Petroleum Refinery Process Modeling


Petroleum Refinery Process Modeling: Integrated Optimization Tools and Applications 1st Edition
by Y. A. Liu,Ai-Fu Chang,Kiran Pashikanti
Hardcover: 600 pages
Publisher: Wiley-VCH; 1 edition (June 5, 2018)
Language: English
ISBN-10: 9783527344239
ISBN-13: 9783527344239
ASIN: 3527344233


Book Description

About the Author
Y.A. Liu, the Alumni Distinguised Professor and the Frank C. Vilbrandt Endowed Professor of Chemical Engineering at Virginia Tech, received his B.S. (1967), M.S. (1970), and Ph.D. (1974) degrees from National Taiwan University, Tufts University and Princeton University, respectively. Professor Liu devoted his school breaks helping petrochemical industries in developing countries and chemical industries in Virginia with technology development and engineering training. He has taught intensive training courses on computer-aided design, advanced process control, energy and water savings, and refinery and polymerization process modeling to over 7,000 practicing engineers in China, Taiwan and United States.
Ai-Fu Chang received his Ph.D. in the Department of Chemical Engineering at Virginia Polytechnic Institute and State University (Virginia Tech) in September, 2011. He received his B.S. in chemical engineering from National Taiwan University in 2001. He completed his doctoral dissertation on integrated process modeling and product design of biodiesel manufacturing, and refinery reaction and fraction systems. The latter was the basis of this textbook. He has worked on several industrial modeling projects, including poly (acrylonitrile-vinyl acetate), hydrocracking, and biodiesel. These projects were collaborative efforts between Virginia Tech, Aspen Technology, and industrial manufacturers. He is currently employed by: Chevron Phillips Chemical Company.
Kiran Pashikanti was a PhD student in the Department of Chemical Engineering at Virginia Tech. He received his B.S. in chemical engineering from Virginia Commonwealth University in 2005, and his Ph.D. in chemical engineering from Virginia Tech in September, 2011. He has worked on several industrial modeling projects on integrated modeling of refinery reaction and fraction systems, and of carbon-dioxide capture processes. This textbook grows out of his doctoral dissertation on the predictive modeling of fluid catalytic cracking (FCC) and catalytic reforming processes. He is currently employed by: Chevron Phillips Chemical Company.
Contents

About the Authors
Foreword by Lawrence B. Evans
Foreword by Steven R. Cope
Preface
Acknowledgments
Scope of Textbook
Software Selection and Copyright Notice
1 Characterization and Physical and Thermodynamic Properties of Oil Fractions
2Atmospheric or Crude Distillation Unit(CDU)
3 Vacuum Distillation Unit
4 Predictive Modeling of the Fluid Catalytic Cracking (FCC) Process
5 Predictive Modeling of Continuous Catalyst Regeneration(CCR) Reforming Process
6Predictive Modeling of the Hydroprocessing Units
7 Alkylation, Delayed Coking, and Refinery-Wide Simulation
List of Computer Files
Index
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