Noise pollution around airports, trains, and industries increasingly attracts environmental concern and regulation. Designers and researchers have intensified the use of large-eddy simulation (LES) for noise reduced industrial design and acoustical research. This 2007 book, written by 30 experts, presents the theoretical background of acoustics and of LES, followed by details about numerical methods, e.g. discretization schemes, boundary conditions, coupling aspects. Industrially relevant, hybrid RANS/LES techniques for acoustic source predictions are presented in detail. Many applications are featured ranging from simple geometries for mixing layers and jet flows to complex wing and car geometries. Selected applications include scientific investigations at industrial and university research institutions.
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Professor Dr.-Ing. Claus Wagner is Honorary Professor for Industrial Aerodynamics, Ilmenau University of Technology, Germany. Since 1998 he has been a Scientist and Head, Section of Numerical Simulations for Technical Flows, of the Institute for Aerodynamics and Flow Technology, German Aerospace Center, Gottingen, Germany. Dr Wagner's research includes experimental investigations on the resonant control of nonlinear dynamic systems, theoretical and numerical investigations of thermal convection in cylindrical containers and Direct Numerical Simulation and Large-Eddy Simulations of turbulent flows in different configurations. He has held numerous visiting positions in Munich as well as in Gainsville, Florida, USA. Thomas Huettl is a senior scientist and engineering manager at DaimlerChrysler Aerospace, MTU Munchen, and is an aeroacoustics research engineer for the European research project TurboNoiseCFD. His research includes work on the direct numerical simulation of turbulent flows in curved and coiled pipes, direct and large-eddy simulations of boundary layer flows with and without separation in the framework of a French-German DFG-CNRS-Cooperation project. Among his many honors Dr. Huettl was elected a Member of the Senate of the DGLR (2003), Deutsche Gesellschaft fur Luft- und Raumfahrt - Lilienthal - Oberth e.V. Professor Pierre Sagaut received his DEA in Mechanics in 1991 and his PhD in Fluid Mechanics in 1995 at University Pierre et Marie Curie - Paris 6 (Paris, France). He used to work as a research engineer at ONERA (French National Aerospace Research Center) from 1995 to 2002. He has been a Professor in Mechanics at University Pierre et Marie Curie - Paris 6 since 2002. He is also part-time Professor at Ecole Polytechnique (France), and scientific consultant at ONERA, IFP and CERFACS (France). His main research interests are fluid mechanics, aeroacoustics, numerical simulation of turbulent flows (both Direct and Large-Eddy Simulation) and numerical methods. He is also involved in uncertainty modeling for CFD. He authored and co-authored more than 60 papers in peer-reviewed international journals and 130 proceeding papers. He is the author of several books dealing with turbulence modeling and simulation. He is member of several editorial boards: Theoretical and Computational Fluid Dynamics, Journal of Scientific Computing, Progress in CFD. He received three times the ONERA award for the best publication, and the John Green Prize (delivered by ICAS, 2002).
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. Noise pollution around airports, trains, and industries increasingly attracts environmental concern and regulation. Designers and researchers have intensified the use of large-eddy simulation (LES) for noise reduced industrial design and acoustical research. This 2007 book, written by 30 experts, presents the theoretical background of acoustics and of LES, followed by details about numerical methods, e.g. discretization schemes, boundary conditions, coupling aspects. Industrially relevant, hybrid RANS/LES techniques for acoustic source predictions are presented in detail. Many applications are featured ranging from simple geometries for mixing layers and jet flows to complex wing and car geometries. Selected applications include scientific investigations at industrial and university research institutions. Noise around airports, trains, and industries attracts environmental concern and regulation. Large-eddy simulation (LES) is used for noise-reduced design and acoustical research. This 2007 book, by 30 experts, presents the theoretical background of acoustics and LES, and details about numerical methods, e.g. discretization schemes, boundary conditions, and coupling aspects. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9780521871440
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Etat : New. This 2007 book is about large-eddy simulation (LES) used for noise-reduced design and acoustical research. Editor(s): Wagner, Claus; Huttl, Thomas; Sagaut, Pierre. Series Editor(s): Rycroft, Michael J.; Shyy, Wei. Series: Cambridge Aerospace Series. Num Pages: 470 pages, 12 tables. BIC Classification: PHDS; TG. Category: (P) Professional & Vocational. Dimension: 261 x 182 x 24. Weight in Grams: 982. . 2007. Illustrated. hardcover. . . . . N° de réf. du vendeur V9780521871440
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Gebunden. Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Noise around airports, trains, and industries attracts environmental concern and regulation. Large-eddy simulation (LES) is used for noise-reduced design and acoustical research. This 2007 book, by 30 experts, presents the theoretical background of acoustic. N° de réf. du vendeur 446951555
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Hardcover. Etat : new. Hardcover. Noise pollution around airports, trains, and industries increasingly attracts environmental concern and regulation. Designers and researchers have intensified the use of large-eddy simulation (LES) for noise reduced industrial design and acoustical research. This 2007 book, written by 30 experts, presents the theoretical background of acoustics and of LES, followed by details about numerical methods, e.g. discretization schemes, boundary conditions, coupling aspects. Industrially relevant, hybrid RANS/LES techniques for acoustic source predictions are presented in detail. Many applications are featured ranging from simple geometries for mixing layers and jet flows to complex wing and car geometries. Selected applications include scientific investigations at industrial and university research institutions. Noise pollution around airports, trains, and industries increasingly attracts environmental concern and regulation. Designers and researchers have intensified the use of large-eddy simulation (LES) for noise reduced industrial design and acoustical research. This book, written by 30 experts, presents the theoretical background of acoustics and of LES, followed by details about numerical methods, e.g. discretization schemes, boundary conditions, coupling aspects. Industrially relevant, hybrid RANS/LES techniques for acoustic source predictions are presented in detail. Many applications are featured ranging from simple geometries for mixing layers and jet flows to complex wing and car geometries. Selected applications include recent scientific investigations at industrial and university research institutions. Presently one can't offer perfect solution methodologies that address all relevant applications, however the book presents a state of the art collection of methods, tools and evaluation methodologies. The advantages and weaknesses of both the commercial and the research methodologies are carefully presented. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. N° de réf. du vendeur 9780521871440
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Etat : New. This 2007 book is about large-eddy simulation (LES) used for noise-reduced design and acoustical research. Editor(s): Wagner, Claus; Huttl, Thomas; Sagaut, Pierre. Series Editor(s): Rycroft, Michael J.; Shyy, Wei. Series: Cambridge Aerospace Series. Num Pages: 470 pages, 12 tables. BIC Classification: PHDS; TG. Category: (P) Professional & Vocational. Dimension: 261 x 182 x 24. Weight in Grams: 982. . 2007. Illustrated. hardcover. . . . . Books ship from the US and Ireland. N° de réf. du vendeur V9780521871440
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