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用于雾水收集的多孔纤维网络结构的优化设计。

Optimal design of permeable fiber network structures for fog harvesting.

机构信息

Department of Mechanical Engineering and ‡Department of Chemical Engineering, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.

出版信息

Langmuir. 2013 Oct 29;29(43):13269-77. doi: 10.1021/la402409f. Epub 2013 Aug 15.

Abstract

Fog represents a large untapped source of potable water, especially in arid climates. Numerous plants and animals use textural and chemical features on their surfaces to harvest this precious resource. In this work, we investigate the influence of the surface wettability characteristics, length scale, and weave density on the fog-harvesting capability of woven meshes. We develop a combined hydrodynamic and surface wettability model to predict the overall fog-collection efficiency of the meshes and cast the findings in the form of a design chart. Two limiting surface wettability constraints govern the re-entrainment of collected droplets and clogging of mesh openings. Appropriate tuning of the wetting characteristics of the surfaces, reducing the wire radii, and optimizing the wire spacing all lead to more efficient fog collection. We use a family of coated meshes with a directed stream of fog droplets to simulate a natural foggy environment and demonstrate a five-fold enhancement in the fog-collecting efficiency of a conventional polyolefin mesh. The design rules developed in this work can be applied to select a mesh surface with optimal topography and wetting characteristics to harvest enhanced water fluxes over a wide range of natural convected fog environments.

摘要

雾代表了一种巨大的、尚未开发的饮用水资源,尤其是在干旱气候条件下。许多植物和动物利用其表面的纹理和化学特性来获取这种宝贵的资源。在这项工作中,我们研究了表面润湿性特征、长度尺度和编织密度对编织网雾收集能力的影响。我们开发了一个综合的流体动力学和表面润湿性模型,以预测网格的整体雾收集效率,并以设计图表的形式呈现研究结果。两个限制表面润湿性的约束条件控制着收集的液滴的再夹带和网格开口的堵塞。适当调整表面的润湿性特性、减小金属丝半径和优化金属丝间距都可以提高雾收集效率。我们使用带有定向雾滴流的涂层网来模拟自然雾环境,并展示了传统聚烯烃网雾收集效率提高了五倍。本工作中开发的设计规则可用于选择具有最佳形貌和润湿性的网格表面,以在广泛的自然对流雾环境中收集增强的水通量。

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