Computational Fluid Dynamics
Applications in Environmental Hydraulics
Herausgegeben:Bates, Paul D.; Lane, Stuart N.; Ferguson, R.
Computational Fluid Dynamics
Applications in Environmental Hydraulics
Herausgegeben:Bates, Paul D.; Lane, Stuart N.; Ferguson, R.
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Uniquely outlines CFD theory in a manner relevant to environmental applications. This book addresses the basic topics in CFD modelling in a thematic manner to provided the necessary theoretical background, as well as providing global cases studies showing how CFD models can be used in practice demonstrating how good practice can be achieved , with reference to both established and new applications. _ First book to apply CFD to the environmental sciences _ Written at a level suitable for non-mathematicians
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Uniquely outlines CFD theory in a manner relevant to environmental applications. This book addresses the basic topics in CFD modelling in a thematic manner to provided the necessary theoretical background, as well as providing global cases studies showing how CFD models can be used in practice demonstrating how good practice can be achieved , with reference to both established and new applications.
_ First book to apply CFD to the environmental sciences
_ Written at a level suitable for non-mathematicians
_ First book to apply CFD to the environmental sciences
_ Written at a level suitable for non-mathematicians
Produktdetails
- Produktdetails
- Verlag: Wiley & Sons
- 1. Auflage
- Seitenzahl: 540
- Erscheinungstermin: 1. Mai 2005
- Englisch
- Abmessung: 251mm x 173mm x 36mm
- Gewicht: 1180g
- ISBN-13: 9780470843598
- ISBN-10: 0470843594
- Artikelnr.: 14069174
- Verlag: Wiley & Sons
- 1. Auflage
- Seitenzahl: 540
- Erscheinungstermin: 1. Mai 2005
- Englisch
- Abmessung: 251mm x 173mm x 36mm
- Gewicht: 1180g
- ISBN-13: 9780470843598
- ISBN-10: 0470843594
- Artikelnr.: 14069174
Paul D. Bates is a Professor of Hydrology at the University of Bristol, UK. He is a Fellow of the American Geophysical Union and a Royal Society Wolfson Research Merit Award holder. Stuart N. Lane is the editor of Computational Fluid Dynamics: Applications in Environmental Hydraulics, published by Wiley. Robert I. Ferguson is the editor of Computational Fluid Dynamics: Applications in Environmental Hydraulics, published by Wiley.
1 Introduction to CFD (Bates (Bristol, UK), Lane (Leeds, UK) and Ferguson
(Sheffield, UK)). 2 Fundamental equations for CFD in river flow simulations
(D.B. Ingham and L. Ma). 3 Modelling Solute Transport Processes in Free
Surface Flow CFD Schemes (I. Guymer, C. Wilson and J. Boxall). 4 Basic
equations for sediment transport in CFD for fluvial morphodynamics (E.
Mosselman). 5 Introduction to Statistical Turbulence Modeling for Hydraulic
Engineering Flows (F. Sotiropoulos). 6 Modelling wetting and drying
processes in hydraulic models (P. D. Bates and M. S. Horritt). 7
Introduction to Numerical Methods for Fluid Flow (N. G. Wright). 8 A
framework for model verification and validation of CFD schemes in natural
open channel flows (S. N. Lane, R. J. Hardy, R. I. Ferguson and D. R.
Parsons). 9 Parameterisation, validation and uncertainty analysis of CFD
models of fluvial and flood hydraulics in the natural environment (M. S.
Horritt). 10 Modelling reach-scale fluvial flows (S. N. Lane and R. I.
Ferguson). 11 Numerical modeling of floodplain flow (P. D. Bates, M. S.
Horritt, N. M. Hunter, D. Mason and D. Cobby). 12 Modelling water quality
processes in estuaries (R. A. Falconer, B. Lin and S. M. Kashefipour). 13
Roughness parameterization in CFD modeling of gravel-bed rivers (A. P.
Nicholas). 14 Modelling of sand deposition in archaeologically significant
reaches of the Colorado River in Grand Canyon, USA (S. Wiele and M.
Torizzo). 15 Modelling of open channel flow through vegetation (C. A. M. E.
Wilson, T. Stoesser and P. D. Bates). 16 Ecohydraulics: a new
interdisciplinary frontier for CFD (M. Leclerc). 17 Towards risk based
prediction in real world applications of complex hydraulic models (B. G.
Hankin and K. J. Beven). 18 CFD for environmental design and management (G.
Pender, H. P. Morvan, N. G. Wright and D. A. Ervine).
(Sheffield, UK)). 2 Fundamental equations for CFD in river flow simulations
(D.B. Ingham and L. Ma). 3 Modelling Solute Transport Processes in Free
Surface Flow CFD Schemes (I. Guymer, C. Wilson and J. Boxall). 4 Basic
equations for sediment transport in CFD for fluvial morphodynamics (E.
Mosselman). 5 Introduction to Statistical Turbulence Modeling for Hydraulic
Engineering Flows (F. Sotiropoulos). 6 Modelling wetting and drying
processes in hydraulic models (P. D. Bates and M. S. Horritt). 7
Introduction to Numerical Methods for Fluid Flow (N. G. Wright). 8 A
framework for model verification and validation of CFD schemes in natural
open channel flows (S. N. Lane, R. J. Hardy, R. I. Ferguson and D. R.
Parsons). 9 Parameterisation, validation and uncertainty analysis of CFD
models of fluvial and flood hydraulics in the natural environment (M. S.
Horritt). 10 Modelling reach-scale fluvial flows (S. N. Lane and R. I.
Ferguson). 11 Numerical modeling of floodplain flow (P. D. Bates, M. S.
Horritt, N. M. Hunter, D. Mason and D. Cobby). 12 Modelling water quality
processes in estuaries (R. A. Falconer, B. Lin and S. M. Kashefipour). 13
Roughness parameterization in CFD modeling of gravel-bed rivers (A. P.
Nicholas). 14 Modelling of sand deposition in archaeologically significant
reaches of the Colorado River in Grand Canyon, USA (S. Wiele and M.
Torizzo). 15 Modelling of open channel flow through vegetation (C. A. M. E.
Wilson, T. Stoesser and P. D. Bates). 16 Ecohydraulics: a new
interdisciplinary frontier for CFD (M. Leclerc). 17 Towards risk based
prediction in real world applications of complex hydraulic models (B. G.
Hankin and K. J. Beven). 18 CFD for environmental design and management (G.
Pender, H. P. Morvan, N. G. Wright and D. A. Ervine).
1 Introduction to CFD (Bates (Bristol, UK), Lane (Leeds, UK) and Ferguson
(Sheffield, UK)). 2 Fundamental equations for CFD in river flow simulations
(D.B. Ingham and L. Ma). 3 Modelling Solute Transport Processes in Free
Surface Flow CFD Schemes (I. Guymer, C. Wilson and J. Boxall). 4 Basic
equations for sediment transport in CFD for fluvial morphodynamics (E.
Mosselman). 5 Introduction to Statistical Turbulence Modeling for Hydraulic
Engineering Flows (F. Sotiropoulos). 6 Modelling wetting and drying
processes in hydraulic models (P. D. Bates and M. S. Horritt). 7
Introduction to Numerical Methods for Fluid Flow (N. G. Wright). 8 A
framework for model verification and validation of CFD schemes in natural
open channel flows (S. N. Lane, R. J. Hardy, R. I. Ferguson and D. R.
Parsons). 9 Parameterisation, validation and uncertainty analysis of CFD
models of fluvial and flood hydraulics in the natural environment (M. S.
Horritt). 10 Modelling reach-scale fluvial flows (S. N. Lane and R. I.
Ferguson). 11 Numerical modeling of floodplain flow (P. D. Bates, M. S.
Horritt, N. M. Hunter, D. Mason and D. Cobby). 12 Modelling water quality
processes in estuaries (R. A. Falconer, B. Lin and S. M. Kashefipour). 13
Roughness parameterization in CFD modeling of gravel-bed rivers (A. P.
Nicholas). 14 Modelling of sand deposition in archaeologically significant
reaches of the Colorado River in Grand Canyon, USA (S. Wiele and M.
Torizzo). 15 Modelling of open channel flow through vegetation (C. A. M. E.
Wilson, T. Stoesser and P. D. Bates). 16 Ecohydraulics: a new
interdisciplinary frontier for CFD (M. Leclerc). 17 Towards risk based
prediction in real world applications of complex hydraulic models (B. G.
Hankin and K. J. Beven). 18 CFD for environmental design and management (G.
Pender, H. P. Morvan, N. G. Wright and D. A. Ervine).
(Sheffield, UK)). 2 Fundamental equations for CFD in river flow simulations
(D.B. Ingham and L. Ma). 3 Modelling Solute Transport Processes in Free
Surface Flow CFD Schemes (I. Guymer, C. Wilson and J. Boxall). 4 Basic
equations for sediment transport in CFD for fluvial morphodynamics (E.
Mosselman). 5 Introduction to Statistical Turbulence Modeling for Hydraulic
Engineering Flows (F. Sotiropoulos). 6 Modelling wetting and drying
processes in hydraulic models (P. D. Bates and M. S. Horritt). 7
Introduction to Numerical Methods for Fluid Flow (N. G. Wright). 8 A
framework for model verification and validation of CFD schemes in natural
open channel flows (S. N. Lane, R. J. Hardy, R. I. Ferguson and D. R.
Parsons). 9 Parameterisation, validation and uncertainty analysis of CFD
models of fluvial and flood hydraulics in the natural environment (M. S.
Horritt). 10 Modelling reach-scale fluvial flows (S. N. Lane and R. I.
Ferguson). 11 Numerical modeling of floodplain flow (P. D. Bates, M. S.
Horritt, N. M. Hunter, D. Mason and D. Cobby). 12 Modelling water quality
processes in estuaries (R. A. Falconer, B. Lin and S. M. Kashefipour). 13
Roughness parameterization in CFD modeling of gravel-bed rivers (A. P.
Nicholas). 14 Modelling of sand deposition in archaeologically significant
reaches of the Colorado River in Grand Canyon, USA (S. Wiele and M.
Torizzo). 15 Modelling of open channel flow through vegetation (C. A. M. E.
Wilson, T. Stoesser and P. D. Bates). 16 Ecohydraulics: a new
interdisciplinary frontier for CFD (M. Leclerc). 17 Towards risk based
prediction in real world applications of complex hydraulic models (B. G.
Hankin and K. J. Beven). 18 CFD for environmental design and management (G.
Pender, H. P. Morvan, N. G. Wright and D. A. Ervine).