Synthesis and Operability Strategies for Computer-Aided Modular Process Intensification
eBook - ePub

Synthesis and Operability Strategies for Computer-Aided Modular Process Intensification

  1. 336 pages
  2. English
  3. ePUB (mobile friendly)
  4. Available on iOS & Android
eBook - ePub

Synthesis and Operability Strategies for Computer-Aided Modular Process Intensification

About this book

Synthesis and Operability Strategies for Computer-Aided Modular Process intensification presents state-of-the-art methodological developments and real-world applications for computer-aided process modeling, optimization and control, with a particular interest on process intensification systems. Each chapter consists of basic principles, model formulation, solution algorithm, and step-by-step implementation guidance on key procedures. Sections cover an overview on the current status of process intensification technologies, including challenges and opportunities, detail process synthesis, design and optimization, the operation of intensified processes under uncertainty, and the integration of design, operability and control. Advanced operability analysis, inherent safety analysis, and model-based control strategies developed in the community of process systems engineering are also introduced to assess process operational performance at the early design stage. - Includes a survey of recent advances in modeling, optimization and control of process intensification systems - Presents a modular synthesis approach for process design, integration and material selection in intensified process systems - Provides advanced process operability, inherent safety tactics, and model-based control analysis approaches for the evaluation of process operational performance at the conceptual design stage - Highlights a systematic framework for multiscale process design intensification integrated with operability and control - Includes real-word application examples on intensified reaction and/or separation systems with targeted cost, energy and sustainability improvements

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Yes, you can access Synthesis and Operability Strategies for Computer-Aided Modular Process Intensification by Efstratios N Pistikopoulos,Yuhe Tian in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Business Intelligence. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Cover
  2. Front Matter
  3. Table of Contents
  4. Copyright
  5. Dedication
  6. Contents
  7. Authors' biographies
  8. Preface
  9. Acknowledgments
  10. List of Illustrations
  11. List of Tables
  12. 1 : Introduction to modular process intensification
  13. 2 : Computer-aided modular process intensification: design, synthesis, and operability
  14. 3 : Phenomena-based synthesis representation for modular process intensification
  15. 4 : Process synthesis, optimization, and intensification
  16. 5 : Enhanced GMF for process synthesis, intensification, and heat integration
  17. 6 : Steady-state flexibility analysis
  18. 7 : Inherent safety analysis
  19. 8 : Multi-parametric model predictive control
  20. 9 : Synthesis of operable process intensification systems
  21. 10 : Envelope of design solutions for intensified reaction/separation systems
  22. 11 : Process intensification synthesis of extractive separation systems with material selection
  23. 12 : Process intensification synthesis of dividing wall column systems
  24. 13 : Operability and control analysis in modular process intensification systems
  25. 14 : A framework for synthesis of operable and intensified reactive separation systems
  26. 15 : A software prototype for synthesis of operable process intensification systems
  27. A : Process modeling, synthesis, and control of reactive distillation systems
  28. B : Driving force constraints and physical and/or chemical equilibrium conditions
  29. C : Reactive distillation dynamic modeling
  30. D : Nonlinear optimization formulation of the Feinberg Decomposition approach
  31. E : Degrees of freedom analysis and controller design in modular process intensification systems
  32. F : MTBE reactive distillation model validation and dynamic analysis
  33. Index
  34. A