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Advances in Marine Engineering - Geological Environment and Hazards: Xiaolei Liu, Thorsten Stoesser, Xingsen Guo Advances in Marine Engineering - Geological Environment and Hazards
Xiaolei Liu, Thorsten Stoesser, Xingsen Guo
R2,090 R1,782 Discovery Miles 17 820 Save R308 (15%) Ships in 10 - 15 working days
Large-Eddy Simulation in Hydraulics (Paperback): Wolfgang Rodi, George Constantinescu, Thorsten Stoesser Large-Eddy Simulation in Hydraulics (Paperback)
Wolfgang Rodi, George Constantinescu, Thorsten Stoesser
R1,620 Discovery Miles 16 200 Ships in 12 - 19 working days

Large-Eddy Simulation (LES), which is an advanced eddy-resolving method for calculating turbulent flows, is used increasingly in Computational Fluid Dynamics, also for solving hydraulics and environmental flow problems. The method has generally great potential and is particularly suited for problems dominated by large-scale turbulent structures. This book gives an introduction to the LES method specially geared for hydraulic and environmental engineers. Compared with existing books on LES it is less theoretically and mathematically demanding and hence easier to follow, and it covers special features of flows in water bodies and summarizes the experience gained with LES for calculating such flows. The book was written primarily as an introduction to LES for hydraulic and environmental engineers, but it will also be very useful as an entry to the subject of LES for researchers and students in all fields of fluids engineering. The applications part will further be useful to researchers interested in the physics of flows governed by the dynamics of coherent structures.

Large-Eddy Simulation in Hydraulics (Hardcover, New): Wolfgang Rodi, George Constantinescu, Thorsten Stoesser Large-Eddy Simulation in Hydraulics (Hardcover, New)
Wolfgang Rodi, George Constantinescu, Thorsten Stoesser
R3,740 Discovery Miles 37 400 Ships in 12 - 19 working days

Large-Eddy Simulation (LES), which is an advanced eddy-resolving method for calculating turbulent flows, is used increasingly in Computational Fluid Dynamics, also for solving hydraulics and environmental flow problems. The method has generally great potential and is particularly suited for problems dominated by large-scale turbulent structures. This book gives an introduction to the LES method specially geared for hydraulic and environmental engineers. Compared with existing books on LES it is less theoretically and mathematically demanding and hence easier to follow, and it covers special features of flows in water bodies and summarizes the experience gained with LES for calculating such flows. The book was written primarily as an introduction to LES for hydraulic and environmental engineers, but it will also be very useful as an entry to the subject of LES for researchers and students in all fi elds of fl uids engineering. The applications part will further be useful to researchers interested in the physics of fl ows governed by the dynamics of coherent structures.

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