Unsteady turbulent flow modelling and applications [electronic resource] / David Roos Launchbury.
2016
TA357.5.T87
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Title
Unsteady turbulent flow modelling and applications [electronic resource] / David Roos Launchbury.
ISBN
9783658119126 (electronic book)
3658119128 (electronic book)
9783658119119
3658119128 (electronic book)
9783658119119
Published
Wiesbaden : Springer Vieweg, 2016.
Language
English
Description
1 online resource (xv, 84 pages) : illustrations.
Item Number
10.1007/978-3-658-11912-6 doi
Call Number
TA357.5.T87
Dewey Decimal Classification
532/.0527
Summary
The master thesis of David Roos Launchbury deals with the implementation and validation of a numerical solver for incompressible large eddy simulation (LES) with heat transfer in OpenFOAM. Academic and industrial cases, ranging from flow between parallel plates to film cooling, are investigated utilising existing and newly-implemented turbulence models. Simulations using no turbulence models, i.e. under-resolved DNS (UDNS) simulations, are performed for comparison. Very good results are obtained in all cases with variations among the individual models, with the UDNS simulations performing surprisingly well. The study shows that the developed software is able to simulate complex cases reliably and accurately. Contents Large Eddy Simulation Subgrid Models Solver Validation Parallel Performance Recommendations for LES Simulations Target Groups Lecturers and Students of Engineering and Fluid Dynamics Readers interested in Computational Fluid Dynamics and Turbulence Modelling The Author David Roos Launchbury finished his Master's Degree in Mechanical Engineering in Horw, Switzerland, and is currently working as research associate at Lucerne University of Applied Sciences and Arts - Engineering and Architecture.
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Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed February 4, 2016).
Series
BestMasters.
Available in Other Form
Print version: 9783658119119
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Table of Contents
Large Eddy Simulation
Subgrid Models
Solver
Validation
Parallel Performance
Recommendations for LES Simulations.
Subgrid Models
Solver
Validation
Parallel Performance
Recommendations for LES Simulations.