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Experiments and Numerical Simulations of Turbulent Combustion of Diluted Sprays
TCS 3: Third International Workshop on Turbulent Spray Combustion

English · Paperback / Softback

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This book reflects the results of the 2nd
and 3rd
International Workshops on Turbulent Spray Combustion. The focus is on progress in experiments and numerical simulations for two-phase flows, with emphasis on spray combustion. Knowledge of the dominant phenomena and their interactions allows development of predictive models and their use in combustor and gas turbine design. Experts and young researchers present the state-of-the-art results, report on the latest developments and exchange ideas in the areas of experiments, modelling and simulation of reactive multiphase flows.
The first chapter reflects on flame structure, auto-ignition and atomization with reference to well-characterized burners, to be implemented by modellers with relative ease. The second chapter presents an overview of first simulation results on target test cases, developed at the occasion of the 1st
International Workshop on Turbulent Spray Combustion. In the third chapter, evaporation rate modelling aspects are covered, while the fourth chapter deals with evaporation effects in the context of flamelet models. In chapter five, LES simulation results are discussed for variable fuel and mass loading. The final chapter discusses PDF modelling of turbulent spray combustion.
In short, the contributions in this book are highly valuable for the research community in this field, providing in-depth insight into some of the many aspects of dilute turbulent spray combustion.

Summary


This book reflects the results of the 2
nd

and 3
rd

International Workshops on Turbulent Spray Combustion. The focus is on progress in experiments and numerical simulations for two-phase flows, with emphasis on spray combustion. Knowledge of the dominant phenomena and their interactions allows development of predictive models and their use in combustor and gas turbine design. Experts and young researchers present the state-of-the-art results, report on the latest developments and exchange ideas in the areas of experiments, modelling and simulation of reactive multiphase flows.


The first chapter reflects on flame structure, auto-ignition and atomization with reference to well-characterized burners, to be implemented by modellers with relative ease. The second chapter presents an overview of first simulation results on target test cases, developed at the occasion of the 1
st

International Workshop on Turbulent Spray Combustion. In the third chapter, evaporation rate modelling aspects are covered, while the fourth chapter deals with evaporation effects in the context of flamelet models. In chapter five, LES simulation results are discussed for variable fuel and mass loading. The final chapter discusses PDF modelling of turbulent spray combustion.

In short, the contributions in this book are highly valuable for the research community in this field, providing in-depth insight into some of the many aspects of dilute turbulent spray combustion.

Product details

Assisted by Bart Merci (Editor), Eva Gutheil (Editor), Bar Merci (Editor), Gutheil (Editor), Gutheil (Editor)
Publisher Springer, Berlin
 
Content Book
Product form Paperback / Softback
Publication date 01.01.2016
Subject Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering
 
EAN 9783319354514
ISBN 978-3-31-935451-4
Pages 160
Illustrations X, 160 p. 91 illus., 54 illus. in color.
Dimensions (packing) 15.5 x 0.9 x 23.5 cm
Weight (packing) 271 g
 
Series ERCOFTAC Series > 19
ERCOFTAC Series
Subjects C, engineering, Measurement, Thermodynamics, Engineering Thermodynamics, Heat and Mass Transfer, Classical and Continuum Physics, Phase Transitions and Multiphase Systems, Phase transitions (Statistical physics), Fluid mechanics, Fluid- and Aerodynamics, Fluids, Engineering Fluid Dynamics, Scientific standards, measurement etc, Measurement Science and Instrumentation, Physical measurements, Engineering thermodynamics, Heat engineering, Heat transfer, Mass transfer
 

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