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Numerical simulation of thermo-solutal-capillary migration of a dissolving drop in a cavity

机译:溶洞中溶滴的热-溶质-毛细管迁移数值模拟

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In the present paper the thermo-solutal-capillary migration of a dissolving liquid drop, composed by a binary mixture having a miscibility gap, injected in a closed cavity with differentially heated end walls, is studied. The main goal of the analysis is to clarify if and how the drop migration is affected by the dissolution process. The numerical code is based on a finite volume formulation. A level-set technique is used for describing the dynamics of the interface separating the different phases. A thermodynamic constraint fixes the concentration jump between the interface sides. This jump, together with that of the concentration normal derivatives, in turn defines the entity of the dissolution cross-flow through the interface and the interface velocity relative to the fluid. Since the jump singularity of normal derivatives cannot be easily mollified, while retaining the necessary accuracy, a scheme for the species equation is elaborated that allows sharp jumps and has subcell resolution. Steady migration speeds are determined after the start-up phase for different radii and temperature differences. The results will be used for the preparation of a sounding rocket space experiment.
机译:在本文中,研究了由具有可混溶间隙的二元混合物组成的溶解液滴的热-溶质-毛细管迁移,该二元混合物被注入到具有不同加热端壁的封闭腔中。分析的主要目的是阐明溶解过程是否以及如何影响液滴迁移。数值代码基于有限体积公式。水平集技术用于描述分离不同相位的界面的动力学。热力学约束固定了界面侧之间的浓度跃变。该跳跃与浓度正态导数的跳跃一起反过来定义了通过界面的溶出横流的实体以及相对于流体的界面速度。由于正态导数的跳跃奇异性不容易得到缓解,同时又保持必要的精度,因此,提出了一种物种方程式的方案,该方案允许急剧跳跃并具有子像元分辨率。在启动阶段之后,将针对不同的半径和温度差确定稳定的迁移速度。结果将用于准备探空火箭太空实验。

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