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This book contains a thorough and unique record of recent advances
in the important scientific fields fluid-structure interaction,
acoustics and control of priority interest in the academic
community and also in an industrial context regarding new
engineering designs. It updates advances in these fields by
presenting state-of-the-art developments and achievements since the
previous Book published by Springer in 2018 after the 4th FSSIC
Symposium. This book is unique within the related literature
investigating advances in these fields because it addresses them in
a complementary way and thereby enhances cross-fertilization
between them, whereas other books treat these fields separately.
This book reports on the latest developments in computational fluid
dynamics and turbulence modeling, with a special emphasis on hybrid
RANS-LES methods and their industrial applications. It gathers the
proceedings of the Sixth Symposium on Hybrid RANS-LES Methods, held
on September 26-28 in Strasbourg, France. The different chapters
covers a wealth of topics such as flow control, aero-acoustics,
aero-elasticity and CFD-based multidisciplinary optimization.
Further topics include wall-modelled Large Eddy Simulation (WMLES),
embedded LES, Lattice-Bolzman methods, turbulence-resolving
applications and comparisons between LES, hybrid RANS-LES and URANS
methods. The book addresses academic researchers, graduate
students, industrial engineers, as well as industrial R&D
managers and consultants dealing with turbulence modelling,
simulation and measurement, and with multidisciplinary applications
of computational fluid dynamics.
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Progress in Hybrid RANS-LES Modelling - Papers Contributed to the 7th Symposium on Hybrid RANS-LES Methods, 17-19 September, 2018, Berlin, Germany (Hardcover, 1st ed. 2020)
Yannick Hoarau, Shia-Hui Peng, Dieter Schwamborn, Alistair Revell, Charles Mockett
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R4,416
Discovery Miles 44 160
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Ships in 10 - 15 working days
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This book gathers the proceedings of the Seventh Symposium on
Hybrid RANS-LES Methods, which was held on September 17-19 in
Berlin, Germany. The different chapters, written by leading
experts, reports on the most recent developments in flow physics
modelling, and gives a special emphasis to industrially relevant
applications of hybrid RANS-LES methods and other
turbulence-resolving modelling approaches. The book addresses
academic researchers, graduate students, industrial engineers, as
well as industrial R&D managers and consultants dealing with
turbulence modelling, simulation and measurement, and with
multidisciplinary applications of computational fluid dynamics
(CFD), such as flow control, aero-acoustics, aero-elasticity and
CFD-based multidisciplinary optimization. It discusses in
particular advanced hybrid RANS-LES methods. Further topics include
wall-modelled Large Eddy Simulation (WMLES) methods, embedded LES,
Lattice-Bolzman methods and turbulence-resolving applications and a
comparison of the LES methods with both hybrid RANS-LES and URANS
methods. Overall, the book provides readers with a snapshot on the
state-of-the-art in CFD and turbulence modelling, with a special
focus to hybrid RANS-LES methods and their industrial applications.
This book contains a thorough and unique record of recent advances
in the important scientific fields fluid-structure interaction,
acoustics and control of priority interest in the academic
community and also in an industrial context regarding new
engineering designs. It updates advances in these fields by
presenting state-of-the-art developments and achievements since the
previous Book published by Springer in 2018 after the 4th FSSIC
Symposium. This book is unique within the related literature
investigating advances in these fields because it addresses them in
a complementary way and thereby enhances cross-fertilization
between them, whereas other books treat these fields separately.
|
Progress in Hybrid RANS-LES Modelling - Papers Contributed to the 7th Symposium on Hybrid RANS-LES Methods, 17-19 September, 2018, Berlin, Germany (Paperback, 1st ed. 2020)
Yannick Hoarau, Shia-Hui Peng, Dieter Schwamborn, Alistair Revell, Charles Mockett
|
R4,386
Discovery Miles 43 860
|
Ships in 10 - 15 working days
|
This book gathers the proceedings of the Seventh Symposium on
Hybrid RANS-LES Methods, which was held on September 17-19 in
Berlin, Germany. The different chapters, written by leading
experts, reports on the most recent developments in flow physics
modelling, and gives a special emphasis to industrially relevant
applications of hybrid RANS-LES methods and other
turbulence-resolving modelling approaches. The book addresses
academic researchers, graduate students, industrial engineers, as
well as industrial R&D managers and consultants dealing with
turbulence modelling, simulation and measurement, and with
multidisciplinary applications of computational fluid dynamics
(CFD), such as flow control, aero-acoustics, aero-elasticity and
CFD-based multidisciplinary optimization. It discusses in
particular advanced hybrid RANS-LES methods. Further topics include
wall-modelled Large Eddy Simulation (WMLES) methods, embedded LES,
Lattice-Bolzman methods and turbulence-resolving applications and a
comparison of the LES methods with both hybrid RANS-LES and URANS
methods. Overall, the book provides readers with a snapshot on the
state-of-the-art in CFD and turbulence modelling, with a special
focus to hybrid RANS-LES methods and their industrial applications.
This book reports on the latest developments in computational fluid
dynamics and turbulence modeling, with a special emphasis on hybrid
RANS-LES methods and their industrial applications. It gathers the
proceedings of the Sixth Symposium on Hybrid RANS-LES Methods, held
on September 26-28 in Strasbourg, France. The different chapters
covers a wealth of topics such as flow control, aero-acoustics,
aero-elasticity and CFD-based multidisciplinary optimization.
Further topics include wall-modelled Large Eddy Simulation (WMLES),
embedded LES, Lattice-Bolzman methods, turbulence-resolving
applications and comparisons between LES, hybrid RANS-LES and URANS
methods. The book addresses academic researchers, graduate
students, industrial engineers, as well as industrial R&D
managers and consultants dealing with turbulence modelling,
simulation and measurement, and with multidisciplinary applications
of computational fluid dynamics.
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