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Titlebook: 50 Years of CFD in Engineering Sciences; A Commemorative Volu Akshai Runchal Book 2020 Springer Nature Singapore Pte Ltd. 2020 Computationa

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发表于 2025-3-21 16:33:25 | 显示全部楼层 |阅读模式
期刊全称50 Years of CFD in Engineering Sciences
期刊简称A Commemorative Volu
影响因子2023Akshai Runchal
视频video
发行地址Captures the key developments in Computational Fluid Dynamics since its inception in the 1960‘s.Reviews the impact CFD has had on diverse engineering practice.Discusses current status of research and
图书封面Titlebook: 50 Years of CFD in Engineering Sciences; A Commemorative Volu Akshai Runchal Book 2020 Springer Nature Singapore Pte Ltd. 2020 Computationa
影响因子Prof. D. Brian Spalding, working with a small group of students and colleagues at Imperial College, London in the mid-to late-1960’s, single-handedly pioneered the use of Computational Fluid Dynamics (CFD) for engineering practice.​This book brings together advances in computational fluid dynamics in a collection of chapters authored by leading researchers, many of them students or associates of Prof. Spalding.  The book intends to capture the key developments in specific fields of activity that have been transformed by application of CFD in the last 50 years. The focus is on review of the impact of CFD on these selected fields and of the novel applications that CFD has made possible. Some of the chapters trace the history of developments in a specific field and the role played by Spalding and his contributions.  The volume also includes a biographical  summary of Brian Spalding as a person and as a scientist, as well as tributes to Brian Spalding by those whose life wasimpacted by his innovations.  This volume would be of special interest to researchers, practicing engineers, and graduate students in various fields, including aerospace, energy, power and propulsion, transportation
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https://doi.org/10.1007/978-981-32-9072-3 are to be used for improving existing systems and developing new ones. This paper focuses on the main considerations that arise and approaches that may be adopted to obtain accurate numerical simulation results on practical thermal processes and systems. A wide range of systems is considered, inclu
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Jiang-Hui Liu,Ling-Xi Ruan,Ying-Yu Zhoues near walls is one of such bottlenecks in using LES at high Reynolds number flows. The hybrid LES-RANS, which was invented to eliminate the limitations, is also discussed here in brief. As a concluding remark, it can be stated that the method is particularly suitable and superior to RANS for situa
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Anestis A. Toptsis,Alexander Dubitskibe taken into account (physicochemical hydrodynamics). Moreover, the results of original research conducted over two decades and culminating in very recent results are presented and explained. This work is research-in-motion and some future possibilities are outlined in the conclusion.
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Di Liu Zheng-ding Qiu,Dong-mei Sunhods. These range from one-dimensional, isothermal, single-phase to three-dimensional, non-isothermal, two-phase flow through porous media. The CFD methods are supplemented with electrical charge equations. Although the state-of-the-art is very advanced and can simulate accurately a single cell, or
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