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浓雾条件下的竖琴:优于网片但容易缠绕。

Harps under Heavy Fog Conditions: Superior to Meshes but Prone to Tangling.

作者信息

Shi Weiwei, De Koninck Lance H, Hart Brandon J, Kowalski Nicholas G, Fugaro Andrew P, van der Sloot Thomas W, Ott Robin S, Kennedy Brook S, Boreyko Jonathan B

机构信息

Department of Biomedical Engineering and Mechanics, Virginia Tech, Blacksburg, Virginia 24061, United States.

School of Architecture and Design, Virginia Tech, Blacksburg, Virginia 24061, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Oct 21;12(42):48124-48132. doi: 10.1021/acsami.0c12329. Epub 2020 Oct 6.

DOI:10.1021/acsami.0c12329
PMID:33021369
Abstract

In arid yet foggy regions, fog harvesting is emerging as a promising approach to combat water scarcity. The mesh netting used by current fog harvesters suffers from inefficient drainage, which severely constrains the water collection efficiency. Recently, it was demonstrated that fog harps can significantly enhance water harvesting as the vertical wire array does not obstruct the drainage pathway. However, fabrication limitations resulted in a very low shade coefficient of 18% for the initial fog harp prototype and the field testing was geographically confined to light fog conditions. Here, we use wire-electrical discharge machining (wire-EDM) to machine ultrafine comb arrays; winding the harp wire along a comb-embedded reinforced frame enabled a shade coefficient of 50%. To field test under heavy fog conditions, we placed the harvesters on a closed-circuit test road and inundated them with fog produced by an array of overlying fog towers. On average, the fog harps collected about three times more water than the mesh netting. During fog harvesting, the harp wires were observed to tangle together due to the surface tension of water. We developed a rational model to predict the extent of the tangling problem for any given fog harp design. By designing next-generation fog harps to be anti-tangling, we expect that even larger performance multipliers will be possible compared to the current mesh harvesters.

摘要

在干旱但多雾的地区,雾收集正成为一种应对水资源短缺的有前景的方法。当前雾收集器使用的网眼网存在排水效率低下的问题,这严重限制了集水效率。最近,有研究表明,雾竖琴由于垂直金属丝阵列不会阻碍排水路径,能够显著提高集水效率。然而,制造限制导致初始雾竖琴原型的遮光系数非常低,仅为18%,并且实地测试在地理上局限于轻雾条件。在此,我们使用电火花线切割加工(wire-EDM)来加工超细梳状阵列;将竖琴金属丝沿着嵌入梳子的加强框架缠绕,使遮光系数达到了50%。为了在浓雾条件下进行实地测试,我们将收集器放置在一条闭路测试道路上,并用一系列上方的雾塔产生的雾对其进行淹没。平均而言,雾竖琴收集的水量比网眼网多约三倍。在雾收集过程中,由于水的表面张力,观察到竖琴金属丝缠结在一起。我们开发了一个合理的模型来预测任何给定雾竖琴设计的缠结问题程度。通过设计下一代防缠结的雾竖琴,我们预计与当前的网眼收集器相比,甚至可能实现更大的性能提升。

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