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Stochastic Lagrangian Modeling for Large Eddy Simulation of Dispersed Turbulent Two-Phase Flows.

By: Material type: TextTextPublication details: Sharjah : Bentham Science Publishers, 2011.Description: 1 online resource (130 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781608052967
  • 1608052966
  • 1608053776
  • 9781608053773
Subject(s): Genre/Form: Additional physical formats: Print version:: Stochastic Lagrangian Modeling for Large Eddy Simulation of Dispersed Turbulent Two-Phase Flows.DDC classification:
  • 551.51/5
LOC classification:
  • QC880.4.D44
Online resources:
Contents:
01 Title.pdf; 02 Cover Page; 03 REVISED eBooks End User License Agreement-Website; 04 DEDICATION; 05 CONTENTS; 06 Foreword; 07 PREFACE; 08 CHAPTER 1; 09 CHAPTER 2; 10 CHAPTER 3; 11 CHAPTER 4; 12 CHAPTER 5; 13 CHAPTER 6; 14 CHAPTER 7; 15 CHAPTER 8; 16 Appendix A; 17 Appendix B; 19 Glossary; 20 Author Index; 21 Subject Index.
Summary: Understanding the dispersion and the deposition of inertial particles convected by turbulent flows is a domain of research of considerable industrial interest. Inertial particle transport and dispersion are encountered in a wide range of flow configurations, whether they are of industrial or environmental character. Conventional models for turbulent dispersed flows do not appear capable of meeting the growing needs of chemical, mechanical and petroleum industries in this regard and physical environment testing is prohibitive. Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) ha.
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Electronic-Books Electronic-Books OPJGU Sonepat- Campus E-Books EBSCO Available

01 Title.pdf; 02 Cover Page; 03 REVISED eBooks End User License Agreement-Website; 04 DEDICATION; 05 CONTENTS; 06 Foreword; 07 PREFACE; 08 CHAPTER 1; 09 CHAPTER 2; 10 CHAPTER 3; 11 CHAPTER 4; 12 CHAPTER 5; 13 CHAPTER 6; 14 CHAPTER 7; 15 CHAPTER 8; 16 Appendix A; 17 Appendix B; 19 Glossary; 20 Author Index; 21 Subject Index.

Understanding the dispersion and the deposition of inertial particles convected by turbulent flows is a domain of research of considerable industrial interest. Inertial particle transport and dispersion are encountered in a wide range of flow configurations, whether they are of industrial or environmental character. Conventional models for turbulent dispersed flows do not appear capable of meeting the growing needs of chemical, mechanical and petroleum industries in this regard and physical environment testing is prohibitive. Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) ha.

Print version record.

Includes bibliographical references and index.

English.

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