, in which a frontal singularity, arising at the intrusion, or lubrication, front, becomes a jump discontinuity, and perform a local analysis in an inner region near the lubrication front, which we match asymptotically to the far field. We also investigate the large-wavenumber stabilisation by transverse shear stresses in two dynamical regimes: a regime in which the wavelength of the perturbations is much smaller than the thickness of both layers of fluid, in which case the flow of the perturbations is resisted dominantly by horizontal shear stresses; and an intermediate regime, in which both vertical and horizontal shear stresses are important.
机译:最近在Kowal&Lamster的实验中观察到新颖的粘性手指不稳定性,涉及在更粘性流体的电流下侵入的粘性流体(J. Fluid Mech。,Vol.766,2015,PP。626-655)。我们通过询问不稳定性是内部不稳定性,从内部动态引起的内部不稳定或从粘性入侵引起的正面不稳定来检查不稳定性的原点。我们发现后者并在粘度差异方面表征不稳定标准,或者等效地,在入侵前方的静水压力梯度中跳跃。这种不稳定性的机制类似于,但与Saffman-taylor不稳定性相似,这是由于在入侵前沿的动态压力梯度跳跃而发生的。我们专注于两个粘性流体具有相等密度的极限,其中侵扰或润滑,前部产生的正面奇点成为跳跃不连续,并在润滑前靠近润滑前的内部区域进行局部分析,我们将渐近的远场匹配。我们还通过两个动态制度在横向剪切应力中调查大波浪稳定性:扰动波长比两层流体层的厚度小得多,在这种情况下,扰动的流动抵抗水平剪切应力;和一个中间方案,其中垂直和水平剪切应力都很重要。

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