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首页> 外文期刊>Progress in computational fluid dynamics >Suppressing artificial equilibrium states caused by spurious currents in droplet spreading simulations with dynamic contact angle model
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Suppressing artificial equilibrium states caused by spurious currents in droplet spreading simulations with dynamic contact angle model

机译:在动态接触角模型中抑制由杂散电流引起的人工平衡状态

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摘要

Accurate methods for numerical simulation of dynamic wetting and spreading phenomena are a valuable tool to support the advancement of related technological processes such as inkjet-printing. Here, it is demonstrated that numerical methods employing dynamic contact angle models are prone to artificial equilibrium states caused by spurious (parasitic) currents. The capability of different approaches in reducing spurious currents for sessile and spreading droplets with low equilibrium contact angle is evaluated. To minimise the influence of spurious currents on dynamic contact angle models, a smoothing step in the evaluation of the contact line velocity is introduced in this paper. The benefit and performance of this new approach is demonstrated by algebraic volume-of-fluid simulations of spreading and receding droplets with the Kistler dynamic contact angle model.
机译:动态润湿和扩散现象的数值模拟的精确方法是支持相关技术过程(如喷墨印刷)发展的宝贵工具。在此,证明了采用动态接触角模型的数值方法易于产生由寄生(寄生)电流引起的人为平衡状态。评估了不同方法在降低具有低平衡接触角的固着和散布液滴的杂散电流方面的能力。为了使杂散电流对动态接触角模型的影响最小,本文介绍了评估接触线速度的平滑步骤。用奇石乐动态接触角模型对液滴的扩散和后退进行代数流体体积模拟,证明了这种新方法的优势和性能。

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