Process Systems Analysis and Control

by ;
Edition: 3rd
Format: Hardcover
Pub. Date: 2011-01-01
Publisher(s): McGraw-Hill Science/Engineering/Math
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Summary

The third edition of Process Systems Analysis and Control retains the excellent style for which this book is well known: short, clearly written chapters. The book is an ideal teaching and learning tool for a semester-long undergraduate chemical engineering course in process dynamics and control. It avoids the encyclopedic approach that many texts on this topic fall into. The third edition is updated to include new topics, including model predictive control and digital control, that are introduced at a level appropriate for the undergraduate chemical engineering curriculum.Computer examples using MATLAB and Simulink have been introduced throughout the book to supplement and enhance standard hand-solved examples. These packages allow the easy construction of block diagrams and quick analysis of control concepts to enable the student to explore "what-if" type problems that would be much more difficult and time consuming by hand. Many new homework problems have been added to each chapter. The new problems are a mixture of hand-solved and computer exercises. One-page capsule summaries have been added to the end of each chapter to help students review and study the most important concepts in each chapter.

Table of Contents

An Introductory Example
The Laplace Transform
The Laplace Transform
Inversion by Partial Fractions
Further Properties of Transforms
Linear Open-Loop System
Response of First-Order Systems
Physical Examples of First-Order Systems
Response of First-Order Systems in Series
Higher-Order Systems Second-Order and Transportation Lag
Linear Closed-Loop Systems
The Control System
Controllers and Final Control Elements
Block Diagram of a Chemical-Reactor Control System
Closed-Loop Transfer Functions
Transient Response of Simple Control Systems
Stability
Root Locus
Frequency Responce
Introduction to Frequency Response
Control System Design by Frequency Response
Process Applications
Advanced Control Strategies
Controller Tuning and Process Identification
Control Valves
Theoretical Analysis of Complex Processes
Sampled Data Control Systems
Sampling and Z-transforms
Open-loop and Closed-loop Response
Stability
Modified Z-transforms
Sampled-Data Control of a First Order Process with Transport Lag
Design of Sampled-data Controllers
State Space Methods
State Space Representation of Physical Systems
Transfer Function Matrix
Multivariable Control
Nonlinear Control
Examples of Nonlinear Systems
Methods of Phase Plane Analysis
The Describing Function Method
Computers in Process Control
Digital Computer Simulation of Control Systems
Microprocessor-Based Controllers and Distributed Control
Table of Contents provided by Publisher. All Rights Reserved.

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