School of Chemical and Environmental Engineering, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou City, Jiangsu Province 215123, People's Republic of China.
J R Soc Interface. 2019 Oct 31;16(159):20190425. doi: 10.1098/rsif.2019.0425. Epub 2019 Oct 9.
Bionics is a fascinating subject that has inspired many inventions through learning from biological structures and functions. In this work, a coupled multi-physics model has been developed to characterize ocular water evaporation with realistic eyelash structures taken into account. From a chemical engineering perspective, the protective function of human eyelashes in terms of evaporation inhibition has been rationally revealed. Systematic investigations were carried out to elucidate the effects of different eyelash lengths, orientations and inlet air directions on water evaporation on the ocular surface. The results clearly demonstrate that regardless of inlet air directions and eyelash orientations, increasing eyelash length from zero to an optimal length can effectively reduce water evaporation. However, further increase in the eyelash length can lead to enhanced evaporation. For the normal and parallel inlet air directions, the optimal eyelash length is around 15-30% of the eye width and can offer approximately 10-30% evaporation reduction when compared with the cases without eyelashes. These values are independent of the eyelash orientation. This investigation provides valuable data for in-depth understanding of the protective function of the eyelashes, which can be used in the future to improve and optimize bionic designs inspired by human eyelashes.
仿生学是一个引人入胜的学科,通过学习生物结构和功能,激发了许多发明。在这项工作中,我们开发了一个耦合多物理模型,以考虑到真实的睫毛结构来描述眼部的水蒸发。从化学工程的角度来看,合理地揭示了人类睫毛在抑制蒸发方面的保护作用。我们进行了系统的研究,以阐明不同睫毛长度、方向和入口空气方向对眼部表面水蒸发的影响。结果清楚地表明,无论入口空气方向和睫毛方向如何,将睫毛长度从 0 增加到最佳长度可以有效地减少水蒸发。然而,进一步增加睫毛长度会导致蒸发增强。对于正常和平行的入口空气方向,最佳睫毛长度约为眼睛宽度的 15-30%,与没有睫毛的情况相比,可减少约 10-30%的蒸发。这些值与睫毛方向无关。这项研究为深入了解睫毛的保护功能提供了有价值的数据,这可用于未来改进和优化受人类睫毛启发的仿生设计。