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Bringing out Fluids Experiments from Laboratory to In Silico – A Journey of Hundred Years

机译:将流体实验从实验室带到In Silico –百年历程

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By making use of the developments in the fields of numerical methods, computational technology and fluid dynamics models, computational fluid dynamics (CFD) progress forward to play an active role today in various industrial, academic and research activities. In many cases, CFD simulations replace expensive and time consuming laboratory experiments successfully by allowing engineers and scientists to capture pressure, velocity and force distributions. Researchers are now able to test various theoretical conditions unavailable in the laboratory and CFD studies help them to get deeper insights on existing theories. The century-old history started just to solve some stress analysis problems numerically and today CFD methodology is being applied not only in fluid dynamics also in chemical engineering, mineral processing, fire engineering, sports, medical imaging and even in acoustics. This paper reviews the growth of CFD as a discipline and discusses its contemporary methodology.
机译:通过利用数值方法,计算技术和流体动力学模型领域的发展,计算流体力学(CFD)向前发展,在当今的各种工业,学术和研究活动中发挥着积极作用。在许多情况下,CFD模拟通过允许工程师和科学家捕获压力,速度和力的分布,成功地替代了昂贵且耗时的实验室实验。现在,研究人员能够测试实验室中无法提供的各种理论条件,而CFD研究有助于他们对现有理论进行更深入的了解。有着百年历史的历史才刚刚开始用数值方法解决一些应力分析问题,如今,CFD方法不仅应用于流体动力学,而且还应用于化学工程,矿物加工,消防工程,体育,医学成像甚至声学。本文回顾了差价合约作为一门学科的发展并讨论了其当代方法论。

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