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Computational Fluid Dynamics For The Petrochemical Process Industry
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Computational Fluid Dynamics For The Petrochemical Process Industry - new book

ISBN: 9780792313601

ID: 6384520

The second of the 1989 conferences in the Shell Conference Series, held from 10 to 12 December in the Netherlands and organized by Koninklijke/Shell-Laboratorium, Amsterdam, was on "Computational Fluid Dynamics for Petrochemical Process Equip- ment". The objective was to generate a shared perspective on the subject with respect to its role in the design of equipment involving complex flows. The The second of the 1989 conferences in the Shell Conference Series, held from 10 to 12 December in the Netherlands and organized by Koninklijke/Shell-Laboratorium, Amsterdam, was on "Computational Fluid Dynamics for Petrochemical Process Equip- ment". The objective was to generate a shared perspective on the subject with respect to its role in the design of equipment involving complex flows. The conference was attended by scientists from four Shell laboratories and experts from universities in the USA, France, Great Britain, Germany and The Netherlands. R.V.A. Oliemans, G. Ooms and T.M.M. Verheggen formed the organizing committee. Complexities in fluid flow may arise from equipment geometry and/or the fluids themselves, which can be mUlti-component, single-phase or multiphase. Pressure and temperature gradients and any reactivity of components in the flow stream can be additional factors. Four themes were addressed: turbulent reacting and non-reacting flow, dispersed multiphase flow, separated two-phase flow and fluid flow simulation tools. The capabilities and limitations of a sequence of turbulence flow models, from the relatively simple k-GBP model to direct numerical simulation and large eddy turbulence flow models, were considered for a range of petrochemical process equipment. Flow stability aspects and the potential of cellular automata for the simulation of industrial flows also received attention. The papers published in this special issue of Applied Scientific Research provide a fair representation of the Computational Fluid Dynamics topics discussed in the context of their application to petrochemical process equipment. Books, Technology, Engineering and Agriculture~~Mechanical Engineering & Materials~~Materials Science, Computational Fluid Dynamics For The Petrochemical Process Industry~~Book~~9780792313601, , , , , , , , , ,, [PU: Kluwer Academic Publishers]

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Computational Fluid Dynamics for the Petrochemical Process Industry (Reprinted from 'APPLIED SCIENTIFIC RESEARCH', 48: 3/4, 1991) - R.V.A. Oliemans
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R.V.A. Oliemans:

Computational Fluid Dynamics for the Petrochemical Process Industry (Reprinted from 'APPLIED SCIENTIFIC RESEARCH', 48: 3/4, 1991) - hardcover

ISBN: 0792313607

ID: 16406680538

[EAN: 9780792313601], Neubuch, [PU: Kluwer Academic Publishers], Science|Chemistry|General, Science|Mechanics|General, BRAND NEW PRINT ON DEMAND., Computational Fluid Dynamics for the Petrochemical Process Industry (Reprinted from 'APPLIED SCIENTIFIC RESEARCH', 48: 3/4, 1991), R.V.A. Oliemans, The second of the 1989 conferences in the Shell Conference Series, held from 10 to 12 December in the Netherlands and organized by Koninklijke/Shell-Laboratorium, Amsterdam, was on "Computational Fluid Dynamics for Petrochemical Process Equip- ment". The objective was to generate a shared perspective on the subject with respect to its role in the design of equipment involving complex flows. The conference was attended by scientists from four Shell laboratories and experts from universities in the USA, France, Great Britain, Germany and The Netherlands. R. V. A. Oliemans, G. Ooms and T. M. M. Verheggen formed the organizing committee. Complexities in fluid flow may arise from equipment geometry and/or the fluids themselves, which can be mUlti-component, single-phase or multiphase. Pressure and temperature gradients and any reactivity of components in the flow stream can be additional factors. Four themes were addressed: turbulent reacting and non-reacting flow, dispersed multiphase flow, separated two-phase flow and fluid flow simulation tools. The capabilities and limitations of a sequence of turbulence flow models, from the relatively simple k-GBP model to direct numerical simulation and large eddy turbulence flow models, were considered for a range of petrochemical process equipment. Flow stability aspects and the potential of cellular automata for the simulation of industrial flows also received attention. The papers published in this special issue of Applied Scientific Research provide a fair representation of the Computational Fluid Dynamics topics discussed in the context of their application to petrochemical process equipment.

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Computational Fluid Dynamics for the Petrochemical Process Industry
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Computational Fluid Dynamics for the Petrochemical Process Industry - hardcover

ISBN: 0792313607

ID: 10539017710

[EAN: 9780792313601], Neubuch, [PU: Springer], R. V. A. OLIEMANS,GEOLOGY,MECHANICS,EARTH SCIENCES, Science|Chemistry|General, Science|Mechanics|General, Hardcover. 235 pages. Dimensions: 9.6in. x 6.5in. x 0.8in.The second of the 1989 conferences in the Shell Conference Series, held from 10 to 12 December in the Netherlands and organized by KoninklijkeShell-Laboratorium, Amsterdam, was on Computational Fluid Dynamics for Petrochemical Process Equip- ment. The objective was to generate a shared perspective on the subject with respect to its role in the design of equipment involving complex flows. The conference was attended by scientists from four Shell laboratories and experts from universities in the USA, France, Great Britain, Germany and The Netherlands. R. V. A. Oliemans, G. Ooms and T. M. M. Verheggen formed the organizing committee. Complexities in fluid flow may arise from equipment geometry andor the fluids themselves, which can be mUlti-component, single-phase or multiphase. Pressure and temperature gradients and any reactivity of components in the flow stream can be additional factors. Four themes were addressed: turbulent reacting and non-reacting flow, dispersed multiphase flow, separated two-phase flow and fluid flow simulation tools. The capabilities and limitations of a sequence of turbulence flow models, from the relatively simple k-GBP model to direct numerical simulation and large eddy turbulence flow models, were considered for a range of petrochemical process equipment. Flow stability aspects and the potential of cellular automata for the simulation of industrial flows also received attention. The papers published in this special issue of Applied Scientific Research provide a fair representation of the Computational Fluid Dynamics topics discussed in the context of their application to petrochemical process equipment. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN.

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Computational Fluid Dynamics for the Petrochemical Process Industry (Hardback)
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Computational Fluid Dynamics for the Petrochemical Process Industry (Hardback) - hardcover

1991, ISBN: 0792313607

ID: 3119662087

[EAN: 9780792313601], Neubuch, [PU: Kluwer Academic Publishers, United States], Science|Chemistry|General, Science|Mechanics|General, Language: English Brand New Book ***** Print on Demand *****.The second of the 1989 conferences in the Shell Conference Series, held from 10 to 12 December in the Netherlands and organized by Koninklijke/Shell-Laboratorium, Amsterdam, was on Computational Fluid Dynamics for Petrochemical Process Equip- ment . The objective was to generate a shared perspective on the subject with respect to its role in the design of equipment involving complex flows. The conference was attended by scientists from four Shell laboratories and experts from universities in the USA, France, Great Britain, Germany and The Netherlands. R. V. A. Oliemans, G. Ooms and T. M. M. Verheggen formed the organizing committee. Complexities in fluid flow may arise from equipment geometry and/or the fluids themselves, which can be mUlti-component, single-phase or multiphase. Pressure and temperature gradients and any reactivity of components in the flow stream can be additional factors. Four themes were addressed: turbulent reacting and non-reacting flow, dispersed multiphase flow, separated two-phase flow and fluid flow simulation tools. The capabilities and limitations of a sequence of turbulence flow models, from the relatively simple k-GBP model to direct numerical simulation and large eddy turbulence flow models, were considered for a range of petrochemical process equipment. Flow stability aspects and the potential of cellular automata for the simulation of industrial flows also received attention. The papers published in this special issue of Applied Scientific Research provide a fair representation of the Computational Fluid Dynamics topics discussed in the context of their application to petrochemical process equipment. Reprinted from APPLIED SCIENTIFIC RESEARCH , 48: 3/4, 1991.

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Computational Fluid Dynamics for the Petrochemical Process Industry - R.V.A. Oliemans
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R.V.A. Oliemans:
Computational Fluid Dynamics for the Petrochemical Process Industry - hardcover

1991, ISBN: 9780792313601

ID: 352554

Reprinted from 'APPLIED SCIENTIFIC RESEARCH', 48: 3/4, 1991, Hardcover, Buch, [PU: Kluwer Academic Publishers]

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Details of the book
Computational Fluid Mechanics for the Petrochemical Process Industry
Author:

R.V.A. Oliemans (Editor)

Title:

Computational Fluid Mechanics for the Petrochemical Process Industry

ISBN:

0792313607

Details of the book - Computational Fluid Mechanics for the Petrochemical Process Industry


EAN (ISBN-13): 9780792313601
ISBN (ISBN-10): 0792313607
Hardcover
Publishing year: 1991
Publisher: Springer-Verlag GmbH
248 Pages
Weight: 0,537 kg

Book in our database since 03.02.2008 06:56:43
Book found last time on 18.09.2016 14:33:05
ISBN/EAN: 0792313607

ISBN - alternate spelling:
0-7923-1360-7, 978-0-7923-1360-1

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