Fr. 316.00

Chemical Process Engineering Volume 1 - Design, Analysis, Simulation, Integration, Problem Solving With

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Written by two of the most prolific and respected chemical engineers in the world, this groundbreaking two-volume set is the "new standard" in the industry, offering engineers and students alike the most up-do-date, comprehensive, and state-of-the-art coverage of processes and best practices in the field today.
 
This first new volume in a two-volume set explores and describes integrating new tools for engineering education and practice for better utilization of the existing knowledge on process design. Useful not only for students, professors, scientists and practitioners, especially process, chemical, mechanical and metallurgical engineers, it is also a valuable reference for other engineers, consultants, technicians and scientists concerned about various aspects of industrial design.
 
The text can be considered as a complementary text to process design for senior and graduate students as well as a hands-on reference work or refresher for engineers at entry level. The contents of the book can also be taught in intensive workshops in the oil, gas, petrochemical, biochemical and process industries.
 
The book provides a detailed description and hands-on experience on process design in chemical engineering, and it is an integrated text that focuses on practical design with new tools, such as Excel spreadsheets and UniSim simulation software.
 
Written by two industry and university's most trustworthy and well-known authors, this book is the new standard in chemical, biochemical, pharmaceutical, petrochemical and petroleum refining. Covering design, analysis, simulation, integration, and, perhaps most importantly, the practical application of Microsoft Excel-UniSim software, this is the most comprehensive and up-to-date coverage of all of the latest developments in the industry. It is a must-have for any engineer or student's library.

Sommario

Preface xvii
 
Acknowledgments xix
 
About the Authors xxi
 
1 Computations with Excel Spreadsheet-UniSim Design Simulation 1
 
Section I - Numerical Analysis 1
 
Introduction 1
 
Excel Spreadsheet 1
 
Functions 2
 
Trendline Coefficients 2
 
Goal Seek 5
 
Solver 6
 
Linear Regression 7
 
Measuring Regression Quality 9
 
Multiple Regression 9
 
Polynomial Regression 11
 
Simultaneous Linear Equations 11
 
Nonlinear Equations 12
 
Interpolations 13
 
Integrations 14
 
The Trapezoidal Rule 14
 
Simpson's 1/3 Rule 15
 
Simpson's 3/8 Rule 15
 
Differential Equations 15
 
Nth Order Ordinary Differential Equations 15
 
Solution of First-Order Ordinary Differential Equations 15
 
Runge-Kutta Methods 16
 
Examples and Solutions 17
 
Section II - Process Simulation 28
 
Introduction 28
 
Thermodynamics for Process Simulators 29
 
UNISIM Design Software 30
 
Examples and Solutions 31
 
References 78
 
2 Physical Property of Pure Components and Mixtures 81
 
Pure Components 81
 
Density of Liquid 82
 
Viscosity of Liquid 83
 
Heat Capacity of Liquid 85
 
Thermal Conductivity of Liquid 87
 
Volumetric Expansion Rate 90
 
Vapor Pressure 91
 
Viscosity of Gas 93
 
Thermal Conductivity of Gas 94
 
Heat Capacity of Gases 95
 
Mixtures 97
 
Surface Tensions 98
 
Viscosity of Gas Mixture 99
 
Enthalpy of Formation 101
 
Enthalpy of Vaporization 103
 
Gibbs Energy of Reaction 105
 
Henry's Law Constant for Gases in Water 107
 
Coefficient of Thermal Expansion of Liquid 108
 
Diffusion Coefficients 109
 
Gas-Phase Diffusion Coefficients 109
 
Liquid-Phase Diffusion Coefficients 110
 
Compressibility Z-factor 111
 
Solubility and Adsorption 116
 
Solubility of Hydrocarbons in Water 116
 
Solubility of Gases in Water 117
 
Solubility of Sulfur and Nitrogen Compounds in Water 118
 
Adsorption on Activated Carbon 119
 
References 119
 
3 Fluid Flow 121
 
Introduction 121
 
Flow of Fluids in Pipes 121
 
Equivalent Length of Various Fittings and Valves 123
 
Excess Head Loss 123
 
Pipe Reduction and Enlargement 124
 
Pressure Drop Calculations for Single-phase Incompressible Fluids 124
 
Friction Factor 127
 
Overall Pressure Drop 128
 
Nomenclature 130
 
Compressible Fluid Flow in Pipes 130
 
Maximum Flow and Pressure Drop 131
 
Critical or Sonic Flow and the Mach Number 131
 
Mach Number 132
 
Mathematical Model of Compressible Isothermal Flow 134
 
Flow Rate Through Pipeline 136
 
Pipeline Pressure Drop 138
 
Nomenclature 139
 
Subscripts 139
 
Two-phase Flow in Process Piping 139
 
Flow Patterns 140
 
Flow Regimes 142
 
Pressure Drop 142
 
Erosion-Corrosion 145
 
Nomenclature 145
 
Vapor-liquid Two-phase Vertical Downflow 146
 
The Equations 147
 
The Algorithm 147
 
Nomenclature 147
 
Line Sizes for Flashing Steam Condensate 148
 
The Equations 148
 
Nomenclature 149
 
Flow Through Packed Beds 150
 
The Equations 151
 
Nomenclature 152
 
Examples and Solutions 152
 
References 162
 

Info autore










A. Kayode Coker, PhD, is an engineering consultant for AKC Technology, an honorary research fellow at the University of Wolverhampton, UK, a former engineering coordinator at Saudi Aramco Shell Refinery Company, and chairman of the Department of Chemical Engineering Technology at Jubail Industrial College, Saudi Arabia. He has been a chartered chemical engineer for more than 30 years. He is a fellow of the Institution of Chemical Engineers, UK, and a senior member of the American Institute of Chemical Engineers. He holds a BSc honors degree in chemical engineering, a master of science degree in process analysis and development and PhD in chemical engineering, all from Aston University, Birmingham, UK, and a Teacher's Certificate in Education at the University of London, UK. He has directed and conducted short courses extensively throughout the world and has been a lecturer at the university level. His articles have been published in several international journals. He is an author of seven books in chemical engineering, a contributor to the Encyclopedia of Chemical Processing and Design, Vol 61 and a certified train-the-mentor trainer. He is also a technical report assessor and interviewer for chartered chemical engineers (IChemE) in the U.K. He is a member of the International Biographical Centre in Cambridge, UK, is in "Leading Engineers of the World for 2008." He is also a member of "International Who's Who of ProfessionalsTM" and "Madison Who's Who in the U.S."
Rahmat Sotudeh-Gharebaagh, PhD, is a full professor of chemical engineering at the University of Tehran. He teaches process modeling and simulation, transport phenomena, plant design and economics and soft skills. His research interests include computer-aided process design and simulation, fluidization, and engineering education. He holds a BEng degree in chemical engineering from Iran's Sharif University of Technology, plus a MSc and a PhD in fluidization engineering from Canada's Polytechnique. He has been an invited Professor at Qatar University and Polytechnique de Montréal. Professor Sotudeh has more than 300 publications in major international journals and conferences, plus four books and four book chapters. He is the co-founder and editor-in-chief of the journal, Chemical Product and Process Modeling, a member of the Iranian Elite Foundation, and an official expert (OE) on the oil industry with the Iranian Official Expert Organization.

Riassunto

Written by two of the most prolific and respected chemical engineers in the world, this groundbreaking two-volume set is the "new standard" in the industry, offering engineers and students alike the most up-do-date, comprehensive, and state-of-the-art coverage of processes and best practices in the field today.

This first new volume in a two-volume set explores and describes integrating new tools for engineering education and practice for better utilization of the existing knowledge on process design. Useful not only for students, professors, scientists and practitioners, especially process, chemical, mechanical and metallurgical engineers, it is also a valuable reference for other engineers, consultants, technicians and scientists concerned about various aspects of industrial design.

The text can be considered as a complementary text to process design for senior and graduate students as well as a hands-on reference work or refresher for engineers at entry level. The contents of the book can also be taught in intensive workshops in the oil, gas, petrochemical, biochemical and process industries.

The book provides a detailed description and hands-on experience on process design in chemical engineering, and it is an integrated text that focuses on practical design with new tools, such as Excel spreadsheets and UniSim simulation software.

Written by two industry and university's most trustworthy and well-known authors, this book is the new standard in chemical, biochemical, pharmaceutical, petrochemical and petroleum refining. Covering design, analysis, simulation, integration, and, perhaps most importantly, the practical application of Microsoft Excel-UniSim software, this is the most comprehensive and up-to-date coverage of all of the latest developments in the industry. It is a must-have for any engineer or student's library.

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