Wang Sheldon, Ok Jeong Tae, Park Sunggook, Elsharafi Mahmoud, Guo Yu
McCoy College of Science, Mathematics & Engineering, Midwestern State University, a Member of the Texas Tech University System, Wichita Falls, TX 76308, USA.
Electromechanical Engineering Technology, Shawnee State University, 940 Second Street, Portsmouth, OH 45662, USA.
Appl Mech (Basel). 2024 Mar;5(1):91-101. doi: 10.3390/applmech5010006. Epub 2024 Jan 30.
In this work, we explore a simplified model based on both analytical and computational methods for the study of film-boiling droplet motion on microscale ratchets. We consider a specific ratchet design with the length periods and depth of ratchets much smaller than the size of the droplet. We conclude based on our modeling that for the ratchet configuration considered in this paper, the conduction within the vapor film is the dominant means of heat transfer in comparison with convection and radiation. Furthermore, we demonstrate a more manageable two-dimensional model in which analytical approaches coupled with computational approaches yield reasonably accurate results in comparison to the actual experiments.
在这项工作中,我们探索了一种基于分析和计算方法的简化模型,用于研究微尺度棘轮上的膜态沸腾液滴运动。我们考虑了一种特定的棘轮设计,其棘轮的长度周期和深度远小于液滴的尺寸。基于我们的建模,我们得出结论,对于本文所考虑的棘轮构型,与对流和辐射相比,蒸汽膜内的传导是主要的传热方式。此外,我们展示了一个更易于管理的二维模型,其中分析方法与计算方法相结合,与实际实验相比能产生相当准确的结果。