Kowalski Nicholas G, Shi Weiwei, Kennedy Brook S, Boreyko Jonathan B
Department of Mechanical Engineering, Virginia Tech, Blacksburg, Virginia 24061, United States.
Department of Biomedical Engineering and Mechanics, Virginia Tech, Blacksburg, Virginia 24061, United States.
ACS Appl Mater Interfaces. 2021 Aug 18;13(32):38826-38834. doi: 10.1021/acsami.1c08995. Epub 2021 Aug 3.
It has recently been demonstrated that harps harvest substantively more fog water than conventional mesh nets, but the optimal design for fog harps remains unknown. Here, we systematically vary key parameters of a scale-model fog harp, the wire material, wire pitch, and wire length, to find the optimal combination. We found stainless steel to not only be the best hydrophilic wire material but also nearly be as effective as Teflon-coated wires. The best choice for the wire pitch was coupled to the wire length, as the smallest pitch collected the most water for short harps but was hampered by tangling for taller harps. Accordingly, we use an elastocapillary wire tangling model to successfully predict the onset of tangling beyond a critical length for any given wire pitch. Combining what we learned, we achieved a water harvesting efficiency of 17% with an optimized stainless-steel harp, over three times higher than that of the current standard of a Raschel mesh. These results suggest that an optimal fog harp should feature high-tension, uncoated wires within a large aspect ratio frame to avoid tangling and promote efficient and reliable fog harvesting.
最近有研究表明,竖琴式雾网收集的雾水比传统的筛网显著更多,但竖琴式雾网的最佳设计仍不明确。在此,我们系统地改变了一个缩尺模型竖琴式雾网的关键参数,即金属丝材料、金属丝间距和金属丝长度,以找到最佳组合。我们发现不锈钢不仅是最好的亲水性金属丝材料,而且几乎与涂有特氟龙的金属丝一样有效。金属丝间距的最佳选择与金属丝长度相关,因为对于短竖琴式雾网来说,最小的间距收集到的水最多,但对于较高的竖琴式雾网来说,会因缠结而受到阻碍。因此,我们使用了一个弹性毛细管缠结模型,成功地预测了在任何给定金属丝间距下超过临界长度时缠结的开始。综合我们所学到的知识,我们使用优化后的不锈钢竖琴式雾网实现了17%的集水效率,比当前标准的拉舍尔筛网高出三倍多。这些结果表明,最佳的竖琴式雾网应在大长宽比的框架内采用高张力、未涂层的金属丝,以避免缠结并促进高效可靠的雾水收集。