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Titlebook: Direct and Large-Eddy Simulation IV; Bernard J. Geurts,Rainer Friedrich,Olivier Métais Book 2001 Springer Science+Business Media Dordrecht

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書目名稱Direct and Large-Eddy Simulation IV
編輯Bernard J. Geurts,Rainer Friedrich,Olivier Métais
視頻videohttp://file.papertrans.cn/281/280645/280645.mp4
叢書名稱ERCOFTAC Series
圖書封面Titlebook: Direct and Large-Eddy Simulation IV;  Bernard J. Geurts,Rainer Friedrich,Olivier Métais Book 2001 Springer Science+Business Media Dordrecht
描述The workshop ‘Direct and Large-Eddy Simulation-4‘ was held at the Uni- versity ofTwente, July 18-20, 2001. DLES4is part of a series ofERCOFfAC workshops that originated at the University of Surrey in 1994. Over the years the DLES-series has grown into a major international venue focused on the development and application of direct and large-eddy simulation. Fundamental turbulence - and modeling issues but also elements from modem numerical analysis are at the heart of this field of interest, a fact which is clearly reflected by the contents of these proceedings. Modeling and simulation of complex flow phenomena forms a central ele- ment in a large volume of scientific - and applied research. The problem of simulating turbulent flows and capturing their main dynamical features remains a highly motivating challenge. This three-day workshop focused on recent de- velopments in numerical and physical modeling of complex flow phenomena concentrating on modem strategies in the field of direct and large-eddy simula- tion. A major aim was to promote the exchange of ideas and problems from both industrial and academic background paying attention to physical, mathematical and engineering aspe
出版日期Book 2001
關(guān)鍵詞Finite; Simulation; Variable; calculus; complexity; development; environment; model; modeling
版次1
doihttps://doi.org/10.1007/978-94-017-1263-7
isbn_softcover978-90-481-5893-5
isbn_ebook978-94-017-1263-7Series ISSN 1382-4309 Series E-ISSN 2215-1826
issn_series 1382-4309
copyrightSpringer Science+Business Media Dordrecht 2001
The information of publication is updating

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Analysing Near-Wall Behaviour in a Separating Turbulent Boundary Layer by DNS,l scaling is no more valid in situations with strong pressure gradients. A new formulation including the instantaneous pressure gradient gives a considerable improvement of the prediction of the wall shear stress in backward flow events before separation, in the separation zone and after reattachmen
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Springer Handbook of Mechanical Engineeringl scaling is no more valid in situations with strong pressure gradients. A new formulation including the instantaneous pressure gradient gives a considerable improvement of the prediction of the wall shear stress in backward flow events before separation, in the separation zone and after reattachmen
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Direct and Large-Eddy Simulation IV978-94-017-1263-7Series ISSN 1382-4309 Series E-ISSN 2215-1826
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Springer Handbook of Materials DataWe describe numerical methods for DNS and LES of turbulent pipe flow including particles. The method is developed to study the possibility to describe the dispersion of particles by a Langevin equation for particle velocity. To this end the accurate prediction of space-time velocity correlation functions is important.
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https://doi.org/10.1007/978-3-030-47035-7A dynamic subgrid-scale model using explicitly the turbulent kinetic energy, ., is investigated. The evolution for . is predicted by a transport equation. This subgrid-scale model is tested on LES of decaying homogeneous turbulence in a cubic geometry with periodic boundary conditions.
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