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Interfacial thermocapillary pressure of an accelerated droplet in microchannels: Part I. Fluid flow formulation

机译:微通道中加速液滴的界面热毛细压力:第一部分。流体流动公式

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Fluid flow and thermocapillary heat transfer near a droplet/air interface in microchannels is studied analytically and numerically in this set of two companion papers. Thermocapillary forces generate a pressure difference across the droplet, which drives two symmetric re-circulation cells in the upper and lower half-portions of the droplet. The numerical formulation uses a sliding grid for the accelerating droplet, as well as an expanding/contracting grid in the gas region and an adaptive grid in the substrate below the closed-end microchan-nel. In contrast to past studies with a uniform interfacial pressure, this paper accommodates a varying interfacial pressure along the receding edge of the droplet.
机译:在这套两篇附带的论文中,通过分析和数值研究了微通道中液滴/空气界面附近的流体流动和热毛细管传热。热毛细作用力会在液滴上产生压力差,从而驱动液滴上半部分和下半部分的两个对称的再循环单元。数值公式使用了一个用于加速液滴的滑动网格,以及在气体区域中的膨胀/收缩网格,以及在封闭端微通道下方的基板中的自适应网格。与以往采用均匀界面压力的研究相比,本文沿液滴的后缘适应了变化的界面压力。

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