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Titlebook: IUTAM Symposium on One Hundred Years of Boundary Layer Research; Proceedings of the I G. E. A. Meier,K. R. Sreenivasan,H.-J. Heinemann Conf

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發(fā)表于 2025-3-21 17:05:55 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱IUTAM Symposium on One Hundred Years of Boundary Layer Research
副標(biāo)題Proceedings of the I
編輯G. E. A. Meier,K. R. Sreenivasan,H.-J. Heinemann
視頻videohttp://file.papertrans.cn/461/460621/460621.mp4
概述A unique, outstanding and authoritative source of information on the topic of boundary layers for the next decade
叢書名稱Solid Mechanics and Its Applications
圖書封面Titlebook: IUTAM Symposium on One Hundred Years of Boundary Layer Research; Proceedings of the I G. E. A. Meier,K. R. Sreenivasan,H.-J. Heinemann Conf
描述Prandtl’s famous lecture with the title “über Flüssigkeitsbewegung bei sehr kleiner Reibung” was presented on August 12, 1904 at the Third Internationalen Mathematischen Kongress in Heidelberg, Germany. This lecture invented the phrase “Boundary Layer” (Grenzschicht). The paper was written during Prandtl’s first academic position at the University of Hanover. The reception of the academic world to this remarkable paper was at first lukewarm. But Felix Klein, the famous mathematician in G?ttingen, immediately realized the importance of Prandtl’s idea and offered him an academic position in G?ttingen. There Prandtl became the founder of modern aerodynamics. He was a professor of applied mechanics at the G?ttingen University from 1904 until his death on August 15, 1953. In 1925 he became Director of the Kaiser Wilhelm Institute for Fluid Mechanics. He developed many further ideas in aerodynamics, such as flow separation, base drag and airfoil theory, especially the law of the wall for turbulent boundary layers and the instability of boundary layers en route to turbulence.During the fifty years that Prandtl was in the G?ttingen Research Center, he made important contributions to gas dy
出版日期Conference proceedings 2006
關(guān)鍵詞Analysis; Rhe; computer-aided design (CAD); development; friction; layers; modeling; modelling; resonance; si
版次1
doihttps://doi.org/10.1007/978-1-4020-4150-1
isbn_softcover978-94-007-9797-0
isbn_ebook978-1-4020-4150-1Series ISSN 0925-0042 Series E-ISSN 2214-7764
issn_series 0925-0042
copyrightSpringer Science+Business Media B.V. 2006
The information of publication is updating

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G. E. A. Meier high volume pro- cesses to specialty chemical preparations. Many of these processes are functional group conversions or class reac- tions, and the more important of these will receive detailed treatment in specific chapters throughout this series. Nevertheless, the scope is very broad, and it is al
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V. Theofilis,A. V. Fedorov,S. S. Collish of the surface of the catalyst as possible, and of course for the products to diffuse out and away from the catalyst. The catalysing surface frequently consists of a complex chemical mixture of different phases produced by an empirically evolved chemical process which may incorporate activators, p
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Eli Reshotko,Anatoli Tuminh of the surface of the catalyst as possible, and of course for the products to diffuse out and away from the catalyst. The catalysing surface frequently consists of a complex chemical mixture of different phases produced by an empirically evolved chemical process which may incorporate activators, p
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Yury S. Kachanovcation of intermediates, both on the surface and in the gas phase. Although the number of systems which have been studied are limited because of constraints inherent in the technique, the sensitivity and in many cases the definite identification of paramagnetic species make EPR one of the more valua
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Arne Seitz,K.-H. Horstmannated as a nuisance to be ignored or factored out of the experimental results. How- ever, the engineer concerned with the design and opera- tion of real catalysts and processes cannot afford this luxury: for him deactivation and the need for regenera- tion are inevitable facts of life which need to b
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P. R. Viswanathconomic significance since the products from it form the feed for a number of other major processes. Nevertheless, catalytic steam reforming is a relatively difficult technology. It operates at high temperatures where problems of the maintenance of materials integrity and of catalyst stability and a
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