Numerical study of the relative equilibrium of a droplet with a simply connected free surface on a rotating plane

Yauheni V. Audzeichyk, P. Konon
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Abstract

The paper investigates the shapes of relative rest of limited layers of liquid on a rotating horizontal plane in the field of gravity in the presence of surface tension. The layers under consideration have a simply connected free surface and rotational symmetry with respect to the line of action of the angular velocity. The mathematical formulation of this problem is reduced to a system of first-order ordinary differential equations with boundary and integral closing conditions. A new algorithm for the numerical solution of the resulting system is proposed, the influence of various dimensionless parameters on the characteristics of equilibrium droplet shapes is studied, and criteria for the existence of such shapes are determined. The paper is of theoretical interest, since the problem under consideration is one of the fundamental ones in the research of capillary phenomena. The developed numerical scheme can also be applied in a wider class of differential equations. The results of the article can be used in practical tasks related to coating, fiber and powder production by the centrifugal-disk method.
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旋转平面上具有单连通自由表面的液滴相对平衡的数值研究
本文研究了在重力场中存在表面张力时旋转水平面上有限液体层的相对静止形状。所考虑的层具有单连通的自由表面和相对于角速度作用线的旋转对称。将该问题的数学形式简化为具有边界和积分闭合条件的一阶常微分方程组。提出了一种新的数值解算法,研究了各种无量纲参数对平衡液滴形状特征的影响,并确定了平衡液滴形状存在的判据。这篇论文具有理论意义,因为所考虑的问题是毛细现象研究中的一个基本问题。所开发的数值格式也可以应用于更广泛的微分方程。本文的研究结果可用于离心圆盘法生产涂料、纤维和粉末的实际工作中。
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CiteScore
0.50
自引率
0.00%
发文量
21
审稿时长
16 weeks
期刊最新文献
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