锥面
曲率
拉普拉斯压力
拉普拉斯变换
水运
压力梯度
材料科学
曲面(拓扑)
运动(物理)
机械
几何学
纳米技术
地质学
物理
经典力学
复合材料
数学
水流
岩土工程
数学分析
量子力学
表面张力
作者
Dong Song,Bharat Bhushan
标识
DOI:10.1098/rsta.2019.0128
摘要
Cacti use spines with conical geometry to transport water to its base. A conical shape with curvature gradient generates a Laplace pressure gradient along the droplet, which is responsible for droplet motion. In this study, the triangular shape was used which also generates a Laplace pressure gradient along the droplet. A bioinspired surface, composed of a hydrophilic triangular pattern surrounded by a rim of superhydrophobic region, was used to transport water collected from the fog on the hydrophilic pattern. The growing droplets start to coalesce into bigger ones. Eventually, they are big enough to touch the superhydrophobic borders, which trigger the transport motion. Droplet mobility and water collection measurements were made on triangular patterns with various geometries to determine the most efficient configurations. Results from this study can be used to enhance the performance of water collection systems from fog. This article is part of the theme issue 'Bioinspired materials and surfaces for green science and technology (part 2)'.
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