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Multiscale modeling for process safety applications

Author: Arnab Chakrabarty; Sam Mannan; Tahir Cagin
Publisher: Amsterdam : Butterworth-Heinemann, 2015.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
Multiscale Modeling for Process Safety Applications is a new reference demonstrating the implementation of multiscale modeling techniques on process safety applications. It is a valuable resource for readers interested in theoretical simulations and/or computer simulations of hazardous scenarios. As multi-scale modeling is a computational technique for solving problems involving multiple scales, such as how a  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Arnab Chakrabarty; Sam Mannan; Tahir Cagin
ISBN: 9780123972835 0123972833
OCLC Number: 935677555
Notes: Previously issued in print: 2013.
1. Introduction>2. Process Safety>3. Molecular Modeling in Process Safety>4. CFD in Process Safety>5. Finite Elements and Process Simulation in Process Safety>6. Equipment Failure>7. Inherently Safer Design>8. Industrial Hygiene and Toxicological Issues>9. Conclusion>10. Exercises
Description: 1 online resource.
Responsibility: by Arnab Chakrabarty, Sam Mannan, Tahir Cagin.

Abstract:

Multiscale Modeling for Process Safety Applications is a new reference demonstrating the implementation of multiscale modeling techniques on process safety applications. It is a valuable resource for readers interested in theoretical simulations and/or computer simulations of hazardous scenarios. As multi-scale modeling is a computational technique for solving problems involving multiple scales, such as how a flammable vapor cloud might behave if ignited, this book provides information on the fundamental topics of toxic, fire, and air explosion modeling, as well as modeling jet and pool fires using computational fluid dynamics. The book goes on to cover nanomaterial toxicity, QPSR analysis on relation of chemical structure to flash point, molecular structure and burning velocity, first principle studies of reactive chemicals, water and air reactive chemicals, and dust explosions. Chemical and process safety professionals, as well as faculty and graduate researchers, will benefit from the detailed coverage provided in this book.

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