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MESOSCOPIC ANALYSIS OF DROPLET SPREADING BEHAVIOUR ON WETTED SURFACE FOR LOW VISCOSITY RATIO

机译:低粘度比湿润表面液滴扩散行为的介观分析

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In the present study, the interfacial dynamics of displacement of three dimensional spherical droplet on a rectangular microchannel wall considering wetting effects are studied. The two-phase lattice Boltzmann Shan-Chen model is used to explore the physics. The main focus of this study is to analyse the effect of wettability, low viscosity ratio and capillary number on the displacement of spherical droplet subjected to gravitational force. The hydrophobic and hydrophilic nature of wettabilities on wall surface are considered to study with capillary number, Ca=0.1, 0.35 and 0.66 and viscosity ratio, M ≤ 1. The results are presented in the form of temporal evolution of wetted length and wetted area for combined viscosity ratios and wettability scenario. In the present study, it is observed that in dynamic droplet displacement, the viscosity ratio and capillary number play a significant role. It is found that as viscosity ratio increases, both the wetted area and the wetted length increase and decrease in the case of hydrophilic and hydrophobic wettable wall respectively.
机译:在本研究中,研究了考虑润湿效应的矩形微通道壁上三维球面液滴位移的界面动态。两相晶格Boltzmann Shan-Chen模型用于探索物理学。本研究的主要重点是分析润湿性,低粘度比和毛细数量对重力的球形液滴的效果。墙面上的疏水性和亲水性的性质被认为是用毛细数,Ca = 0.1,0.35和0.66和粘度比的研究,M≤1.结果以湿润长度和湿润区域的时间演变的形式提出组合粘度比和润湿性情景。在本研究中,观察到,在动态液滴移位中,粘度比和毛细管数发挥着重要作用。发现,随着粘度比增加,湿润的区域和湿润的长度分别在亲水性和疏水性可湿性壁的情况下增加和减少。

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