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Nonlinear stability analysis of thin condensate falling film inside a rotating vertical cylinder

机译:旋转立式圆筒内凝结水降薄膜的非线性稳定性分析

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摘要

This paper investigates the stability of thin condensate film flowing down on the inner surface of a rotating vertical cylinder by means of long wave perturbation method in a two-step procedure. In the first step, the normal mode method is used to characterize the linear behavior. In the second step, an elaborated nonlinear film flow model is solved by using the method of multiple scales to characterize flow behavior at various states of sub-critical stability, sub-critical instability, supercritical stability, and supercritical explosion. The procedure follows the previous research [C.I. Chen, C.K. Chen, Y.T. Yang, Int. J. Heat Mass Transfer 47 (2004) 1937-1951] which concerns with the thin condensate falling film on the outer surface of a rotating vertical cylinder. The modeling results indicate that by increasing the rotation speed, Ω, and the radius of cylinder, R, the condensate film becomes more stable, which is totally opposite to the previous study.
机译:本文通过长波摄动法以两步法研究了向下旋转的垂直圆柱体内表面上向下流动的凝结水薄膜的稳定性。第一步,使用正常模式方法表征线性行为。第二步,使用多尺度方法求解精细的非线性薄膜流动模型,以表征亚临界稳定性,亚临界不稳定,超临界稳定性和超临界爆炸在各种状态下的流动行为。该程序遵循先前的研究[C.I.陈正权陈永涛杨,国际[J.热质传递47(2004)1937-1951]涉及旋转的垂直圆筒的外表面上的冷凝物下降薄​​膜。建模结果表明,通过增加旋转速度Ω和汽缸半径R,凝结膜变得更加稳定,这与之前的研究完全相反。

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