Aeration control system design: a practical guide to energy and process optimization
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Hoboken, NJ
Wiley
2014
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Schlagworte: | |
Online-Zugang: | FRO01 UBT01 Volltext |
Beschreibung: | Machine generated contents note: Foreword Acknowledgements List of Figures Chapter 1: Introduction 1.1 Basic Concepts and Objectives 1.2 Safety 1.3 The Importance of an Integrated Approach 1.4 Importance of Operator Involvement 1.5 The Benefits of Successful Aeration Process Automation Chapter 2: Initial System Assessment 2.1 Define Current Operations 2.2 Evaluate Process and Equipment 2.3 Benchmark Performance 2.4 Estimate Potential Energy Savings and Performance Improvement 2.5 Prepare Report Chapter 3: Aeration Processes 3.1 Process Fundamentals 3.2 Loading Variations and Their Implications 3.3 Process Limitations and Their Impact on Control Systems Chapter 4: Mechanical and Diffused Aeration Systems 4.1 Oxygen Transfer Basics 4.2 Types of Aerators 4.3 Savings Determinations Chapter 5: Blowers and Blower Control 5.1 Common Application and Selection Concern s 5.2 Positive Displacement Blowers and Control Characteristics 5.3 Dynamic Blowers Chapter 6: Piping Systems 6.1 Design . - Considerations 6.2 Pressure Drop 6.3 Control Valve Selection Chapter 7: Instrumentation 7.1 Common Characteristics and Electrical Design Considerations 7.2 Pressure 7.3 Temperature 7.4 Flow 7.5 Analytic Instruments 7.6 Motor Monitoring and Electrical Measurement s 7.7 Miscellaneous Chapter 8: Final Control Elements 8.1 Valve Operators 8.2 Guide Vanes 8.3 Motor Basics 8.4 Motor Control 8.5 Variable Frequency Drives Chapter 9: Control Loops and Algorithms 9.1 Control Fundamentals 9.2 Dissolved Oxygen Control 9.3 Aeration Basin Air Flow Contro l 9.4 Pressure Control 9.5 Most-Open-Valve Control 9.6 Blower Control and Coordination 9.7 Control Loop Timing Considerations 9.8 Miscellaneous Controls Chapter 10: Control Components 10.1 Programmable Logic Controllers 10.2 Distributed Control Systems 10.3 Human Machine Interfaces 10.4 Control Panel Design Considerations Chapter 11: Documentation 11.1 Specification Considerations 11.2 Data Lists 11.3 Process and Instrumentation Diagrams 11.4 . Online-Ausg. 2013 erschienen "Proper engineering and execution of aeration control systems is of prime importance to treatment plants, representing a significant savings in labor and energy costs. Taking an integrated, cross-disciplinary approach to this critical process, Aeration Control System Design comprehensively addresses the concept and system design of aeration activated wastewater treatment. Covering complete treatment of aeration system controls, processes, and instrumentation, this hands-on text provides civil and environmental engineers, mechanical engineers, and electrical/instrumentation engineers with theoretical and mathematical treatment of case histories, complete with design procedures and analysis methodology"-- Includes bibliographical references and index |
Beschreibung: | 1 Online-Ressource |
ISBN: | 9781118777633 9781118777688 9781118777732 |
Internformat
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245 | 1 | 0 | |a Aeration control system design |b a practical guide to energy and process optimization |c Thomas E. Jenkins |
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500 | |a Machine generated contents note: Foreword Acknowledgements List of Figures Chapter 1: Introduction 1.1 Basic Concepts and Objectives 1.2 Safety 1.3 The Importance of an Integrated Approach 1.4 Importance of Operator Involvement 1.5 The Benefits of Successful Aeration Process Automation Chapter 2: Initial System Assessment 2.1 Define Current Operations 2.2 Evaluate Process and Equipment 2.3 Benchmark Performance 2.4 Estimate Potential Energy Savings and Performance Improvement 2.5 Prepare Report Chapter 3: Aeration Processes 3.1 Process Fundamentals 3.2 Loading Variations and Their Implications 3.3 Process Limitations and Their Impact on Control Systems Chapter 4: Mechanical and Diffused Aeration Systems 4.1 Oxygen Transfer Basics 4.2 Types of Aerators 4.3 Savings Determinations Chapter 5: Blowers and Blower Control 5.1 Common Application and Selection Concern s 5.2 Positive Displacement Blowers and Control Characteristics 5.3 Dynamic Blowers Chapter 6: Piping Systems 6.1 Design . - Considerations 6.2 Pressure Drop 6.3 Control Valve Selection Chapter 7: Instrumentation 7.1 Common Characteristics and Electrical Design Considerations 7.2 Pressure 7.3 Temperature 7.4 Flow 7.5 Analytic Instruments 7.6 Motor Monitoring and Electrical Measurement s 7.7 Miscellaneous Chapter 8: Final Control Elements 8.1 Valve Operators 8.2 Guide Vanes 8.3 Motor Basics 8.4 Motor Control 8.5 Variable Frequency Drives Chapter 9: Control Loops and Algorithms 9.1 Control Fundamentals 9.2 Dissolved Oxygen Control 9.3 Aeration Basin Air Flow Contro l 9.4 Pressure Control 9.5 Most-Open-Valve Control 9.6 Blower Control and Coordination 9.7 Control Loop Timing Considerations 9.8 Miscellaneous Controls Chapter 10: Control Components 10.1 Programmable Logic Controllers 10.2 Distributed Control Systems 10.3 Human Machine Interfaces 10.4 Control Panel Design Considerations Chapter 11: Documentation 11.1 Specification Considerations 11.2 Data Lists 11.3 Process and Instrumentation Diagrams 11.4 . | ||
500 | |a Online-Ausg. 2013 erschienen | ||
500 | |a "Proper engineering and execution of aeration control systems is of prime importance to treatment plants, representing a significant savings in labor and energy costs. Taking an integrated, cross-disciplinary approach to this critical process, Aeration Control System Design comprehensively addresses the concept and system design of aeration activated wastewater treatment. Covering complete treatment of aeration system controls, processes, and instrumentation, this hands-on text provides civil and environmental engineers, mechanical engineers, and electrical/instrumentation engineers with theoretical and mathematical treatment of case histories, complete with design procedures and analysis methodology"-- | ||
500 | |a Includes bibliographical references and index | ||
650 | 7 | |a TECHNOLOGY & ENGINEERING / Environmental / General |2 bisacsh | |
650 | 7 | |a Sewage disposal plants / Energy conservation |2 fast | |
650 | 7 | |a Sewage / Purification / Aeration |2 fast | |
650 | 7 | |a Supervisory control systems |2 fast | |
650 | 7 | |a Water / Aeration |2 fast | |
650 | 4 | |a Sewage / Purification / Aeration | |
650 | 4 | |a Water / Aeration | |
650 | 4 | |a Supervisory control systems | |
650 | 4 | |a Sewage disposal plants / Energy conservation | |
776 | 0 | 8 | |i Erscheint auch als |n Druck-Ausgabe, Hardcover |z 978-1-118-38998-0 |
856 | 4 | 0 | |u https://onlinelibrary.wiley.com/doi/book/10.1002/9781118777732 |x Verlag |3 Volltext |
912 | |a ZDB-35-WIC | ||
940 | 1 | |q FHR_PDA_WIC | |
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966 | e | |u https://onlinelibrary.wiley.com/doi/book/10.1002/9781118777732 |l UBT01 |p ZDB-35-WIC |q UBT_Wiley_EK_2014 |x Verlag |3 Volltext |
Datensatz im Suchindex
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---|---|
any_adam_object | |
author | Jenkins, Thomas E. |
author_facet | Jenkins, Thomas E. |
author_role | aut |
author_sort | Jenkins, Thomas E. |
author_variant | t e j te tej |
building | Verbundindex |
bvnumber | BV041829317 |
collection | ZDB-35-WIC |
ctrlnum | (OCoLC)849801367 (DE-599)BVBBV041829317 |
dewey-full | 628.1/65 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 628 - Sanitary engineering |
dewey-raw | 628.1/65 |
dewey-search | 628.1/65 |
dewey-sort | 3628.1 265 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Bauingenieurwesen |
format | Electronic eBook |
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language | English |
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spelling | Jenkins, Thomas E. Verfasser aut Aeration control system design a practical guide to energy and process optimization Thomas E. Jenkins Hoboken, NJ Wiley 2014 1 Online-Ressource txt rdacontent c rdamedia cr rdacarrier Machine generated contents note: Foreword Acknowledgements List of Figures Chapter 1: Introduction 1.1 Basic Concepts and Objectives 1.2 Safety 1.3 The Importance of an Integrated Approach 1.4 Importance of Operator Involvement 1.5 The Benefits of Successful Aeration Process Automation Chapter 2: Initial System Assessment 2.1 Define Current Operations 2.2 Evaluate Process and Equipment 2.3 Benchmark Performance 2.4 Estimate Potential Energy Savings and Performance Improvement 2.5 Prepare Report Chapter 3: Aeration Processes 3.1 Process Fundamentals 3.2 Loading Variations and Their Implications 3.3 Process Limitations and Their Impact on Control Systems Chapter 4: Mechanical and Diffused Aeration Systems 4.1 Oxygen Transfer Basics 4.2 Types of Aerators 4.3 Savings Determinations Chapter 5: Blowers and Blower Control 5.1 Common Application and Selection Concern s 5.2 Positive Displacement Blowers and Control Characteristics 5.3 Dynamic Blowers Chapter 6: Piping Systems 6.1 Design . - Considerations 6.2 Pressure Drop 6.3 Control Valve Selection Chapter 7: Instrumentation 7.1 Common Characteristics and Electrical Design Considerations 7.2 Pressure 7.3 Temperature 7.4 Flow 7.5 Analytic Instruments 7.6 Motor Monitoring and Electrical Measurement s 7.7 Miscellaneous Chapter 8: Final Control Elements 8.1 Valve Operators 8.2 Guide Vanes 8.3 Motor Basics 8.4 Motor Control 8.5 Variable Frequency Drives Chapter 9: Control Loops and Algorithms 9.1 Control Fundamentals 9.2 Dissolved Oxygen Control 9.3 Aeration Basin Air Flow Contro l 9.4 Pressure Control 9.5 Most-Open-Valve Control 9.6 Blower Control and Coordination 9.7 Control Loop Timing Considerations 9.8 Miscellaneous Controls Chapter 10: Control Components 10.1 Programmable Logic Controllers 10.2 Distributed Control Systems 10.3 Human Machine Interfaces 10.4 Control Panel Design Considerations Chapter 11: Documentation 11.1 Specification Considerations 11.2 Data Lists 11.3 Process and Instrumentation Diagrams 11.4 . Online-Ausg. 2013 erschienen "Proper engineering and execution of aeration control systems is of prime importance to treatment plants, representing a significant savings in labor and energy costs. Taking an integrated, cross-disciplinary approach to this critical process, Aeration Control System Design comprehensively addresses the concept and system design of aeration activated wastewater treatment. Covering complete treatment of aeration system controls, processes, and instrumentation, this hands-on text provides civil and environmental engineers, mechanical engineers, and electrical/instrumentation engineers with theoretical and mathematical treatment of case histories, complete with design procedures and analysis methodology"-- Includes bibliographical references and index TECHNOLOGY & ENGINEERING / Environmental / General bisacsh Sewage disposal plants / Energy conservation fast Sewage / Purification / Aeration fast Supervisory control systems fast Water / Aeration fast Sewage / Purification / Aeration Water / Aeration Supervisory control systems Sewage disposal plants / Energy conservation Erscheint auch als Druck-Ausgabe, Hardcover 978-1-118-38998-0 https://onlinelibrary.wiley.com/doi/book/10.1002/9781118777732 Verlag Volltext |
spellingShingle | Jenkins, Thomas E. Aeration control system design a practical guide to energy and process optimization TECHNOLOGY & ENGINEERING / Environmental / General bisacsh Sewage disposal plants / Energy conservation fast Sewage / Purification / Aeration fast Supervisory control systems fast Water / Aeration fast Sewage / Purification / Aeration Water / Aeration Supervisory control systems Sewage disposal plants / Energy conservation |
title | Aeration control system design a practical guide to energy and process optimization |
title_auth | Aeration control system design a practical guide to energy and process optimization |
title_exact_search | Aeration control system design a practical guide to energy and process optimization |
title_full | Aeration control system design a practical guide to energy and process optimization Thomas E. Jenkins |
title_fullStr | Aeration control system design a practical guide to energy and process optimization Thomas E. Jenkins |
title_full_unstemmed | Aeration control system design a practical guide to energy and process optimization Thomas E. Jenkins |
title_short | Aeration control system design |
title_sort | aeration control system design a practical guide to energy and process optimization |
title_sub | a practical guide to energy and process optimization |
topic | TECHNOLOGY & ENGINEERING / Environmental / General bisacsh Sewage disposal plants / Energy conservation fast Sewage / Purification / Aeration fast Supervisory control systems fast Water / Aeration fast Sewage / Purification / Aeration Water / Aeration Supervisory control systems Sewage disposal plants / Energy conservation |
topic_facet | TECHNOLOGY & ENGINEERING / Environmental / General Sewage disposal plants / Energy conservation Sewage / Purification / Aeration Supervisory control systems Water / Aeration |
url | https://onlinelibrary.wiley.com/doi/book/10.1002/9781118777732 |
work_keys_str_mv | AT jenkinsthomase aerationcontrolsystemdesignapracticalguidetoenergyandprocessoptimization |