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Recent Advances in Computational Simulation of Macro-, Meso-, and Micro-Scale Biomimetics Related Fluid Flow Problems

机译:宏观,中观和微观仿生相关流体流动问题的计算仿真的最新进展

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Over the last decade, computational methods have been intensively applied to a variety of scientific researches and engineering designs. Although the computational fluid dynamics (CFD) method has played a dominant role in studying and simulating transport phenomena involving fluid flow and heat and mass transfers, in recent years, other numerical methods for the simulations at meso- and micro-scales have also been actively applied to solve the physics of complex flow and fluid-interface interactions. This paper presents a review of recent advances in multi-scale computational simulation of biomimetics related fluid flow problems. The state-of-the-art numerical techniques, such as lattice Boltzmann method (LBM), molecular dynamics (MD), and conventional CFD, applied to different problems such as fish flow, electro-osmosis effect of earthworm motion, and self-cleaning hydrophobic surface, and the numerical approaches are introduced. The new challenging of modelling biomimetics problems in developing the physical conditions of self-clean hydrophobic surfaces is discussed.
机译:在过去的十年中,计算方法已广泛应用于各种科学研究和工程设计。尽管计算流体动力学(CFD)方法在研究和模拟涉及流体流动,传热和传质的传输现象中起了主要作用,但近年来,在中小尺度和微观尺度上进行模拟的其他数值方法也一直很活跃。用于解决复杂的流动和流体界面相互作用的物理问题。本文介绍了仿生相关流体流动问题的多尺度计算仿真的最新进展。最新的数值技术,例如格子玻尔兹曼法(LBM),分子动力学(MD)和常规CFD,已应用于不同的问题,例如鱼流,worm运动的电渗效应和自清洁疏水表面,并介绍了数值方法。讨论了在开发自清洁疏水表面的物理条件时模拟仿生问题的新挑战。

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