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首页> 外文期刊>Chemical Engineering Science >Equilibrium shape and contact angle of sessile drops of different volumes-Computation by SPH and its further improvement by DI
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Equilibrium shape and contact angle of sessile drops of different volumes-Computation by SPH and its further improvement by DI

机译:不同体积的无滴液滴的平衡形状和接触角-SPH计算及其通过DI的进一步改进

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摘要

Equilibrium shapes of sessile liquid drops over horizontal substrates are modeled using smoothed particle hydrodynamics (SPH). The model can predict the variations of shape and contact angle of drops as a function of drop volume. In the model, a scheme of repositioning the particle at the triple line has been incorporated to attain the in situ contact angle. The simulations show a reasonable match with available analytical results. However, some mismatch of the drop shape near the three-phase contact line is observed. To improve the predictability, combined diffused interface smoothed particle hydrodynamics model (Das and Das, 2009b) is employed. The developed hybrid simulations improve the prediction. Estimated drop shapes and contact angle agree with experimental data reasonably well over a wide range of fluid properties and drop volume. The technique establishes the suitability of a particle-based hydrodynamic simulation for the modeling of complex interfaces and three-phase contact lines.
机译:使用平滑粒子流体动力学(SPH)对水平基质上无蒂液滴的平衡形状进行建模。该模型可以预测液滴形状和接触角随液滴体积变化的变化。在该模型中,已纳入了将粒子重新定位在三线处的方案,以实现原位接触角。模拟显示与可用的分析结果合理匹配。但是,观察到三相接触线附近的液滴形状有些不匹配。为了提高可预测性,采用了组合的扩散界面平滑粒子流体动力学模型(Das和Das,2009b)。所开发的混合仿真改善了预测。在各种流体性质和液滴体积范围内,估计的液滴形状和接触角与实验数据相当吻合。该技术建立了基于粒子的水动力仿真模型对复杂界面和三相接触线建模的适用性。

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