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Direct and Large-Eddy Simulation IX (Hardcover): Jochen Froehlich, Hans Kuerten, Bernard J. Geurts, Vincenzo Armenio Direct and Large-Eddy Simulation IX (Hardcover)
Jochen Froehlich, Hans Kuerten, Bernard J. Geurts, Vincenzo Armenio
R5,716 Discovery Miles 57 160 Ships in 18 - 22 working days

This volume reflects the state of the art of numerical simulation of transitional and turbulent flows and provides an active forum for discussion of recent developments in simulation techniques and understanding of flow physics. Following the tradition of earlier DLES workshops, these papers address numerous theoretical and physical aspects of transitional and turbulent flows. At an applied level it contributes to the solution of problems related to energy production, transportation, magneto-hydrodynamics and the environment. A special session is devoted to quality issues of LES. The ninth Workshop on 'Direct and Large-Eddy Simulation' (DLES-9) was held in Dresden, April 3-5, 2013, organized by the Institute of Fluid Mechanics at Technische Universitat Dresden. This book is of interest to scientists and engineers, both at an early level in their career and at more senior levels.

Direct and Large Eddy Simulation XII (Hardcover, 1st ed. 2020): Manuel Garcia-Villalba, Hans Kuerten, Maria Vittoria Salvetti Direct and Large Eddy Simulation XII (Hardcover, 1st ed. 2020)
Manuel Garcia-Villalba, Hans Kuerten, Maria Vittoria Salvetti
R4,100 Discovery Miles 41 000 Ships in 18 - 22 working days

This book gathers the proceedings of the 12th instalment in the bi-annual Workshop series on Direct and Large Eddy Simulation (DLES), which began in 1994 and focuses on modern techniques used to simulate turbulent flows based on the partial or full resolution of the instantaneous turbulent flow structure. With the rapidly expanding capacities of modern computers, this approach has attracted more and more interest over the years and will undoubtedly be further enhanced and applied in the future. Hybrid modelling techniques based on a combination of LES and RANS approaches also fall into this category and are covered as well. The goal of the Workshop was to share the state of the art in DNS, LES and related techniques for the computation and modelling of turbulent and transitional flows. The respective papers highlight the latest advances in the prediction, understanding and control of turbulent flows in academic and industrial applications.

Direct and Large-Eddy Simulation VIII (Hardcover, 2011 ed.): Hans Kuerten, Bernard Geurts, Vincenzo Armenio, Jochen Froehlich Direct and Large-Eddy Simulation VIII (Hardcover, 2011 ed.)
Hans Kuerten, Bernard Geurts, Vincenzo Armenio, Jochen Froehlich
R5,217 Discovery Miles 52 170 Ships in 18 - 22 working days

This volume continues previous DLES proceedings books, presenting modern developments in turbulent flow research. It is comprehensive in its coverage of numerical and modeling techniques for fluid mechanics.

After Surrey in 1994, Grenoble in 1996, Cambridge in 1999, Enschede in 2001, Munich in 2003, Poitiers in 2005, and Trieste in 2009, the 8th workshop, DLES8, was held in Eindhoven, The Netherlands, again under the auspices of ERCOFTAC. Following the spirit of the series, the goal of thisworkshopis to establish a state-of-the-art of DNS and LES techniques for the computation and modeling of transitional/turbulent flows covering a broad scope of topics such as aerodynamics, acoustics, combustion, multiphase flows, environment, geophysics and bio-medical applications. This gathering of specialists in the field was a unique opportunity for discussions about the more recent advances in the prediction, understanding and control of turbulent flows in academic or industrial situations.

"

Direct and Large-Eddy Simulation VIII (Paperback, 2011 ed.): Hans Kuerten, Bernard Geurts, Vincenzo Armenio, Jochen Froehlich Direct and Large-Eddy Simulation VIII (Paperback, 2011 ed.)
Hans Kuerten, Bernard Geurts, Vincenzo Armenio, Jochen Froehlich
R5,190 Discovery Miles 51 900 Ships in 18 - 22 working days

This volume continues previous DLES proceedings books, presenting modern developments in turbulent flow research. It is comprehensive in its coverage of numerical and modeling techniques for fluid mechanics.

After Surrey in 1994, Grenoble in 1996, Cambridge in 1999, Enschede in 2001, Munich in 2003, Poitiers in 2005, and Trieste in 2009, the 8th workshop, DLES8, was held in Eindhoven, The Netherlands, again under the auspices of ERCOFTAC. Following the spirit of the series, the goal of thisworkshopis to establish a state-of-the-art of DNS and LES techniques for the computation and modeling of transitional/turbulent flows covering a broad scope of topics such as aerodynamics, acoustics, combustion, multiphase flows, environment, geophysics and bio-medical applications. This gathering of specialists in the field was a unique opportunity for discussions about the more recent advances in the prediction, understanding and control of turbulent flows in academic or industrial situations.

"

Direct and Large Eddy Simulation XII (Paperback, 1st ed. 2020): Manuel Garcia-Villalba, Hans Kuerten, Maria Vittoria Salvetti Direct and Large Eddy Simulation XII (Paperback, 1st ed. 2020)
Manuel Garcia-Villalba, Hans Kuerten, Maria Vittoria Salvetti
R4,073 Discovery Miles 40 730 Ships in 18 - 22 working days

This book gathers the proceedings of the 12th instalment in the bi-annual Workshop series on Direct and Large Eddy Simulation (DLES), which began in 1994 and focuses on modern techniques used to simulate turbulent flows based on the partial or full resolution of the instantaneous turbulent flow structure. With the rapidly expanding capacities of modern computers, this approach has attracted more and more interest over the years and will undoubtedly be further enhanced and applied in the future. Hybrid modelling techniques based on a combination of LES and RANS approaches also fall into this category and are covered as well. The goal of the Workshop was to share the state of the art in DNS, LES and related techniques for the computation and modelling of turbulent and transitional flows. The respective papers highlight the latest advances in the prediction, understanding and control of turbulent flows in academic and industrial applications.

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