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电润湿诱导液滴脱离及在具有微观地形结构表面上跳跃的建模

Modelling of Electrowetting-Induced Droplet Detachment and Jumping over Topographically Micro-Structured Surfaces.

作者信息

Sourais Alexandros G, Papathanasiou Athanasios G

机构信息

School of Chemical Engineering, National Technical University of Athens, 15780 Athens, Greece.

出版信息

Micromachines (Basel). 2021 May 21;12(6):592. doi: 10.3390/mi12060592.

Abstract

Detachment and jumping of liquid droplets over solid surfaces under electrowetting actuation are of fundamental interest in many microfluidic and heat transfer applications. In this study we demonstrate the potential capabilities of our continuum-level, sharp-interface modelling approach, which overcomes some important limitations of convectional hydrodynamic models, when simulating droplet detachment and jumping dynamics over flat and micro-structured surfaces. Preliminary calculations reveal a considerable connection between substrate micro-topography and energy efficiency of the process. The latter results could be extended to the optimal design of micro-structured solid surfaces for electrowetting-induced droplet removal in ambient conditions.

摘要

在许多微流体和传热应用中,电润湿驱动下液滴在固体表面的分离和跳跃是具有根本重要性的研究内容。在本研究中,我们展示了我们的连续介质水平、尖锐界面建模方法的潜在能力,该方法在模拟液滴在平坦和微结构表面上的分离和跳跃动力学时,克服了传统流体动力学模型的一些重要局限性。初步计算揭示了基底微观形貌与该过程能量效率之间的显著关联。后者的结果可扩展至在环境条件下用于电润湿诱导液滴去除的微结构固体表面的优化设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1000/8224045/0217e02d2263/micromachines-12-00592-g001.jpg

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