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雾收集的开始时间。

Onset time of fog collection.

作者信息

Jiang Youhua, Machado Christian, Savarirayan Shaan, Patankar Neelesh A, Park Kyoo-Chul

机构信息

Department of Mechanical Engineering, Northwestern University, Evanston, IL 60208, USA.

出版信息

Soft Matter. 2019 Aug 28;15(34):6779-6783. doi: 10.1039/c9sm01105f.

Abstract

Fog collection is a promising solution to the worldwide water scarcity problem and is also of vital importance to industrial processes, such as recapturing water in cooling towers and mist elimination. To date, numerous studies have investigated the fog collection rate, a parameter that denotes the average performance over a long period of time. However, the initial period (referred to as onset time) between the start of the fog-laden flow and the actual collection of the captured liquid (a delay in time caused by droplet growth to a critical weight that exceeds droplet-surface retention force) has not been systematically understood. A longer onset time may result in a more serious clogging issue that deteriorates the collection rate and, hence, understanding this phenomenon is important. Here, we study how the onset time is determined by the capture and transport of fog using individual, vertical wires with various surface wettabilities and diameters, under different wind speeds. This approach allows us to derive a scaling law that correlates the onset time with the fog capture process and droplet-surface retention force, governed by aerodynamics and interfacial phenomena, respectively. In particular, the onset time decreases with an increasing rate of fog capture or a decreasing droplet-surface retention force. This study introduces an important aspect in the evaluation of fog collection and provides insights for the optimal design of fog collectors and mist eliminators.

摘要

雾收集是解决全球水资源短缺问题的一种很有前景的方法,对工业过程也至关重要,比如冷却塔中的水回收和除雾。到目前为止,许多研究都考察了雾收集率,这是一个表示长时间平均性能的参数。然而,充满雾的气流开始到实际收集到捕获液体之间的初始阶段(称为起始时间)(由于液滴生长到超过液滴表面保持力的临界重量而导致的时间延迟)尚未得到系统的理解。较长的起始时间可能会导致更严重的堵塞问题,从而降低收集率,因此,了解这一现象很重要。在这里,我们研究了在不同风速下,使用具有不同表面润湿性和直径的单个垂直金属丝,雾的捕获和传输是如何决定起始时间的。这种方法使我们能够推导出一个标度律,该标度律将起始时间与雾捕获过程以及分别由空气动力学和界面现象控制的液滴 - 表面保持力联系起来。特别地,起始时间随着雾捕获率的增加或液滴 - 表面保持力的减小而减小。本研究介绍了雾收集评估中的一个重要方面,并为雾收集器和除雾器的优化设计提供了见解。

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