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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Unified framework for mapping shape and stability of pendant drops including the effect of contact angle hysteresis
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Unified framework for mapping shape and stability of pendant drops including the effect of contact angle hysteresis

机译:统一框架造影形状和吊坠稳定性的框架,包括接触角滞后的效果

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Solution of the Young-Laplace equation for fluid-fluid interface shapes is crucial in several applications related to colloids, capillarity, and surfaces. Despite significant progress in analysis and computation, the solution framework in literature is quite sparse with different norms for non-dimensionalisation and often limited to simplistic boundary conditions. These problems can be overcome and a unified solution framework can be developed if the relevant parameters are non-dimensionalised with respect to the capillary length, and collapsed onto a single graphical chart in the form of axes and contours. Here we use vector parameterized cubic splines to represent axisymmetric droplet profiles, which are then evolved quasi-statically to get to the equilibrium shapes using a novel thermodynamic free energy minimization-based algorithm. The generated dataset for a wide range of geometric and surface parameters is validated and then compiled in the form of a graphical chart. The chart traces the complete profile of axisymmetric pendant drops, predicts their evolution and stability on any surface, all without running any computer simulation. Most importantly, the contact angle contours on this chart offer the capability to incorporate the effect of contact angle hysteresis, a situation which is practically relevant, but has yet not been modelled.
机译:用于流体 - 流体界面形状的幼拉方程的溶液在与胶体,毛细管和表面有关的若干应用中至关重要。尽管在分析和计算方面取得了重大进展,但文献中的解决方案框架具有稀疏,不尺寸的不同规范,通常限于简单的边界条件。如果相关参数相对于毛细管长度不尺寸,并且可以克服这些问题,并且可以开发统一的解决方案框架,并且以毛细管长度不受限制,并且以轴和轮廓的形式折叠到单个图形图表上。在这里,我们使用矢量参数化的立方样条来表示轴对称液滴轮廓,然后使用基于新的热力学自由能量最小化算法来进化准静态以进入平衡形状。验证了各种几何和表面参数的生成的数据集,然后以图形图表的形式编译。该图表跟踪了轴对称吊坠滴的完整配置文件,预测其在任何表面上的进化和稳定性,都没有运行任何计算机模拟。最重要的是,该图表上的接触角轮廓提供了结合接触角滞后的效果的能力,其实际相关的情况,但尚未被建模。

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