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E-book: Multiphase Flows with Droplets and Particles, Third Edition

(Martin Luther University, Germany), (University of Magdeburg, Germany), (Texas Christian University, USA)
  • Format: 478 pages
  • Pub. Date: 30-Dec-2022
  • Publisher: CRC Press
  • Language: eng
  • ISBN-13: 9781000790573
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  • Price: 80,59 €*
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  • This ebook is for personal use only. E-Books are non-refundable.
  • Format: 478 pages
  • Pub. Date: 30-Dec-2022
  • Publisher: CRC Press
  • Language: eng
  • ISBN-13: 9781000790573
Other books in subject:

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This book provides an organized, pedagogical study of multiphase flows with particles and droplets. The revision presents new information on particle interactions; particle collisions; thermophoresis and Brownian movement; computational techniques and codes; the treatment of irregularly-shaped particles.



Multiphase Flows with Droplets and Particles provides an organized, pedagogical study of multiphase flows with particles and droplets. This revised edition presents new information on particle interactions, particle collisions, thermophoresis and Brownian movement, computational techniques and codes, and the treatment of irregularly shaped particles. An entire chapter is devoted to the flow of nanoparticles and applications of nanofluids.

Features

  • Discusses the modelling and analysis of nanoparticles.
  • Covers all fundamental aspects of particle and droplet flows.
  • Includes heat and mass transfer processes.
  • Features new and updated sections throughout the text.
  • Includes chapter exercises and a Solutions Manual for adopting instructors.

Designed to complement a graduate course in multiphase flows, the book can also serve as a supplement in short courses for engineers or as a stand-alone reference for engineers and scientists who work in this area.

1. Introduction.
2. Properties of Dispersed Phase Flows.
3. Distributions and Statistics of Particles and Droplets.
4. Hydrodynamic Forces on Particles and Drops.
5. Coupling between particles and fluids.
6. Particle-Particle and Particle-Wall Interactions.
7. Continuous Phase Modeling.
8. Modeling and Numerical Methods.
9. Experimental Methods.
10. Nanoparticles and Nanofluids.