<p>This brief is concerned with tempered stable distributions and their associated Levy processes. It is a good text for researchers interested in learning about tempered stable distributions. <br>A tempered stable distribution is one which takes a stable distribution and modifies its tails to make
Multiscale Modeling for Process Safety Applications
β Scribed by Cagin, Tahir; Chakrabarty, Arnab; Mannan, Sam
- Publisher
- Butterworth-Heinemann
- Year
- 2015
- Tongue
- English
- Leaves
- 431
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
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.
- Provides the only comprehensive source addressing the use of multiscale modeling in the context of process safety
- Bridges multiscale modeling with process safety, enabling the reader to understand mapping between problem detail and effective usage of resources
- Presents an overall picture of addressing safety problems in all levels of modeling and the latest approaches to each in the field
- Features worked out examples, case studies, and a question bank to aid understanding and involvement for the reader
β¦ Table of Contents
Content:
Front Matter,Copyright,Preface,AcknowledgmentsEntitled to full textChapter 1 - Introduction, Pages 1-3
Chapter 2 - Process Safety, Pages 5-110
Chapter 3 - Molecular-Level Modeling and Simulation in Process Safety, Pages 111-210
Chapter 4 - Computational Fluid Dynamics Simulation in Process Safety, Pages 211-274
Chapter 5 - Finite Element Analysis inΒ Process Safety Applications, Pages 275-288
Chapter 6 - Dynamic Simulation, Chaos Theory, and Statistical Analysis in Process Safety, Pages 289-308
Chapter 7 - Equipment Failure, Pages 309-338
Chapter 8 - Inherently Safer Design, Pages 339-396
Chapter 9 - Application of Modeling for Industrial Hygiene andΒ Toxicological Issues, Pages 397-406
Chapter 10 - Conclusion, Pages 407-409
Chapter 11 - Exercises, Pages 411-422
Index, Pages 423-429
π SIMILAR VOLUMES
<p>This book presents current spatial and temporal multiscaling approaches of materials modeling. Recent results demonstrate the deduction of macroscopic properties at the device and component level by simulating structures and materials sequentially on atomic, micro- and mesostructural scales. The
<p>This book presents current spatial and temporal multiscaling approaches of materials modeling. Recent results demonstrate the deduction of macroscopic properties at the device and component level by simulating structures and materials sequentially on atomic, micro- and mesostructural scales. The
<p>This book exhibits current approaches to multiscaling in the spatial and temporal domain of materials modeling. The task of deducing properties and behaviours at the device and component level by simulating structures and materials at the atomic and microstructure scales is demonstrated by recent
Written by an international team of contributors under the guidance of a distinguished editor, this book summarizes key techniques and their applications. The various chapters cover the spectrum of scales in modelling methodologies, including electronic structure calculations, mesoscale and continuu