Process simulation and control using ASPEN (TM)
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660.281015118 R36, 2:1 Computational methods for process simulation | 660.2812 S45, 3:1 Product and process design principles: synthesis, analysis, and evaluation | 660.2812 S65:7 Chemical process: design and integration | 660.2815 J36, 2:4 Process simulation and control using ASPEN (TM) | 660.2815 J36, 3:1 Chemical process modelling and computer simulation | 660.2815 S43, 3:22 Process dynamics and control | 660.283 B43:4 Introduction chemical equipment design: mechanical aspects |
Solving the model structure with a large equation set becomes a challenging task due to the involvement of several complex processes in an industrial plant. To overcome these challenges, various process flow sheet simulators are used.
This book, now in its second edition, continues to discuss the simulation, optimization, dynamics and closed-loop control of a wide variety of chemical processes using the most popular commercial flow sheet simulator ASPEN™. A large variety of chemical units including flash drum, continuous stirred tank reactor, plug flow reactor, petroleum refining column, heat exchanger, absorption tower, reactive distillation, distillation train, and monomer production unit are thoroughly explained. The book acquaints the students with the simulation of large chemical plants with several single process units. With the addition of the new sections, additional information and plenty of illustrations and exercises, this text should prove extremely useful for the students.
Designed for the students of chemical engineering at the senior under-graduate and postgraduate level, this book will also be helpful to research scientists and practising engineers as a handy guide to simulation of chemical processes.
NEW TO THIS EDITION :
Section 1.3 on Stepwise Aspen Plus Simulation of Flash Drums is thoroughly updated (Chapter 1)
Section 3.2 on Aspen Plus Simulation of the Binary Distillation Columns is updated, a new section on Simulation of a Reactive Distillation Column is added (Section 3.6), and a new topic on Column Sizing is introduced (Chapter 3)
A new section on Aspen Simulation of a Petlyuk Column with Streams Recycling is included (Chapter 4).