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Numerical Study o n Laminar Drag Reduction for Superhydrophobic Surfaces with Continuous V Shaped Microstructures
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نویسنده
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xu y ,ruan c
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منبع
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journal of applied fluid mechanics - 2022 - دوره : 15 - شماره : 6 - صفحه:1825 -1836
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چکیده
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Superhydrophobic surfaces have attracted great attention owing to their capacity of reducing fluid resistance. m ost of the previous numerical simulations on drag reduction of the superhydrophobic surfaces have concentrated on the rectangul ar microstructures, whereas few studies have focused on the continuous v shaped microstructures. based on the gas liquid two phase flow theory and volume of field model, combined with the semi implicit method for pressure linked equations algorithm, the ef fects of laminar drag reduction for superhydrophobic surfaces with continuous v shaped microstructures were numerically studied. three different sizes of superhydrophobic microchannels with continuous v shapes were simulated according to the experimental d ata. results showed that the drag reduction effects of continuous v shaped microstructures were mainly determined by the width of adjacent microstructures, with the height of the microstructures only having minimal influence. at the same time, the effects of drag reduction for sup erhydrophobic surfaces with continuous v shaped microstructures were compared with those with v shaped and rectangular microstructures. t he results indicated that the effects of drag reduction for superhydrophobic surfaces with continuous v shaped microstr uctures were obviously better than for those with v shaped microstructures, whereas the superhydrophobic surfaces with rectangular microstructures were more effective in reducing their drag than those with v shaped microstructures under the condition of th e same shear free air water ratios. therefore, in the preparation of superhydrophobic materials, the continuous v shaped microstructures are recommended; in addition, increasing the microstructure width should be emphasized in the preparation of superhydro phobic materials with continuous v shaped microstructures.
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کلیدواژه
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Superhydrophobic surface ; Laminar flow ; Drag reduction ; V shaped microstructure; Flow field
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آدرس
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henan university of science and technology, school of mathematics and statistics, China, henan university of science and technology, school of mathematics and statistics, China. longmen laboratory, China
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پست الکترونیکی
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ruanchunlei@haust.edu.cn
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Authors
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