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A numerical study of a liquid drop solidifying on a vertical cold wall

机译:垂直冷壁上液滴凝固的数值研究

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Solidification of a liquid drop on a vertical wall is a typical phase change heat transfer problem that exists widely in natural and engineering situations. In this study, we present the fully resolved two-dimensional simulations of such a problem by a front-tracking/finite difference method. Because of gravity, the liquid drop assumed stick to the cold wall shifts to the bottom during solidification. Numerical results show that the conical tip at the solidified drop top is still available with the presence of volume expansion, but the tip location is shifted downward, resulting in an asymmetric drop after complete solidification. The tip shift, height and shape of the solidified drop are investigated under the influences of various parameters such as the Prandtl number Pr, the Stefan number St, the Bond number, the Ohnesorge number Oh, and the density ratio of the solid to liquid phases rho(si). We also consider the effects of the growth angle phi(gr) (at the triple point) and the initial drop shape (in terms of the contact angle phi(0)) on the solidification process. The most influent parameter is Bo whose increase in the range of 0.1-3.16 makes the drop more deformed with the tip shift linearly increasing with Bo. The tip shift also increases with an increase in phi(0). However, increasing Oh (from 0.001 to 0.316), St (from 0.01 to 1.0) or rho(si) (from 0.8 to 1.2) leads to a decrease in the tip shift. Concerning time for completing solidification, an increase in Bo, phi(gr) or phi(0) or a decrease in St, or rho(si) results in an increase in the solidification time. The effects of these parameters on the drop height are also investigated. (C) 2018 Elsevier Ltd. All rights reserved.
机译:垂直壁上液滴的凝固是典型的相变传热问题,在自然和工程情况下普遍存在。在这项研究中,我们通过前跟踪/有限差分方法介绍了该问题的完全解决的二维模拟。由于重力的作用,假定在凝固过程中粘在冷壁上的液滴会移至底部。数值结果表明,凝固的液滴顶部的圆锥形尖端在存在体积膨胀的情况下仍然可用,但是尖端位置向下移动,导致完全凝固后的液滴不对称。在各种参数的影响下研究凝固液滴的尖端移动,高度和形状,这些参数包括普朗特数Pr,斯特凡数St,键数,欧姆尼数Oh和固相与液相的密度比rho(si)。我们还考虑了生长角phi(gr)(在三点)和初始液滴形状(就接触角phi(0)而言)对凝固过程的影响。最有影响力的参数是Bo,其值在0.1-3.16的范围内增加,使液滴的变形更大,并且尖端偏移随Bo线性增加。尖端偏移也随着phi(0)的增加而增加。但是,增加Oh(从0.001到0.316),St(从0.01到1.0)或rho(si)(从0.8到1.2)会导致尖端偏移降低。关于完成固化的时间,Bo,phi(gr)或phi(0)的增加或St或rho(si)的减少导致固化时间的增加。还研究了这些参数对跌落高度的影响。 (C)2018 Elsevier Ltd.保留所有权利。

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