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Generalized linear stability of non-inertial rimming flow in a rotating horizontal cylinder

机译:旋转水平圆柱体中非惯性环流的广义线性稳定性

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The stability of a thin film of viscous liquid inside a horizontally rotating cylinder is studied using modal and non-modal analysis. The equation governing the film thickness is derived within lubrication approximation and up to first order in aspect ratio (average film thickness to radius of the cylinder). Effect of gravity, viscous stress and capillary pressure are considered in the model. Steady base profiles are computed in the parameter space of interest that are uniform in the axial direction. A linear stability analysis is performed on these base profiles to study their stability to axial perturbations. The destabilizing behavior of aspect ratio and surface tension is demonstrated which is attributed to capillary instability. The transient growth that gives maximum amplification of any initial disturbance and the pseudospectra of the stability operator are computed. These computations reveal weak effect of non-normality of the operator and the results of eigenvalue analysis are recovered after a brief transient period. Results from nonlinear simulations are also presented which also confirm the validity of the modal analysis for the flow considered in this study.
机译:使用模态和非模态分析研究了水平旋转圆柱体内粘性液体薄膜的稳定性。在润滑近似范围内,直至长宽比(平均膜厚与圆柱体半径之比)达到一阶时,得出控制膜厚的方程式。在模型中考虑了重力,粘性应力和毛细压力的影响。在感兴趣的参数空间中计算出稳定的基本轮廓,这些轮廓在轴向方向上是均匀的。对这些基础轮廓进行线性稳定性分析,以研究其对轴向扰动的稳定性。纵横比和表面张力的失稳行为被证明是由于毛细管的不稳定性。计算可以最大程度地放大任何初始扰动的瞬态增长和稳定性算符的伪谱。这些计算揭示了算子非正态性的弱影响,并且经过短暂的过渡期后,本征值分析的结果得以恢复。还提供了非线性仿真的结果,这些结果也证实了本研究中考虑的流动的模态分析的有效性。

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