论文标题

剪切引起的多孔表面中的液滴迁移率

Shear-induced droplet mobility within porous surfaces

论文作者

Suo, Si, Zhao, Haibo, Bagheri, Shervin, Yu, Peng, Gan, Yixiang

论文摘要

剪切流下的液滴移动性在广泛的工程应用中很重要,例如雾收集和自我清洁表面。为了使结构化表面达到超疏水性,在显微镜表面特征中粘附的污渍的去除强烈决定了功能性能和耐用性。在这项研究中,我们通过数值研究了被困在多孔表面中的液滴的剪切诱导的迁移率。通过涵盖多种流量条件和多孔几何形状的模拟,确定了三种液滴迁移率模式,即粘滑,跨界和滑动模式。为了定量地表征液滴动力学,我们提出了一个液滴尺寸的毛细管数,以考虑驱动力和毛细管电阻。通过与模拟结果进行比较,提出的无量纲数与剩余体积的相关性很强。这项研究中揭示的主导机制为进一步研究增强表面清洁和优化抗污染表面设计提供了基础。

Droplet mobility under shear flows is important in a wide range of engineering applications, e.g., fog collection, and self-cleaning surfaces. For structured surfaces to achieve superhydrophobicity, the removal of stains adhered within the microscale surface features strongly determines the functional performance and durability. In this study, we numerically investigate the shear-induced mobility of the droplet trapped within porous surfaces. Through simulations covering a wide range of flow conditions and porous geometries, three droplet mobility modes are identified, i.e., the stick-slip, crossover, and slugging modes. To quantitatively characterise the droplet dynamics, we propose a droplet-scale capillary number that considers the driving force and capillary resistance. By comparing against the simulation results, the proposed dimensionless number presents a strong correlation with the leftover volume. The dominating mechanisms revealed in this study provide a basis for further research on enhancing surface cleaning and optimising design of anti-fouling surfaces.

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