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首页> 外文期刊>Micron: The international research and review journal for microscopy >Boundary layer drag reduction research hypotheses derived from bio-inspired surface and recent advanced applications
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Boundary layer drag reduction research hypotheses derived from bio-inspired surface and recent advanced applications

机译:边界层减阻研究假说源自生物启发性表面和最新的先进应用

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Nature has supplied the inexhaustible resources for mankind, and at the same time, it has also progressively developed into the school for scientists and engineers. Through more than four billions years of rigorous and stringent evolution, different creatures in nature gradually exhibit their own special and fascinating biological functional surfaces. For example, sharkskin has the potential drag-reducing effect in turbulence, lotus leaf possesses the self-cleaning and anti-foiling function, gecko feet have the controllable super-adhesion surfaces, the flexible skin of dolphin can accelerate its swimming velocity. Great profits of applying biological functional surfaces in daily life, industry, transportation and agriculture have been achieved so far, and much attention from all over the world has been attracted and focused on this field. In this overview, the bio-inspired drag-reducing mechanism derived from sharkskin is explained and explored comprehensively from different aspects, and then the main applications in different fluid engineering are demonstrated in brief. This overview will inevitably improve the comprehension of the drag reduction mechanism of sharkskin surface and better understand the recent applications in fluid engineering. (C) 2015 Elsevier Ltd. All rights reserved.
机译:大自然为人类提供了无穷的资源,与此同时,它也逐渐发展成供科学家和工程师使用的学校。经过超过40亿年的严格和严格的进化,自然界中的各种生物逐渐展现出自己独特而引人入胜的生物功能表面。例如,鲨鱼皮在湍流中具有潜在的减阻作用,荷叶具有自洁和防结皮功能,壁虎脚具有可控的超粘表面,海豚柔软的皮肤可以加快其游泳速度。迄今为止,在日常生活,工业,交通运输和农业中使用生物功能性表面已经获得了巨大的利润,并且吸引了全世界的很多关注并集中在该领域。在本概述中,从不同方面对鲨鱼皮产生的生物启发的减阻机理进行了全面解释和探讨,然后简要说明了其在不同流体工程中的主要应用。本概述将不可避免地提高对鲨鱼皮表面减阻机理的理解,并更好地了解流体工程中的最新应用。 (C)2015 Elsevier Ltd.保留所有权利。

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