Prediction of turbulent flows

The prediction of turbulent flows is of paramount importance in the development of complex engineering systems involving flow, heat and mass transfer, and chemical reactions. Arising from a programme held at the Isaac Newton Institute in Cambridge, this volume reviews the current situation regarding...

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Weitere Verfasser: Hewitt, G. F. (HerausgeberIn), Vassilicos, J. C. (HerausgeberIn)
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Veröffentlicht: Cambridge Cambridge University Press 2005
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Datensatz im Suchindex

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any_adam_object
author2 Hewitt, G. F.
Vassilicos, J. C.
author2_role edt
edt
author2_variant g f h gf gfh
j c v jc jcv
author_additional G.F. Hewitt and J.C. Vassilicos
J.C.R. Hunt, N.D. Sandham, J.C. Vassilicos, B.E. Launder, P.A. Monkewitz and G.F. Hewitt
B.E. Launder
W.P. Jones
J.F. Morrison
N.D. Sandham
G.F. Hewitt and M.W. Reeks
J.C.R. Hunt and A.M. Savill
author_facet Hewitt, G. F.
Vassilicos, J. C.
building Verbundindex
bvnumber BV043945054
classification_rvk UF 4300
collection ZDB-20-CBO
contents Introduction
Developments in the understanding and modelling of turbulence
RANS modelling of turbulent flows affected by buoyancy or stratification
Turbulent flames
Boundary layers under strong distortion : an experimentalist's view
Turbulence simulation
Computational modelling of multi-phase flows
Guidelines and criteria for the use of turbulence models in complex flows
ctrlnum (ZDB-20-CBO)CR9780511543227
(OCoLC)850089348
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dewey-hundreds 500 - Natural sciences and mathematics
dewey-ones 532 - Fluid mechanics
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dewey-search 532/.0527/015118
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dewey-tens 530 - Physics
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Cambridge Cambridge University Press 2005
1 online resource (v, 343 pages)
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Title from publisher's bibliographic system (viewed on 05 Oct 2015)
1 Introduction G.F. Hewitt and J.C. Vassilicos 2 Developments in the understanding and modelling of turbulence J.C.R. Hunt, N.D. Sandham, J.C. Vassilicos, B.E. Launder, P.A. Monkewitz and G.F. Hewitt 3 RANS modelling of turbulent flows affected by buoyancy or stratification B.E. Launder 4 Turbulent flames W.P. Jones 5 Boundary layers under strong distortion : an experimentalist's view J.F. Morrison 6 Turbulence simulation N.D. Sandham 7 Computational modelling of multi-phase flows G.F. Hewitt and M.W. Reeks 8 Guidelines and criteria for the use of turbulence models in complex flows J.C.R. Hunt and A.M. Savill
The prediction of turbulent flows is of paramount importance in the development of complex engineering systems involving flow, heat and mass transfer, and chemical reactions. Arising from a programme held at the Isaac Newton Institute in Cambridge, this volume reviews the current situation regarding the prediction of such flows through the use of modern computational fluid dynamics techniques, and attempts to address the inherent problem of modelling turbulence. In particular, the current physical understanding of such flows is summarised and the resulting implications for simulation discussed. The volume continues by surveying current approximation methods whilst discussing their applicability to industrial problems. This major work concludes by providing a specific set of guidelines for selecting the most appropriate model for a given problem. Unique in its breadth and critical approach, this book will be of immense value to experienced practitioners and researchers, continuing the UK's strong tradition in fluid dynamics
Mathematisches Modell
Turbulence / Mathematical models
Unsteady flow (Fluid dynamics) / Mathematical models
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Turbulente Strömung (DE-588)4117265-6 gnd rswk-swf
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Hewitt, G. F. edt
Vassilicos, J. C. edt
Erscheint auch als Druckausgabe 978-0-521-83899-3
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spellingShingle Prediction of turbulent flows
Introduction
Developments in the understanding and modelling of turbulence
RANS modelling of turbulent flows affected by buoyancy or stratification
Turbulent flames
Boundary layers under strong distortion : an experimentalist's view
Turbulence simulation
Computational modelling of multi-phase flows
Guidelines and criteria for the use of turbulence models in complex flows
Mathematisches Modell
Turbulence / Mathematical models
Unsteady flow (Fluid dynamics) / Mathematical models
Mathematisches Modell (DE-588)4114528-8 gnd
Turbulente Strömung (DE-588)4117265-6 gnd
subject_GND (DE-588)4114528-8
(DE-588)4117265-6
(DE-588)4143413-4
title Prediction of turbulent flows
title_alt Introduction
Developments in the understanding and modelling of turbulence
RANS modelling of turbulent flows affected by buoyancy or stratification
Turbulent flames
Boundary layers under strong distortion : an experimentalist's view
Turbulence simulation
Computational modelling of multi-phase flows
Guidelines and criteria for the use of turbulence models in complex flows
title_auth Prediction of turbulent flows
title_exact_search Prediction of turbulent flows
title_full Prediction of turbulent flows edited by G.F. Hewitt and J.C. Vassilicos
title_fullStr Prediction of turbulent flows edited by G.F. Hewitt and J.C. Vassilicos
title_full_unstemmed Prediction of turbulent flows edited by G.F. Hewitt and J.C. Vassilicos
title_short Prediction of turbulent flows
title_sort prediction of turbulent flows
topic Mathematisches Modell
Turbulence / Mathematical models
Unsteady flow (Fluid dynamics) / Mathematical models
Mathematisches Modell (DE-588)4114528-8 gnd
Turbulente Strömung (DE-588)4117265-6 gnd
topic_facet Mathematisches Modell
Turbulence / Mathematical models
Unsteady flow (Fluid dynamics) / Mathematical models
Turbulente Strömung
Aufsatzsammlung
url https://doi.org/10.1017/CBO9780511543227
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