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拉普拉斯压差增强超疏水结构上液滴的聚并跳跃。

Laplace Pressure Difference Enhances Droplet Coalescence Jumping on Superhydrophobic Structures.

作者信息

Liu Chuntian, Zhao Meirong, Lu Dunqiang, Sun Yukai, Song Le, Zheng Yelong

机构信息

State Key Laboratory of Precision Measuring Technology and Instruments, Tianjin University, Tianjin 300072, People's Republic of China.

出版信息

Langmuir. 2022 Jun 7;38(22):6923-6933. doi: 10.1021/acs.langmuir.2c00412. Epub 2022 Apr 22.

Abstract

Coalescence-induced droplet jumping has great prospects in many applications. Nevertheless, the applications are vastly limited by a low jumping velocity. Conventional methods to enhance the droplet coalescence jumping velocity are enabled by protruding structures with superhydrophobic surfaces. However, the jumping velocity improvement is limited by the height of protruding structures. Here, we present rationally designed limitation structures with superhydrophobic surfaces to achieve a dimensionless jumping velocity, ≈ 0.64. The mechanism of enhancing the jumping velocity is demonstrated through the study of numerical simulations and geometric parameters of limitation structures, providing guidelines for optimized structures. Experimental and numerical results indicate that the mechanism consists of the combined action of the velocity vectors' redirection and the Laplace pressure difference within deformed droplets trapped in limitation structures. On the basis of previous research on the mechanisms of protruding structures and our study, we successfully exploited those mechanisms to further improve the jumping velocity by combining the limitation structure with the protruding structure. Experimentally, we attained a dimensionless jumping velocity of ≈ 0.74 with an energy conversion efficiency of η ≈ 48%, breaking the jumping velocity limit. This work not only demonstrates a new mechanism for achieving a high jumping velocity and energy conversion efficiency but also sheds lights on the effect of limitation structures on coalescence hydrodynamics and elucidates a method to further enhance the jumping velocity based on protruding structures.

摘要

聚并诱导的液滴跳跃在许多应用中具有广阔前景。然而,其应用因跳跃速度较低而受到极大限制。传统提高液滴聚并跳跃速度的方法是通过具有超疏水表面的突出结构来实现的。然而,跳跃速度的提升受到突出结构高度的限制。在此,我们展示了合理设计的具有超疏水表面的限位结构,以实现无量纲跳跃速度约为0.64。通过对限位结构的数值模拟和几何参数研究,揭示了提高跳跃速度的机制,为优化结构提供了指导。实验和数值结果表明,该机制由限位结构中被困变形液滴内速度矢量的重新定向和拉普拉斯压差的联合作用组成。基于先前对突出结构机制的研究以及我们的研究,我们通过将限位结构与突出结构相结合,成功利用这些机制进一步提高了跳跃速度。在实验中,我们实现了无量纲跳跃速度约为0.74,能量转换效率约为48%,突破了跳跃速度限制。这项工作不仅展示了实现高跳跃速度和能量转换效率的新机制,还揭示了限位结构对聚并流体动力学的影响,并阐明了一种基于突出结构进一步提高跳跃速度的方法。

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