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Titlebook: IUTAM Laminar-Turbulent Transition; 9th IUTAM Symposium, Spencer Sherwin,Peter Schmid,Xuesong Wu Conference proceedings 2022 The Editor(s)

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书目名称IUTAM Laminar-Turbulent Transition
副标题9th IUTAM Symposium,
编辑Spencer Sherwin,Peter Schmid,Xuesong Wu
视频video
丛书名称IUTAM Bookseries
图书封面Titlebook: IUTAM Laminar-Turbulent Transition; 9th IUTAM Symposium, Spencer Sherwin,Peter Schmid,Xuesong Wu Conference proceedings 2022 The Editor(s)
描述This volume comprises the carefully revised papers of the 9th IUTAM Symposium on Laminar-Turbulent Transition, held at the Imperial College, London, UK, in September 2019. The papers focus on the leading research in understanding transition to turbulence, which is a challenging topic of fluid mechanics and arises in many modern technologies as well as in nature. The proceedings are of interest for researchers in fluid mechanics and industry who have to handle these types of problems, such as in the aeronautical sector..
出版日期Conference proceedings 2022
关键词computational science; fluid mechanics; transition; turbulence; receptivity; direct numerical simulation;
版次1
doihttps://doi.org/10.1007/978-3-030-67902-6
isbn_softcover978-3-030-67904-0
isbn_ebook978-3-030-67902-6Series ISSN 1875-3507 Series E-ISSN 1875-3493
issn_series 1875-3507
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
The information of publication is updating

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Conference proceedings 2022ics and arises in many modern technologies as well as in nature. The proceedings are of interest for researchers in fluid mechanics and industry who have to handle these types of problems, such as in the aeronautical sector..
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1875-3507 uid mechanics and arises in many modern technologies as well as in nature. The proceedings are of interest for researchers in fluid mechanics and industry who have to handle these types of problems, such as in the aeronautical sector..978-3-030-67904-0978-3-030-67902-6Series ISSN 1875-3507 Series E-ISSN 1875-3493
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Conference proceedings 2022K, in September 2019. The papers focus on the leading research in understanding transition to turbulence, which is a challenging topic of fluid mechanics and arises in many modern technologies as well as in nature. The proceedings are of interest for researchers in fluid mechanics and industry who h
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Predicting Laminar-Turbulent Transition Influenced by Surface-Induced Flow Distortionsture gradual changes to transition for realistic surface irregularities. This predictive framework is then used to characterize the different mechanisms and flow regimes responsible for boundary-layer transition in the presence of surface steps and gaps.
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40 Years of Transition Research at NASA: A Personal Perspectiveental research conducted at NASA, the understanding of transition mechanisms was greatly enhanced and prediction tools developed for across the speed regime. The research also provided the necessary foundation for additional developments by the transition community to solve this challenging problem in fluid dynamics.
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Study of Transition to Turbulence Using Discrete Directed Percolation Modele initial density. Finally, we have discussed the effect of Reynolds number which is hold in a completely discrete system. On the transition to turbulent flow using Ultradiscrete Burgers equation model by numerical calculation and analysis.
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