论文标题

风和重力降低

Wind- and Gravity-Forced Drop Depinning

论文作者

White, Edward B., Schmucker, Jason A.

论文摘要

液体由于表面张力而粘附在固体表面上,但由于风或重力强迫,液体可能会沿表面并沿表面奔跑。这项工作开发了一个简单的机械模型,用于通过重力和高雷诺德的风力强迫和测试,该模型使用水滴在粗糙的铝表面上进行模型。在非分类的表面上,以恒定关键的Weber数字下降Depin,$ w \!在倾斜的表面上,$ w \!线性斜率在以上和低于$ w \!接触线形状和下降轮廓形状是在繁殖条件下测量的,但不能充分解释两种强迫制度之间的差异。

Liquid drops adhere to solid surfaces due to surface tension but can depin and run back along the surface due to wind or gravity forcing. This work develops a simple mechanistic model for depinning by combined gravity and high-Reynolds-number wind forcing and tests that model using water drops on a roughened aluminum surface. On non-inclined surfaces, drops depin at a constant critical Weber number, $W\!e_{\mathrm{crit}}=7.9$, for the present wettability conditions. On inclined surfaces, $W\!e_{\mathrm{crit}}$ decreases linearly with the product of the Bond number and the width-to-height aspect ratio of the unforced drop. The linear slope is different in distinct wind- and gravity-dominated forcing regimes above and below $W\!e_{\mathrm{crit}}=4$. Contact line shapes and drop profile shapes are measured at depinning conditions but do not adequately explain the differences between the two forcing regimes.

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