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Computational flow modeling for chemical reactor engineering

Author: Vivek V Ranade
Publisher: San Diego : Academic Press, ©2002.
Series: Process systems engineering series, v. 5
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
This book describes how modeling fluid flow in chemical reactors may offer solutions that improve design, operation, and performance of reactors. Chemical reactors are any vessels, tubes, pipes, or tanks in which chemical reactions take place. Computational Flow Modeling for Chemical Reactor Engineering will show the reactor engineer how to define the specific roles of computational flow modeling, select appropriate  Read more...
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Genre/Form: Electronic books
Online-Publikation
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Vivek V Ranade
ISBN: 0585470952 9780585470955 9780125769600 0125769601
OCLC Number: 645592903
Description: 1 online resource (xiii, 452 Seiten) : Illustrationen (some color).
Contents: Reactor engineering and flow modeling --
Mathematical modeling of flow processes --
Turbulent flow processes --
Multiphase flow processes --
Reactive flow processes --
Numerical solution of model equations --
Numerical solution of complex flow models --
Computational tools for simulating flow processes --
Flow modeling for reactor engineering --
Stirred reactors --
Bubble column reactors --
Fluidized bed reactors --
Fixed bed and other types of reactors.
Series Title: Process systems engineering series, v. 5
Responsibility: Vivek V. Ranade.

Abstract:

This book describes how modeling fluid flow in chemical reactors may offer solutions that improve design, operation, and performance of reactors. Chemical reactors are any vessels, tubes, pipes, or tanks in which chemical reactions take place. Computational Flow Modeling for Chemical Reactor Engineering will show the reactor engineer how to define the specific roles of computational flow modeling, select appropriate tools, and apply these tools to link reactor hardware to reactor performance. Overall methodology is illustrated with numerous case studies. Industry has invested substantial funds in computational flow modeling which will pay off only if it can be used to realize significant performance enhancement in chemical reactors. No other single source exists which provides the information contained in this book.

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