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Chemical Engineering Dynamics

eBook - Modelling with PC Simulation

Heinzle, Elmar/Ingham, John/Dunn, Irving J et al
Erschienen am 11.07.2008, 1. Auflage 2008
159,99 €
(inkl. MwSt.)

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Bibliografische Daten
ISBN/EAN: 9783527616008
Sprache: Englisch
Umfang: 721 S., 33.83 MB
E-Book
Format: PDF
DRM: Adobe DRM

Beschreibung

In this book, the reader is guided through the complex study of dynamic chemical engineering systems by the unique combination of a simplified presentation of the fundamental theory (Part 1) and direct hands-on computer experimentation with the provision of 85 accompanying computer-based simulation examples (Part 2) supplied on diskette.

The ISIM digital simulation language is very simple to use and its powerful interactive nature enables the readers to create their own simulations, based on their own specific problems. This powerful dynamic ISIM software is ready to run on any DOS personal computer.

The treatment employed in this book is well tried and tested, based on over 20 years experience in teaching an international post- experience course. Whether for the teacher, the student, the chemist or engineer, this book serves as the key to a greater understanding of chemical engineering dynamics through the fun and enjoyment of active learning.

Autorenportrait

John Ingham is now retired from Chemical Engineering at Bradford University U.K. The first of a long series of courses on the Modelling and Simulation of Dynamical Chemical Engineering Systems was begun there in 1974, sponsored by the Institution of Chemical Engineers and inspired by leave of absence at the ETH Zurich. Research areas include Liquid-Liquid Column Hydrodynamics, Extraction Process Dynamics and Biochemical Engineeering; the latter, being developed, during a further leave of absence at the GBF, Braunschweig. He is especially proud of this and the two other VCH-Wiley Modelling and Simulation books.

Irving J. Dunn is retired from the ETH-Zurich, where he taught and did research in the area of biochemical engineering for over thirty years, within the Chemical Engineering Dept. His degrees are from the University of Washington and Princeton University. Dr. Dunn has published widely in his field, ranging from bioreactor design, process control, animal cell culture, and specialized wastewater treatment. His teaching and research has featured the use of modelling and simulation and has resulted in the publication of three textbooks: Biological Reaction Engineering, Environmental Bioprocesses and Chemical Engineering Dynamics.

Elmar Heinzle is the Chair of Biochemical Engineering at the Saarland University in Saarbrücken, Germany. Having obtained his academic degrees from the Technical University of Graz, Austria, he spent most of his career at the Chemical Engineering Department of ETH-Zurich, Switzerland, before taking his present appointment. Professor Heinzle published over 200 scientific publications in bioreactor design, metabolic engineering, on-line analysis and control and design of sustainable processes. In his teaching in Biochemical and Chemical Engineering he is extensively using modelling. He has authored several books in these fields.

Jirí E. Prenosil was born 1939 in Prague, Czechoslovakia. Educated in Prague with PhD in Chemical Engineering, he worked in the Czechoslovak Academy of Science and various universities abroad. 1971 he moved to Switzerland with appointment at the Swiss Federal Institute of Technology (ETH) in Zürich. 1984 he was a Visiting Professor at the University of London, Canada. His life interest is in Biochemical Engineering, design and modelling of bioreactors with immobilized biocatalysts. It has resulted in over 100 publications and co-authorship of two other books in this area. He is a co-founder of the renowned International Modelling and Simulation Courses in Braunwald, Switzerland since 1981. 1997 he was granted the Swiss Technology Transfer Award. In 2006, he retired from the ETH.

Inhalt

From the Contents:
Part 1: Chemical Engineering Dynamics
Basic Concepts
Modelling Fundamentals
The Formulation of Dynamic Models
Signal and Process Dynamics
Modelling of Stirred-Tank Reactors
The Batch Reactor
The Continuous Stirred-Tank Reactor
Modelling of Stagewise Mass Transfer Processes
Liquid-Liquid Extraction
Diffusion and Conduction
Unsteady State Heat Conduction
Tubular Chemical Reactors
Differential Contacting Devices
Simplified Model Representation

Part 2: Dynamic Simulation Examples and the ISIM Simulation
Language
Simulation Examples Using ISIM

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