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首页> 外文期刊>Journal of engineering mathematics >Influence of gravity on the spreading of two-dimensional droplets over topographical substrates
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Influence of gravity on the spreading of two-dimensional droplets over topographical substrates

机译:重力对二维液滴在地形基底上扩散的影响

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摘要

The influence of gravity on the motion of a two-dimensional droplet of a partially wetting fluid over a topographical substrate is considered. The spreading dynamics is modeled under the assumption of small contact angles in which case the long-wave expansion in the Stokes-flow regime can be employed to derive a single equation for the evolution of the droplet thickness. The relative importance of gravity to capillarity in the equation is measured by the Bond number which is taken to be low to moderate. In this regime, the flow in the vicinity of the contact line is matched asymptotically through a singular perturbation approach to the flow in the bulk of the droplet to yield a set of coupled integrodifferential equations for the location of the two droplet fronts. The matching procedure is verified through direct comparisons with numerical solutions to the full problem. The equations obtained by asymptotic matching are analyzed in the phase plane and the effects of Bond number on the droplet dynamics and its equilibria are scrutinized.
机译:考虑重力对局部润湿的流体的二维液滴在地形衬底上的运动的影响。在小接触角的假设下对扩散动力学进行建模,在这种情况下,可以采用斯托克斯流态下的长波扩展来导出液滴厚度演变的单个方程。方程式中重力对毛细管现象的相对重要性通过键数来衡量,该键数应低至中等。在这种情况下,接触线附近的流动通过奇异摄动方法渐近地与液滴的大部分流动进行渐进匹配,以生成一组耦合的积分微分方程,用于两个液滴前沿的位置。通过直接比较与整个问题的数值解,可以验证匹配过程。在相平面上分析了通过渐近匹配获得的方程,并研究了键数对液滴动力学及其平衡的影响。

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