Hydrodynamics and Transport Processes of Inverse Bubbly Flow

Nonfiction, Science & Nature, Science, Physics, Mechanics, Technology
Cover of the book Hydrodynamics and Transport Processes of Inverse Bubbly Flow by Subrata Kumar Majumder, Elsevier Science
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Author: Subrata Kumar Majumder ISBN: 9780128032886
Publisher: Elsevier Science Publication: March 31, 2016
Imprint: Elsevier Language: English
Author: Subrata Kumar Majumder
ISBN: 9780128032886
Publisher: Elsevier Science
Publication: March 31, 2016
Imprint: Elsevier
Language: English

Hydrodynamics and Transport Processes of Inverse Bubbly Flow provides the science and fundamentals behind hydrodynamic characteristics, including flow regimes, gas entrainment, pressure drop, holdup and mixing characteristics, bubble size distribution, and the interfacial area of inverse bubble flow regimes. Special attention is given to mass and heat transfer.

This book is an indispensable reference for researchers in academia and industry working in chemical and biochemical engineering. Hydrodynamics and Transport Processes of Inverse Bubbly Flow helps facilitate a better understanding of the phenomena of multiphase flow systems as used in chemical and biochemical industries.

  • A first book in the market dedicated to the hydrodynamics of inverse bubbly flows
  • Includes fundamentals of conventional and inverse bubble columns for different hydrodynamic parameters
  • Includes recommendations for future applications of bubble flows
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Hydrodynamics and Transport Processes of Inverse Bubbly Flow provides the science and fundamentals behind hydrodynamic characteristics, including flow regimes, gas entrainment, pressure drop, holdup and mixing characteristics, bubble size distribution, and the interfacial area of inverse bubble flow regimes. Special attention is given to mass and heat transfer.

This book is an indispensable reference for researchers in academia and industry working in chemical and biochemical engineering. Hydrodynamics and Transport Processes of Inverse Bubbly Flow helps facilitate a better understanding of the phenomena of multiphase flow systems as used in chemical and biochemical industries.

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