Advances in Chemical Engineering Characterization of Flow Particles and Interfaces 1st edition by Jinghai Li – Ebook PDF Instant Download/Delivery:9780123747389 ,0123747384
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ISBN 10:0123747384
ISBN 13: 9780123747389
Author:Jinghai Li
Multi-scale analysis and simulation of chemical processing and reactions have received unprecedented attention in recent years; however, measurement technology focused on multi-scale structures, particularly on meso-scale phenomena, has not been sufficiently addressed. This volume of Advances in Chemical Engineering focuses on the “Characterization of Flow, Particles and Interfaces” to alert the chemical engineering community to this challenging issue presenting six meso-scale measurement technologies.
Advances in Chemical Engineering Characterization of Flow Particles and Interfaces 1st Table of contents:
Chapter 1. Ultrasound-Based Gas-Liquid Interface Detection in Gas-Liquid Two-Phase Flows
1. Introduction
2. Gas-Liquid Interface Inferred from Liquid Velocity
3. Gas-Liquid Interface Inferred from the Peak Ultrasound Echo Intensity
4. Summary
List of Symbols
Acknowledgments
References
Chapter 2. Micromanipulation in Mechanical Characterisation of Single Particles
1. Introduction
2. Description of the Techniques
3. Status and Applications
4. Other Applications
5. Perspectives on Future Development
Nomenclature
Acknowledgements
References
Chapter 3. Particle Image Velocimetry Techniques and its Applications in Multiphase Systems
1. Introduction
2. Fundamentals of Particle Image Velocimetry
3. Various Types of Particle Image Velocimetry
4. Measurement of Multiphase Flow Using Particle Image Velocimetry
5. Summary and outlook
Notation
References
Chapter 4. Positron Emission Imaging in Chemical Engineering
1. Introduction
2. Positron Emission Techniques and their Recent Development
3. Applications
4. Portable PEPT
5. Summary and Future Plans
Symbols and Abbreviations
Acknowledgements
References
Chapter 5. Electrical Capacitance, Electrical Resistance, and Positron Emission Tomography Technique
1. Introduction
2. Electrical Capacitance Tomography
3. Electrical Resistance Tomography
4. Positron Emission Tomography
5. Concluding Remarks
Nomenclature
References
Chapter 6. Time-Resolved Laser-Induced Incandescence
1. Introduction
2. Measurement Principle
3. Flame Investigations
4. Technical Applications
5. Conclusions
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