Chemical process retrofitting and revamping : techniques and applications / / edited by G.P. Rangaiah |
Pubbl/distr/stampa | Chichester, England : , : Wiley, , 2016 |
Descrizione fisica | 1 online resource (528 p.) |
Disciplina | 660 |
Soggetto topico |
Chemical plants - Remodeling
Chemical plants - Maintenance and repair Chemical plants - Equipment and supplies |
ISBN |
1-119-01630-4
1-119-01629-0 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Dedication; Title Page; Copyright; List of Contributors; Preface; Part I: Overview; Chapter 1: Introduction; 1.1 Chemical Process Plants; 1.2 Process Retrofitting and Revamping; 1.3 Stages in Process Retrofitting/Revamping Projects; 1.4 Conceptual Process Design for Process Retrofit/Revamp Projects; 1.5 Research and Development in Process Retrofit/Revamp; 1.6 Scope and Organization of this Book; 1.7 Conclusions; References; Chapter 2: Project Engineering and Management for Process Retrofitting and Revamping; 2.1 Introduction; 2.2 Key Differences between Revamp and Grassroots Designs
2.3 Revamp Design Methodology2.4 Project/Process Engineering and Management of Revamp Projects; 2.5 Key Elements of Project Management; 2.6 Revamp Options for Process Equipment; 2.7 Conclusions; Acronyms; References; Notes; Chapter 3: Process Safety in Revamp Projects; 3.1 Introduction; 3.2 Lessons from Past Process Safety Incidents; 3.3 Preliminary Hazard Review during Conceptual Design; 3.4 Process Hazard Analysis (PHA); 3.5 Revision of PSI and Operator Induction; 3.6 Pre-Start-up Safety Review (PSSR); 3.7 Management of Change (MOC); 3.8 Conclusions; Acronyms; Exercises; References; Notes Part II: Techniques for Retrofitting and RevampingChapter 4: Mathematical Modeling, Simulation and Optimization for Process Design; 4.1 Introduction; 4.2 Process Modeling and Model Solution; 4.3 Process Simulators and Aspen Custom Modeler; 4.4 Optimization Methods and Programs; 4.5 Interfacing a Process Simulator with Excel; 4.6 Application to Membrane Separation Process; 4.7 Conclusions; Acronyms; Appendix 4A: Implementation of Membrane Model in ACM; Appendix 4B: Interfacing of Aspen Plus v8.4 with Excel 2013; Appendix 4C: Interfacing of Aspen HYSYS v8.4 with Excel 2013; Exercises ReferencesChapter 5: Process Intensification in Process Retrofitting and Revamping; 5.1 Introduction; 5.2 Methods of Process Intensification; 5.3 Alternatives to Conventional Separators; 5.4 Alternatives to Stirred Tank Reactor (STR); 5.5 Process Integration; 5.6 Fundamental Issues of PI; 5.7 Future of PI; 5.8 Conclusions; Acknowledgement; Appendix 5A: Monographs, Reviews and Some Recent Papers; References; Chapter 6: Using Process Integration Technology to Retrofit Chemical Plants for Energy Conservation and Wastewater Minimization; 6.1 Introduction 6.2 Graphical Design Tools for Retrofitting Process for Energy Conservation by Designing Heat Exchange Networks6.3 Graphical Design Tools for Retrofitting Processes for Wastewater Reduction by Designing Water Recycle Networks; 6.4 Conclusions; Appendix 6A: Illustrating the Water Recycle Network Design Guidelines; Exercises; References; Chapter 7: Heat Exchanger Network Retrofitting: Alternative Solutions via Multi-objective Optimization for Industrial Implementation; 7.1 Introduction; 7.2 Heat Exchanger Networks; 7.3 HEN Improvements 7.4 MOO Method, HEN Model and Exchanger Reassignment Strategy |
Record Nr. | UNINA-9910137484103321 |
Chichester, England : , : Wiley, , 2016 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Chemical process retrofitting and revamping : techniques and applications / / edited by G.P. Rangaiah |
Pubbl/distr/stampa | Chichester, England : , : Wiley, , 2016 |
Descrizione fisica | 1 online resource (528 p.) |
Disciplina | 660 |
Soggetto topico |
Chemical plants - Remodeling
Chemical plants - Maintenance and repair Chemical plants - Equipment and supplies |
ISBN |
1-119-01630-4
1-119-01629-0 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Dedication; Title Page; Copyright; List of Contributors; Preface; Part I: Overview; Chapter 1: Introduction; 1.1 Chemical Process Plants; 1.2 Process Retrofitting and Revamping; 1.3 Stages in Process Retrofitting/Revamping Projects; 1.4 Conceptual Process Design for Process Retrofit/Revamp Projects; 1.5 Research and Development in Process Retrofit/Revamp; 1.6 Scope and Organization of this Book; 1.7 Conclusions; References; Chapter 2: Project Engineering and Management for Process Retrofitting and Revamping; 2.1 Introduction; 2.2 Key Differences between Revamp and Grassroots Designs
2.3 Revamp Design Methodology2.4 Project/Process Engineering and Management of Revamp Projects; 2.5 Key Elements of Project Management; 2.6 Revamp Options for Process Equipment; 2.7 Conclusions; Acronyms; References; Notes; Chapter 3: Process Safety in Revamp Projects; 3.1 Introduction; 3.2 Lessons from Past Process Safety Incidents; 3.3 Preliminary Hazard Review during Conceptual Design; 3.4 Process Hazard Analysis (PHA); 3.5 Revision of PSI and Operator Induction; 3.6 Pre-Start-up Safety Review (PSSR); 3.7 Management of Change (MOC); 3.8 Conclusions; Acronyms; Exercises; References; Notes Part II: Techniques for Retrofitting and RevampingChapter 4: Mathematical Modeling, Simulation and Optimization for Process Design; 4.1 Introduction; 4.2 Process Modeling and Model Solution; 4.3 Process Simulators and Aspen Custom Modeler; 4.4 Optimization Methods and Programs; 4.5 Interfacing a Process Simulator with Excel; 4.6 Application to Membrane Separation Process; 4.7 Conclusions; Acronyms; Appendix 4A: Implementation of Membrane Model in ACM; Appendix 4B: Interfacing of Aspen Plus v8.4 with Excel 2013; Appendix 4C: Interfacing of Aspen HYSYS v8.4 with Excel 2013; Exercises ReferencesChapter 5: Process Intensification in Process Retrofitting and Revamping; 5.1 Introduction; 5.2 Methods of Process Intensification; 5.3 Alternatives to Conventional Separators; 5.4 Alternatives to Stirred Tank Reactor (STR); 5.5 Process Integration; 5.6 Fundamental Issues of PI; 5.7 Future of PI; 5.8 Conclusions; Acknowledgement; Appendix 5A: Monographs, Reviews and Some Recent Papers; References; Chapter 6: Using Process Integration Technology to Retrofit Chemical Plants for Energy Conservation and Wastewater Minimization; 6.1 Introduction 6.2 Graphical Design Tools for Retrofitting Process for Energy Conservation by Designing Heat Exchange Networks6.3 Graphical Design Tools for Retrofitting Processes for Wastewater Reduction by Designing Water Recycle Networks; 6.4 Conclusions; Appendix 6A: Illustrating the Water Recycle Network Design Guidelines; Exercises; References; Chapter 7: Heat Exchanger Network Retrofitting: Alternative Solutions via Multi-objective Optimization for Industrial Implementation; 7.1 Introduction; 7.2 Heat Exchanger Networks; 7.3 HEN Improvements 7.4 MOO Method, HEN Model and Exchanger Reassignment Strategy |
Record Nr. | UNINA-9910818516503321 |
Chichester, England : , : Wiley, , 2016 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Control and Safety Analysis of Intensified Chemical Processes |
Autore | Patle Dipesh Shikchand |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Newark : , : John Wiley & Sons, Incorporated, , 2024 |
Descrizione fisica | 1 online resource (384 pages) |
Altri autori (Persone) | RangaiahGade Pandu |
Soggetto topico |
Chemical engineering
Chemical processes |
ISBN |
3-527-84365-5
3-527-84363-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Cover -- Title Page -- Copyright -- Contents -- Preface -- Part I Overview and Background -- Chapter 1 Introduction -- 1.1 Process Intensification -- 1.2 Need for Control and Safety Analysis of Intensified Chemical Processes -- 1.3 Studies on Control and Safety Analysis of Intensified Chemical Processes -- 1.4 Scope and Organization of the Book -- 1.5 Conclusions -- References -- Chapter 2 Applications and Potential of Process Intensification in Chemical Process Industries -- 2.1 Introduction -- 2.2 Benefits of Process Intensification Techniques -- 2.3 Static Mixers -- 2.4 Process Intensification for Separation Vessels -- 2.5 Process Intensification for Distillation -- 2.6 Process Intensification for Heating -- 2.6.1 Steam Injection Heater -- 2.6.2 Steam/Electric Heaters as a Replacement for Fired Heaters -- 2.6.3 Process Intensification for Flue Gas Heat Recovery -- 2.6.4 Process Heat Exchangers -- 2.6.5 Sonic Horn -- 2.7 Steam Compression -- 2.8 Process Intensification for Carbon Capture -- 2.9 Process Intensification for Vacuum Systems -- 2.10 Process Intensification for Water Deaeration -- 2.11 Process Intensification for Development of Inherently Safer Design (ISD) |
Record Nr. | UNINA-9910877797803321 |
Patle Dipesh Shikchand | ||
Newark : , : John Wiley & Sons, Incorporated, , 2024 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Multi-objective optimization : techniques and applications in chemical engineering / / editor, Gade Pandu Rangaiah |
Edizione | [Second edition.] |
Pubbl/distr/stampa | New Jersey : , : World Scientific, , 2017 |
Descrizione fisica | 1 online resource (588 pages) : illustrations, graphs |
Disciplina | 660.28 |
Collana | Advances in Process Systems Engineering |
Soggetto topico |
Chemical processes
Mathematical optimization Chemical engineering |
ISBN | 981-314-823-3 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910164131203321 |
New Jersey : , : World Scientific, , 2017 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Multi-objective optimization [[electronic resource] ] : techniques and applications in chemical engineering / / editor Gade Pandu Rangaiah |
Pubbl/distr/stampa | Singapore, : Hackensack, N.J., : World Scientific, c2009 |
Descrizione fisica | 1 online resource (454 p.) |
Disciplina | 660 |
Altri autori (Persone) | RangaiahGade Pandu |
Collana | Advances in process systems engineering |
Soggetto topico |
Chemical processes
Mathematical optimization Chemical engineering |
Soggetto genere / forma | Electronic books. |
ISBN |
1-282-44242-2
9786612442421 981-283-652-7 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Preface; Contents; Chapter 1 Introduction Gade Pandu Rangaiah; 1.1 Process Optimization; 1.2 Multi-Objective Optimization: Basics; 1.3 Multi-Objective Optimization: Methods; 1.4 Alkylation Process Optimization for Two Objectives; 1.4.1 Alkylation Process and its Model; 1.4.2 Multi-Objective Optimization Results and Discussion; 1.5 Scope and Organization of the Book; References; Exercises; Chapter 2 Multi-Objective Optimization Applications in Chemical Engineering Masuduzzaman and Gade Pandu Rangaiah; Abstract; 2.1 Introduction; 2.2 Process Design and Operation
2.3 Biotechnology and Food Industry 2.4 Petroleum Refining and Petrochemicals; 2.5 Pharmaceuticals and Other Products/Processes; 2.6 Polymerization; 2.7 Conclusions; References; Chapter 3 Multi-Objective Evolutionary Algorithms: A Review of the State-of-the-Art and some of their Applications in Chemical Engineering Antonio López Jaimes and Carlos A. Coello Coello; Abstract; 3.1 Introduction; 3.2 Basic Concepts; 3.2.1 Pareto Optimality; 3.3 The Early Days; 3.4 Modern MOEAs; 3.5 MOEAs in Chemical Engineering; 3.6 MOEAs Originated in Chemical Engineering 3.6.1 Neighborhood and Archived Genetic Algorithm 3.6.2 Criterion Selection MOEAs; 3.6.3 The Jumping Gene Operator; 3.6.4 Multi-Objective Differential Evolution; 3.7 Some Applications Using Well-Known MOEAs; 3.7.1 TYPE I: Optimization of an Industrial Nylon 6 Semi-Batch Reactor; 3.7.2 TYPE I: Optimization of an Industrial Ethylene Reactor; 3.7.3 TYPE II: Optimization of an Industrial Styrene Reactor; 3.7.4 TYPE II: Optimization of an Industrial Hydrocracking Unit; 3.7.5 TYPE III: Optimization of Semi-Batch Reactive Crystallization Process 3.7.6 TYPE III: Optimization of Simulated Moving Bed Process 3.7.7 TYPE IV: Biological and Bioinformatics Problems; 3.7.8 TYPE V: Optimization of a Waste Incineration Plant; 3.7.9 TYPE V: Chemical Process Systems Modelling; 3.8 Critical Remarks; 3.9 Additional Resources; 3.10 Future Research; 3.11 Conclusions; Acknowledgements; References; Chapter 4 Multi-Objective Genetic Algorithm and Simulated Annealing with the Jumping Gene Adaptations Manojkumar Ramteke and Santosh K. Gupta; Abstract; 4.1 Introduction; 4.2 Genetic Algorithm (GA); 4.2.1 Simple GA (SGA) for Single-Objective Problems 4.2.2 Multi-Objective Elitist Non-Dominated Sorting GA (NSGA-II) and its JG Adaptations4.2.2.1 Jumping Genes/Transposons (Stryer, 2000); 4.2.2.2 (Variable-Length) Binary-Coded NSGA-II-JG (Kasat and Gupta, 2003); 4.2.2.3 (Fixed-Length) NSGA-II-a JG; 4.2.2.4 NSGA-II-mJG ('modified' JG); 4.2.2.5 NSGA-II-sa JG ('specific adapted' JG); 4.2.2.6 NSGA-II-s JG ('specific' JG); 4.3 Simulated Annealing (SA); 4.3.1 Simple Simulated Annealing (SSA) for Single-Objective Problems; 4.3.2 Multi-Objective Simulated Annealing (MOSA) 4.4 Application of the Jumping Gene Adaptations of NSGA-II and MOSA to Three Benchmark Problems |
Record Nr. | UNINA-9910456679003321 |
Singapore, : Hackensack, N.J., : World Scientific, c2009 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Multi-objective optimization [[electronic resource] ] : techniques and applications in chemical engineering / / editor Gade Pandu Rangaiah |
Pubbl/distr/stampa | Singapore, : Hackensack, N.J., : World Scientific, c2009 |
Descrizione fisica | 1 online resource (454 p.) |
Disciplina | 660 |
Altri autori (Persone) | RangaiahGade Pandu |
Collana | Advances in process systems engineering |
Soggetto topico |
Chemical processes
Mathematical optimization Chemical engineering |
ISBN |
1-282-44242-2
9786612442421 981-283-652-7 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Preface; Contents; Chapter 1 Introduction Gade Pandu Rangaiah; 1.1 Process Optimization; 1.2 Multi-Objective Optimization: Basics; 1.3 Multi-Objective Optimization: Methods; 1.4 Alkylation Process Optimization for Two Objectives; 1.4.1 Alkylation Process and its Model; 1.4.2 Multi-Objective Optimization Results and Discussion; 1.5 Scope and Organization of the Book; References; Exercises; Chapter 2 Multi-Objective Optimization Applications in Chemical Engineering Masuduzzaman and Gade Pandu Rangaiah; Abstract; 2.1 Introduction; 2.2 Process Design and Operation
2.3 Biotechnology and Food Industry 2.4 Petroleum Refining and Petrochemicals; 2.5 Pharmaceuticals and Other Products/Processes; 2.6 Polymerization; 2.7 Conclusions; References; Chapter 3 Multi-Objective Evolutionary Algorithms: A Review of the State-of-the-Art and some of their Applications in Chemical Engineering Antonio López Jaimes and Carlos A. Coello Coello; Abstract; 3.1 Introduction; 3.2 Basic Concepts; 3.2.1 Pareto Optimality; 3.3 The Early Days; 3.4 Modern MOEAs; 3.5 MOEAs in Chemical Engineering; 3.6 MOEAs Originated in Chemical Engineering 3.6.1 Neighborhood and Archived Genetic Algorithm 3.6.2 Criterion Selection MOEAs; 3.6.3 The Jumping Gene Operator; 3.6.4 Multi-Objective Differential Evolution; 3.7 Some Applications Using Well-Known MOEAs; 3.7.1 TYPE I: Optimization of an Industrial Nylon 6 Semi-Batch Reactor; 3.7.2 TYPE I: Optimization of an Industrial Ethylene Reactor; 3.7.3 TYPE II: Optimization of an Industrial Styrene Reactor; 3.7.4 TYPE II: Optimization of an Industrial Hydrocracking Unit; 3.7.5 TYPE III: Optimization of Semi-Batch Reactive Crystallization Process 3.7.6 TYPE III: Optimization of Simulated Moving Bed Process 3.7.7 TYPE IV: Biological and Bioinformatics Problems; 3.7.8 TYPE V: Optimization of a Waste Incineration Plant; 3.7.9 TYPE V: Chemical Process Systems Modelling; 3.8 Critical Remarks; 3.9 Additional Resources; 3.10 Future Research; 3.11 Conclusions; Acknowledgements; References; Chapter 4 Multi-Objective Genetic Algorithm and Simulated Annealing with the Jumping Gene Adaptations Manojkumar Ramteke and Santosh K. Gupta; Abstract; 4.1 Introduction; 4.2 Genetic Algorithm (GA); 4.2.1 Simple GA (SGA) for Single-Objective Problems 4.2.2 Multi-Objective Elitist Non-Dominated Sorting GA (NSGA-II) and its JG Adaptations4.2.2.1 Jumping Genes/Transposons (Stryer, 2000); 4.2.2.2 (Variable-Length) Binary-Coded NSGA-II-JG (Kasat and Gupta, 2003); 4.2.2.3 (Fixed-Length) NSGA-II-a JG; 4.2.2.4 NSGA-II-mJG ('modified' JG); 4.2.2.5 NSGA-II-sa JG ('specific adapted' JG); 4.2.2.6 NSGA-II-s JG ('specific' JG); 4.3 Simulated Annealing (SA); 4.3.1 Simple Simulated Annealing (SSA) for Single-Objective Problems; 4.3.2 Multi-Objective Simulated Annealing (MOSA) 4.4 Application of the Jumping Gene Adaptations of NSGA-II and MOSA to Three Benchmark Problems |
Record Nr. | UNINA-9910781085403321 |
Singapore, : Hackensack, N.J., : World Scientific, c2009 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Multi-objective optimization : techniques and applications in chemical engineering / / editor Gade Pandu Rangaiah |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Singapore, : Hackensack, N.J., : World Scientific, c2009 |
Descrizione fisica | 1 online resource (454 p.) |
Disciplina | 660 |
Altri autori (Persone) | RangaiahGade Pandu |
Collana | Advances in process systems engineering |
Soggetto topico |
Chemical processes
Mathematical optimization Chemical engineering |
ISBN |
1-282-44242-2
9786612442421 981-283-652-7 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Preface; Contents; Chapter 1 Introduction Gade Pandu Rangaiah; 1.1 Process Optimization; 1.2 Multi-Objective Optimization: Basics; 1.3 Multi-Objective Optimization: Methods; 1.4 Alkylation Process Optimization for Two Objectives; 1.4.1 Alkylation Process and its Model; 1.4.2 Multi-Objective Optimization Results and Discussion; 1.5 Scope and Organization of the Book; References; Exercises; Chapter 2 Multi-Objective Optimization Applications in Chemical Engineering Masuduzzaman and Gade Pandu Rangaiah; Abstract; 2.1 Introduction; 2.2 Process Design and Operation
2.3 Biotechnology and Food Industry 2.4 Petroleum Refining and Petrochemicals; 2.5 Pharmaceuticals and Other Products/Processes; 2.6 Polymerization; 2.7 Conclusions; References; Chapter 3 Multi-Objective Evolutionary Algorithms: A Review of the State-of-the-Art and some of their Applications in Chemical Engineering Antonio López Jaimes and Carlos A. Coello Coello; Abstract; 3.1 Introduction; 3.2 Basic Concepts; 3.2.1 Pareto Optimality; 3.3 The Early Days; 3.4 Modern MOEAs; 3.5 MOEAs in Chemical Engineering; 3.6 MOEAs Originated in Chemical Engineering 3.6.1 Neighborhood and Archived Genetic Algorithm 3.6.2 Criterion Selection MOEAs; 3.6.3 The Jumping Gene Operator; 3.6.4 Multi-Objective Differential Evolution; 3.7 Some Applications Using Well-Known MOEAs; 3.7.1 TYPE I: Optimization of an Industrial Nylon 6 Semi-Batch Reactor; 3.7.2 TYPE I: Optimization of an Industrial Ethylene Reactor; 3.7.3 TYPE II: Optimization of an Industrial Styrene Reactor; 3.7.4 TYPE II: Optimization of an Industrial Hydrocracking Unit; 3.7.5 TYPE III: Optimization of Semi-Batch Reactive Crystallization Process 3.7.6 TYPE III: Optimization of Simulated Moving Bed Process 3.7.7 TYPE IV: Biological and Bioinformatics Problems; 3.7.8 TYPE V: Optimization of a Waste Incineration Plant; 3.7.9 TYPE V: Chemical Process Systems Modelling; 3.8 Critical Remarks; 3.9 Additional Resources; 3.10 Future Research; 3.11 Conclusions; Acknowledgements; References; Chapter 4 Multi-Objective Genetic Algorithm and Simulated Annealing with the Jumping Gene Adaptations Manojkumar Ramteke and Santosh K. Gupta; Abstract; 4.1 Introduction; 4.2 Genetic Algorithm (GA); 4.2.1 Simple GA (SGA) for Single-Objective Problems 4.2.2 Multi-Objective Elitist Non-Dominated Sorting GA (NSGA-II) and its JG Adaptations4.2.2.1 Jumping Genes/Transposons (Stryer, 2000); 4.2.2.2 (Variable-Length) Binary-Coded NSGA-II-JG (Kasat and Gupta, 2003); 4.2.2.3 (Fixed-Length) NSGA-II-a JG; 4.2.2.4 NSGA-II-mJG ('modified' JG); 4.2.2.5 NSGA-II-sa JG ('specific adapted' JG); 4.2.2.6 NSGA-II-s JG ('specific' JG); 4.3 Simulated Annealing (SA); 4.3.1 Simple Simulated Annealing (SSA) for Single-Objective Problems; 4.3.2 Multi-Objective Simulated Annealing (MOSA) 4.4 Application of the Jumping Gene Adaptations of NSGA-II and MOSA to Three Benchmark Problems |
Record Nr. | UNINA-9910816343903321 |
Singapore, : Hackensack, N.J., : World Scientific, c2009 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Multi-objective optimization in chemical engineering [[electronic resource] ] : developments and applications / / edited by Gade Rangaiah, Adrián Bonilla-Petriciolet |
Pubbl/distr/stampa | Chichester [England], : Wiley, 2013 |
Descrizione fisica | 1 online resource (530 p.) |
Disciplina | 660 |
Altri autori (Persone) |
RangaiahGade Pandu
Bonilla-PetricioletAdrian |
Soggetto topico |
Chemical processes
Mathematical optimization Chemical engineering |
ISBN |
1-118-34168-6
1-118-34170-8 1-299-40262-3 1-118-34169-4 |
Classificazione | SCI013060 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | pt. 1. Overview -- pt. 2. Multi-objective optimization developments -- pt. 3. Chemical engineering applications. |
Record Nr. | UNINA-9910139026603321 |
Chichester [England], : Wiley, 2013 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Multi-objective optimization in chemical engineering : developments and applications / / edited by Gade Rangaiah, Adrián Bonilla-Petriciolet |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Chichester [England], : Wiley, 2013 |
Descrizione fisica | 1 online resource (530 p.) |
Disciplina | 660 |
Altri autori (Persone) |
RangaiahGade Pandu
Bonilla-PetricioletAdrian |
Soggetto topico |
Chemical processes
Mathematical optimization Chemical engineering |
ISBN |
1-118-34168-6
1-118-34170-8 1-299-40262-3 1-118-34169-4 |
Classificazione | SCI013060 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | pt. 1. Overview -- pt. 2. Multi-objective optimization developments -- pt. 3. Chemical engineering applications. |
Record Nr. | UNINA-9910807092203321 |
Chichester [England], : Wiley, 2013 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Plantwide control [[electronic resource] ] : recent developments and applications / / edited by Gade Pandu Rangaiah and Vinay Kariwala |
Edizione | [2nd ed.] |
Pubbl/distr/stampa | Hoboken, N.J., : Wiley, 2012 |
Descrizione fisica | 1 online resource (498 p.) |
Disciplina | 660/.2815 |
Altri autori (Persone) |
RangaiahGade Pandu
KariwalaVinay |
Soggetto topico |
Chemical process control
Chemical plants - Management |
ISBN |
1-119-94088-5
1-283-42647-1 9786613426475 1-119-96896-8 1-119-96897-6 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | pt. 1. Overview and perspectives -- pt. 2. Tools and heuristics -- pt. 3. Methodologies -- pt. 4. Application studies -- pt. 5. Emerging topics. |
Record Nr. | UNINA-9910139121903321 |
Hoboken, N.J., : Wiley, 2012 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|