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Approximate Deconvolution Models of Turbulence : Analysis, Phenomenology and Numerical Analysis / by William J. Layton, Leo G. Rebholz
(Lecture Notes in Mathematics. ISSN:16179692 ; 2042)

1st ed. 2012.
出版者 (Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer)
出版年 2012
本文言語 英語
大きさ VIII, 184 p. 22 illus., 11 illus. in color : online resource
著者標目 *Layton, William J author
Rebholz, Leo G author
SpringerLink (Online service)
件 名 LCSH:Numerical analysis
LCSH:Fluid mechanics
FREE:Numerical Analysis
FREE:Engineering Fluid Dynamics
一般注記 1 Introduction -- 2 Large Eddy Simulation -- 3 Approximate Deconvolution Operators and Models -- 4 Phenomenology of ADMs -- 5 Time Relaxation Truncates Scales -- 6 The Leray-Deconvolution Regularization -- 7 NS-alpha- and NS-omega-Deconvolution Regularizations
This volume presents a mathematical development of a recent approach to the modeling and simulation of turbulent flows based on methods for the approximate solution of inverse problems. The resulting Approximate Deconvolution Models or ADMs have some advantages over more commonly used turbulence models – as well as some disadvantages. Our goal in this book is to provide a clear and complete mathematical development of ADMs, while pointing out the difficulties that remain. In order to do so, we present the analytical theory of ADMs, along with its connections, motivations and complements in the phenomenology of and algorithms for ADMs
HTTP:URL=https://doi.org/10.1007/978-3-642-24409-4
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データ種別 電子ブック
分 類 LCC:QA297-299.4
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書誌ID 4000117895
ISBN 9783642244094

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