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Control and Safety Analysis of Intensified Chemical Processes

E-BookEPUB2 - DRM Adobe / EPUBE-Book
384 Seiten
Englisch
Wiley-VCHerschienen am20.03.20241. Auflage
Control and Safety Analysis of Intensified Chemical Processes
Resource on the control and safety analysis of intensified chemical processes, ranging from general methods to specific applications
Control and Safety Analysis of Intensified Chemical Processes covers the basic principles of and recent developments in control and safety analysis of intensified chemical processes, ranging from dynamic simulations and safety analysis to the design and control of important processes. The text discusses general methods and tools such as dynamic simulation, control and safety analysis as well as design aspects and analysis of important applications in order to provide scientists and engineers with an understanding of the design, control and safety considerations involved in intensified chemical processes.
Sample topics covered in Control and Safety Analysis of Intensified Chemical Processes include: Simulation and optimization methods, common programs and simulators for simulation and optimization, and interfacing of simulators and optimizers
Programs/simulators for dynamic simulation and control, tuning of controllers, and popular criteria for control assessment
Control of a hybrid reactive-extractive distillation systems for ternary azeotropic mixtures, reactive distillation in recycle systems, and middle vessel batch distillation with vapor recompression
Safety analysis of intensified processes (e.g. extractive distillation, dividing wall column, dividing wall column with mechanical vapor recompression, and algal biodiesel process)

A comprehensive resource on the subject, Control and Safety Analysis of Intensified Chemical Processes is a highly valuable reference for researchers, students and practitioners interested in process intensification and their applications. The text can be adopted by instructors for use in advanced courses on process control and safety.


Dr. Dipesh Shikchand Patle is associated with the Motilal Nehru National Institute of Technology Allahabad (India). His research interests include Biodiesel Synthesis, Process Intensification, Simulation, Plantwide Control, and Operator Training Simulator development.
Dr. Gade Pandu Rangaiah has been with the National University of Singapore since 1982. His extensive research covers Modeling, Design, Optimization, and Control of (Intensified) Chemical and related Processes. Currently, it is focused on Multi-Objective Optimization and Multi-Criteria Decision Making, and their Applications.
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Verfügbare Formate
BuchGebunden
EUR129,00
E-BookEPUB2 - DRM Adobe / EPUBE-Book
EUR115,99

Produkt

KlappentextControl and Safety Analysis of Intensified Chemical Processes
Resource on the control and safety analysis of intensified chemical processes, ranging from general methods to specific applications
Control and Safety Analysis of Intensified Chemical Processes covers the basic principles of and recent developments in control and safety analysis of intensified chemical processes, ranging from dynamic simulations and safety analysis to the design and control of important processes. The text discusses general methods and tools such as dynamic simulation, control and safety analysis as well as design aspects and analysis of important applications in order to provide scientists and engineers with an understanding of the design, control and safety considerations involved in intensified chemical processes.
Sample topics covered in Control and Safety Analysis of Intensified Chemical Processes include: Simulation and optimization methods, common programs and simulators for simulation and optimization, and interfacing of simulators and optimizers
Programs/simulators for dynamic simulation and control, tuning of controllers, and popular criteria for control assessment
Control of a hybrid reactive-extractive distillation systems for ternary azeotropic mixtures, reactive distillation in recycle systems, and middle vessel batch distillation with vapor recompression
Safety analysis of intensified processes (e.g. extractive distillation, dividing wall column, dividing wall column with mechanical vapor recompression, and algal biodiesel process)

A comprehensive resource on the subject, Control and Safety Analysis of Intensified Chemical Processes is a highly valuable reference for researchers, students and practitioners interested in process intensification and their applications. The text can be adopted by instructors for use in advanced courses on process control and safety.


Dr. Dipesh Shikchand Patle is associated with the Motilal Nehru National Institute of Technology Allahabad (India). His research interests include Biodiesel Synthesis, Process Intensification, Simulation, Plantwide Control, and Operator Training Simulator development.
Dr. Gade Pandu Rangaiah has been with the National University of Singapore since 1982. His extensive research covers Modeling, Design, Optimization, and Control of (Intensified) Chemical and related Processes. Currently, it is focused on Multi-Objective Optimization and Multi-Criteria Decision Making, and their Applications.
Details
Weitere ISBN/GTIN9783527843640
ProduktartE-Book
EinbandartE-Book
FormatEPUB
Format Hinweis2 - DRM Adobe / EPUB
FormatFormat mit automatischem Seitenumbruch (reflowable)
Verlag
Erscheinungsjahr2024
Erscheinungsdatum20.03.2024
Auflage1. Auflage
Seiten384 Seiten
SpracheEnglisch
Dateigrösse33643 Kbytes
Artikel-Nr.14216641
Rubriken
Genre9201

Inhalt/Kritik

Inhaltsverzeichnis
PART I: Overview and Background
Chapter 1: Introduction
Chapter 2: Principles, Potential and Challenges of Intensified Chemical Processes
PART II: Methods and Tools for Simulation, Control and Safety Analysis
Chapter 3: Simulation and optimization of Intensified Chemical Processes
Chapter 4: Dynamic Simulation and Control of Intensified Chemical Processes
Chapter 5: Safety Analysis of Intensified Chemical Processes
PART III: Control and Safety Analysis of Intensified Chemical Processes
Chapter 6: Control of a distillation column with dual steam and hot oil reboilers
Chapter 7: Design and control of an energy intensified side-stream extractive distillation for binary azeotropic separation of n-hexane and ethyl acetate
Chapter 8: Design and control of heterogeneous reactive distillation processes
Chapter 9: Design and analysis of control of a reactive dividing wall distillation column
Chapter 10: Vapor recompressed ternary batch distillation for separation zeotropic mixture: Dynamics and control
Chapter 11: Dynamics and control of middle vessel batch distillation with vapor recompression
Chapter 12: Development of a control structure of intensified biobutanol production
Chapter 13: Plantwide control and safety analysis of intensified diethyl oxalate production via regeneration-coupling circulation
Chapter 14: Safety analysis of different intensification techniques for algal biodiesel process
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