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首页> 外文期刊>International journal of hydrogen energy >Droplet behaviors on inclined surfaces with dynamic contact angle
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Droplet behaviors on inclined surfaces with dynamic contact angle

机译:具有动态接触角的倾斜表面上的液滴行为

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Dynamic contact angle (DCA) is of crucial importance in the numerical investigation of water management problems in proton exchange membrane fuel cells (PEMFCs). In order to well predict the gas-liquid two-phase flow in the complex flow field in PEMFCs, first, it is very critical to build a robust DCA model that is capable of simulating droplet behaviors on a single surface under various conditions. In our previous research work, an advancing-receding DCA (AR-DCA) model is developed and has been successfully validated against a series of experiments from the available literature for droplet impact on surfaces. In this study, the AR-DCA model is further applied to simulate droplet behaviors on inclined surfaces with different droplet impact velocities, impact angles and viscosities. It is found that the droplet spreading and deformation from the simulations have excellent agreement with those captured in the corresponding experiments. The results also indicate that higher impact velocity and impact angle can facilitate the spreading trend at the droplet trailing edge and have no notable effects on the leading edge. In addition, the increase of droplet viscosity leads to a transition from droplet deposition phenomenon to partial rebound on the surface. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:动态接触角(DCA)在质子交换膜燃料电池(PEMFCs)中水管理问题的数值调查中至关重要。为了良好地预测PEMFC中复杂流场中的气液两相流,首先,构建能够在各种条件下模拟单个表面上的液滴行为的鲁棒DCA模型非常重要。在我们以前的研究工作中,开发了一种推进的DCA(AR-DCA)模型,并已成功验证了来自可用文献的一系列实验,用于对表面的液滴冲击。在该研究中,AR-DCA模型进一步应用于模拟倾斜表面上的液滴行为,具有不同的液滴冲击速度,冲击角和粘度。结果发现,从模拟中的液滴扩散和变形与在相应实验中捕获的人具有优异的一致性。结果还表明,较高的冲击速度和冲击角可以促进液滴后缘处的扩散趋势,并且对前缘没有显着的影响。此外,液滴粘度的增加导致从液滴沉积现象到表面上的部分反弹的转变。 (c)2019氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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