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Growth and wetting of water droplet condensed between micron-sized particles and substrate

机译:微米级颗粒和基材之间凝结的水滴的生长和润湿

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摘要

We study heterogeneous condensation growth of water droplets on micron-sized particles resting on a level substrate. Through numerical simulations on equilibrium droplet profiles, we find multiple wetting states towards complete wetting of the particle. Specifically, a partially wetting droplet could undergo a spontaneous transition to complete wetting during condensation growth, for contact angles above a threshold minimum. In addition, we find a competitive wetting behavior between the particle and the substrate, and interestingly, a reversal of the wetting dependence on contact angles during late stages of droplet growth. Using quasi-steady assumption, we simulate a growing droplet under a constant condensation flux, and the results are in good agreement with our experimental observations. As a geometric approximation for particle clusters, we propose and validate a pancake model, and with it, show that a particle cluster has greater wetting tendency compared to a single particle. Together, our results indicate a strong interplay between contact angle, capillarity and geometry during condensation growth.
机译:我们研究了在水平基底上放置的微米级颗粒上水滴的异质凝结生长。通过对平衡液滴分布的数值模拟,我们发现了粒子的完全润湿的多个润湿状态。具体地,对于大于阈值最小值的接触角,部分润湿的液滴可在凝结生长期间经历自发转变以完全润湿。此外,我们发现了颗粒与基材之间的竞争性润湿行为,有趣的是,在液滴生长的后期阶段,润湿性对接触角的依赖性得到了逆转。使用准稳态假设,我们在恒定凝结通量下模拟了一个正在生长的液滴,其结果与我们的实验观察结果非常吻合。作为粒子簇的几何近似,我们提出并验证了一个煎饼模型,并显示了该模型与单个粒子相比具有更大的润湿趋势。在一起,我们的结果表明凝结增长过程中接触角,毛细作用和几何形状之间有很强的相互作用。

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