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Investigations on Mesoscale Structure in Gas-Solid Fluidization and Heterogeneous Drag Model

English · Hardback

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Description

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This book explores the Energy Minimization Multi-scale (EMMS) theory and the drag model for heterogeneous gas-solid fluidized flows. The results show that the cluster density plays a critical role with regard to drag. A novel cluster model is proposed and indicates that the profile of cluster density is single-peaked with the maximum value located at solid concentrations of 0.1~0.15. The EMMS theory is improved with the cluster model and an accurate drag model is developed. The model's universality is achieved by investigating the relationship between the heterogeneity and flow patterns. The drag model is subsequently verified numerically and experimentally.

List of contents

Introduction.- Analysis on the EMMS Theory.- Cluster Model and Heterogeneous Drag Model.- Condition Universality of Heterogeneous Drag Model.- Conclusions and Outlook.

Summary

This book explores the Energy Minimization Multi-scale (EMMS) theory and the drag model for heterogeneous gas-solid fluidized flows. The results show that the cluster density plays a critical role with regard to drag. A novel cluster model is proposed and indicates that the profile of cluster density is single-peaked with the maximum value located at solid concentrations of 0.1~0.15. The EMMS theory is improved with the cluster model and an accurate drag model is developed. The model’s universality is achieved by investigating the relationship between the heterogeneity and flow patterns. The drag model is subsequently verified numerically and experimentally.

Product details

Authors Cheng Chen
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 30.11.2015
 
EAN 9783662483718
ISBN 978-3-662-48371-8
No. of pages 118
Dimensions 163 mm x 242 mm x 12 mm
Weight 346 g
Illustrations XVII, 118 p.
Series Springer Theses
Springer Theses
Subject Natural sciences, medicine, IT, technology > Technology > Heat, energy and power station engineering

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