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Hydrodynamics Of Gasliquid Reactors Normal Operation And Upset Conditions B J Azzopardi

  • SKU: BELL-4306150
Hydrodynamics Of Gasliquid Reactors Normal Operation And Upset Conditions B J Azzopardi
$ 31.00 $ 45.00 (-31%)

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Hydrodynamics Of Gasliquid Reactors Normal Operation And Upset Conditions B J Azzopardi instant download after payment.

Publisher: Wiley
File Extension: PDF
File size: 26.63 MB
Pages: 333
Author: B. J. Azzopardi, R. F. Mudde, S. Lo, H. Morvan, Y. Yan, D. Zhao(auth.)
ISBN: 9780470747711, 9781119970712, 0470747714, 1119970717
Language: English
Year: 2011

Product desciption

Hydrodynamics Of Gasliquid Reactors Normal Operation And Upset Conditions B J Azzopardi by B. J. Azzopardi, R. F. Mudde, S. Lo, H. Morvan, Y. Yan, D. Zhao(auth.) 9780470747711, 9781119970712, 0470747714, 1119970717 instant download after payment.

The design of chemical reactors and their safety are as critical to the success of a chemical process as the actual chemistry taking place within the reactor. This book provides a comprehensive overview of the practical aspects of multiphase reactor design and operation with an emphasis on safety and clean technology. It considers not only standard operation conditions, but also the problems of runaway reaction conditions and protection against ensuing over-pressure.

Hydrodynamics of Multiphase Reactors addresses both practical and theoretical aspects of this topic. Initial chapters discuss various different types of gas/liquid reactors from a practical viewpoint, and later chapters focus on the modelling of multiphase systems and computational methods for reactor design and problem solving. The material is written by experts in their specific fields and will include chapters on the following topics: Multiphase flow, Bubble columns, Sparged stirred vessels, Macroscale modelling, Microscale modelling, Runaway conditions, Behaviour of vessel contents, Choked flow, Measurement techniques.

Content:
Chapter 1 Introduction (pages 1–2):
Chapter 2 Bubble Columns (pages 3–59):
Chapter 3 Sparged Stirred Vessels (pages 61–89):
Chapter 4 Thin Film Reactors (pages 91–123):
Chapter 5 Macroscale Modelling (pages 125–157):
Chapter 6 Mesoscale Modelling Using the Lattice Boltzmann Method (pages 159–190):
Chapter 7 Upset Conditions (pages 191–199):
Chapter 8 Behaviour of Vessel Contents and Outflow Calculations (pages 201–236):
Chapter 9 Choked Flow (pages 237–256):
Chapter 10 Measurement Techniques (pages 257–305):

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