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Rules of thumb in engineering practice [[electronic resource] /] / Donald R. Woods
Rules of thumb in engineering practice [[electronic resource] /] / Donald R. Woods
Autore Woods Donald R
Pubbl/distr/stampa Weinheim, : Wiley-VCH
Descrizione fisica 1 online resource (480 p.)
Disciplina 620.002
620.004
Soggetto topico Engineering - Methodology
Civil engineering - Vocational guidance
Soggetto genere / forma Electronic books.
ISBN 1-280-92176-5
9786610921768
3-527-61111-8
3-527-61112-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Rules of Thumb in Engineering Practice; Contents; Preface; 1 Rules of Thumb; 1.1 Rules of Thumb about Process Equipment; 1.2 Rules of Thumb about the Context for a Chemical Process: Physical and Thermal Properties; 1.3 Rules of Thumb about the Context for a Chemical Process: Corrosion; 1.4 Rules of Thumb about the Context for a Chemical Process: Process Control (based on communication from T.E. Marlin, McMaster University, 2001); 1.5 Rules of Thumb about the Context for a Chemical Process: Batch versus Continuous
1.6 Rules of Thumb about the Context for a Chemical Process: Heterogenous Phase contacting1.6.1 GL Systems; 1.6.2 LL Systems; 1.6.3 GLS Systems; 1.6.4 Particulate Systems; 1.7 Rules of Thumb about the Context for a Chemical Process: Economics; 1.8 Rules of Thumb about the Thinking Process: Problem Solving and Creativity; 1.9 Rules of Thumb about the Thinking Process: Goal Setting; 1.10 Rules of Thumb about the Thinking Process: Decision Making; 1.11 Rules of Thumb about the Thinking Process: Thermal Pinch; 1.12 Rules of Thumb about the Thinking Process: "Systems" Thinking
1.13 Rules of Thumb about the Thinking Process: Design1.14 Rules of Thumb about the Thinking Process: Process Improvement; 1.15 Rules of Thumb about the Thinking Process: Trouble Shooting; 1.16 Rules of Thumb about the Thinking Process: Environment, Waste Minimization, Safety; 1.17 Rules of Thumb about the People Part of Engineering: Communication; 1.18 Rules of Thumb about the People Part of Engineering: Listening; 1.19 Rules of Thumb about the People Part of Engineering: People Skills; 1.20 Rules of Thumb about the People Part of Engineering: Team and Group Skills
1.21 Rules of Thumb about the Context in Which We Function: Performance Review1.22 Rules of Thumb about the Context in Which We Function: Leadership; 1.23 Rules of Thumb about the Context in Which We Function: Entrepreneurship (based on Valikangas, 2003 and Cooper, 1987); 1.24 Rules of Thumb about the Context in Which We Function: Entrepreneurship; 1.25 Rules of Thumb about the Context in Which We Function: e-Business; 1.26 Rules of Thumb about Mentoring and Self-management; 1.27 Summary; 2 Transportation; 2.1 Gas Moving: Pressure Service; 2.2 Gas Moving: Vacuum Service; 2.3 Liquid
2.4 Gas-Liquid (Two-phase Flow)2.5 Pumping Slurries: Liquid-Solid Systems; 2.6 Solids; 2.7 Ducts and Pipes; 3 Energy Exchange; 3.1 Drives; 3.2 Thermal Energy: Furnaces; 3.3 Thermal Energy: Fluid Heat Exchangers, Condensers and Boilers; 3.4 Thermal Energy: Fluidized Bed (Coils in Bed); 3.5 Thermal Energy: Static Mixers; 3.6 Thermal Energy: Direct Contact L-L Immiscible Liquids; 3.7 Thermal Energy: Direct Contact G-L Cooling Towers; 3.8 Thermal Energy: Direct Contact G-L Quenchers; 3.9 Thermal Energy: Direct Contact G-L Condensers
3.10 Thermal Energy: G-G Thermal Wheels and Pebble Regenerators and Regenerators
Record Nr. UNINA-9910144003003321
Woods Donald R  
Weinheim, : Wiley-VCH
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Rules of thumb in engineering practice [[electronic resource] /] / Donald R. Woods
Rules of thumb in engineering practice [[electronic resource] /] / Donald R. Woods
Autore Woods Donald R
Pubbl/distr/stampa Weinheim, : Wiley-VCH
Descrizione fisica 1 online resource (480 p.)
Disciplina 620.002
620.004
Soggetto topico Engineering - Methodology
Civil engineering - Vocational guidance
ISBN 1-280-92176-5
9786610921768
3-527-61111-8
3-527-61112-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Rules of Thumb in Engineering Practice; Contents; Preface; 1 Rules of Thumb; 1.1 Rules of Thumb about Process Equipment; 1.2 Rules of Thumb about the Context for a Chemical Process: Physical and Thermal Properties; 1.3 Rules of Thumb about the Context for a Chemical Process: Corrosion; 1.4 Rules of Thumb about the Context for a Chemical Process: Process Control (based on communication from T.E. Marlin, McMaster University, 2001); 1.5 Rules of Thumb about the Context for a Chemical Process: Batch versus Continuous
1.6 Rules of Thumb about the Context for a Chemical Process: Heterogenous Phase contacting1.6.1 GL Systems; 1.6.2 LL Systems; 1.6.3 GLS Systems; 1.6.4 Particulate Systems; 1.7 Rules of Thumb about the Context for a Chemical Process: Economics; 1.8 Rules of Thumb about the Thinking Process: Problem Solving and Creativity; 1.9 Rules of Thumb about the Thinking Process: Goal Setting; 1.10 Rules of Thumb about the Thinking Process: Decision Making; 1.11 Rules of Thumb about the Thinking Process: Thermal Pinch; 1.12 Rules of Thumb about the Thinking Process: "Systems" Thinking
1.13 Rules of Thumb about the Thinking Process: Design1.14 Rules of Thumb about the Thinking Process: Process Improvement; 1.15 Rules of Thumb about the Thinking Process: Trouble Shooting; 1.16 Rules of Thumb about the Thinking Process: Environment, Waste Minimization, Safety; 1.17 Rules of Thumb about the People Part of Engineering: Communication; 1.18 Rules of Thumb about the People Part of Engineering: Listening; 1.19 Rules of Thumb about the People Part of Engineering: People Skills; 1.20 Rules of Thumb about the People Part of Engineering: Team and Group Skills
1.21 Rules of Thumb about the Context in Which We Function: Performance Review1.22 Rules of Thumb about the Context in Which We Function: Leadership; 1.23 Rules of Thumb about the Context in Which We Function: Entrepreneurship (based on Valikangas, 2003 and Cooper, 1987); 1.24 Rules of Thumb about the Context in Which We Function: Entrepreneurship; 1.25 Rules of Thumb about the Context in Which We Function: e-Business; 1.26 Rules of Thumb about Mentoring and Self-management; 1.27 Summary; 2 Transportation; 2.1 Gas Moving: Pressure Service; 2.2 Gas Moving: Vacuum Service; 2.3 Liquid
2.4 Gas-Liquid (Two-phase Flow)2.5 Pumping Slurries: Liquid-Solid Systems; 2.6 Solids; 2.7 Ducts and Pipes; 3 Energy Exchange; 3.1 Drives; 3.2 Thermal Energy: Furnaces; 3.3 Thermal Energy: Fluid Heat Exchangers, Condensers and Boilers; 3.4 Thermal Energy: Fluidized Bed (Coils in Bed); 3.5 Thermal Energy: Static Mixers; 3.6 Thermal Energy: Direct Contact L-L Immiscible Liquids; 3.7 Thermal Energy: Direct Contact G-L Cooling Towers; 3.8 Thermal Energy: Direct Contact G-L Quenchers; 3.9 Thermal Energy: Direct Contact G-L Condensers
3.10 Thermal Energy: G-G Thermal Wheels and Pebble Regenerators and Regenerators
Record Nr. UNINA-9910830871203321
Woods Donald R  
Weinheim, : Wiley-VCH
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Successful trouble shooting for process engineers [[electronic resource] ] : a complete course in case studies / / Donald R. Woods
Successful trouble shooting for process engineers [[electronic resource] ] : a complete course in case studies / / Donald R. Woods
Autore Woods Donald R
Pubbl/distr/stampa Weinheim, : Wiley-VCH, c2006
Descrizione fisica 1 online resource (650 p.)
Disciplina 660.2815
Soggetto topico Chemical plants - Design
Chemical process control
Chemical processes
Soggetto genere / forma Electronic books.
ISBN 1-280-85415-4
9786610854158
3-527-60783-8
3-527-60707-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Successful Trouble Shooting for Process Engineers; Contents; Preface; 1 What is Trouble Shooting?; 1.1 Characteristics of a Trouble-Shooting Problem; 1.1.1 Similarities among TS Problems; 1.1.2 Differences between TS Problems; 1.2 Characteristics of the Process Used to Solve Trouble-Shooting Problems; 1.2.1 How the Type of Problem Guides the TS Process or Strategy; 1.2.2 Five Key Elements Common to the TS Process; 1.3 Self-Test and Reflections; 1.4 Overview of the Book; 1.5 Summary; 1.6 Cases to Consider; 2 The Mental Problem-Solving Process used in Trouble Shooting; 2.1 Problem Solving
2.2 Trouble Shooting2.2.1 Considerations when Applying the Strategy to Solve Trouble-Shooting Problems; 2.2.2 Problem-Solving Processes Used by Skilled Trouble Shooters; 2.2.3 Data Collection and Analysis: Approaches Used to Test Hypotheses; 2.3 Overall Summary of Major Skills and a Worksheet; 2.3.1 Getting Organized: the Use of a Trouble-Shooter's Worksheet; 2.3.2 Feedback about your Trouble Shooting; 2.4 Example Use of the Trouble-Shooter's Worksheet; 2.5 Summary; 2.6 Cases to Consider; 3 Rules of Thumb for Trouble Shooting; 3.1 Overall; 3.1.1 General Rules of Thumb and Typical Causes
3.1.2 Corrosion as a Cause3.1.3 Instruments, Valves and Controllers; 3.1.4 Rules of Thumb for People; 3.1.5 Trouble-Shooting Teams; 3.2 Transportation Problems; 3.2.1 Gas Moving: Pressure Service; 3.2.2 Gas Moving: Vacuum Service; 3.2.3 Liquid; 3.2.4 Solids; 3.2.5 Steam; 3.3 Energy Exchange; 3.3.1 Drives; 3.3.2 Thermal Energy: Furnaces; 3.3.3 Thermal Energy: Fluid Heat Exchangers, Condensers and Boilers; 3.3.4 Thermal Energy: Refrigeration; 3.3.5 Thermal Energy: Steam Generation; 3.3.6 High-Temperature Heat-Transfer Fluids; 3.4 Homogeneous Separation; 3.4.1 Evaporation; 3.4.2 Distillation
3.4.3 Solution Crystallization3.4.4 Gas Absorption; 3.4.5 Gas Desorption/Stripping; 3.4.6 Solvent Extraction, SX; 3.4.7 Adsorption: Gas; 3.4.8 Adsorption: Liquid; 3.4.9 Ion Exchange; 3.4.10 Membranes: Reverse Osmosis, RO; 3.4.11 Membranes: Nanofiltration; 3.4.12 Membranes: Ultrafiltration, UF, and Microfiltration; 3.5 Heterogeneous Separations; 3.5.1 Gas-Liquid; 3.5.2 Gas-Solid; 3.5.3 Liquid-Liquid; 3.5.4 Gas-Liquid-Liquid Separators; 3.5.5 Dryer for GS Separation; 3.5.6 Screens for Liquid Solid Separation or Dewatering; 3.5.7 Settlers for LS Separation; 3.5.8 Hydrocyclones for LS Separation
3.5.9 Thickener for LS Separation3.5.10 Sedimentation Centrifuges; 3.5.11 Filtering Centrifuge; 3.5.12 Filter for LS Separation; 3.5.13 Screens for Solid-Solid Separation; 3.6 Reactor Problems; 3.6.1 PFTR: Multitube Fixed-Bed Catalyst, Nonadiabatic; 3.6.2 PFTR: Fixed-Bed Catalyst in Vessel: Adiabatic; 3.6.3 PFTR: Bubble Reactors, Tray Column Reactors; 3.6.4 PFTR: Packed Reactors; 3.6.5 PFTR: Trickle Bed; 3.6.6 PFTR: Thin Film; 3.6.7 STR: Batch (Backmix); 3.6.8 STR: Semibatch; 3.6.9 CSTR: Mechanical Mixer (Backmix); 3.6.10 STR: Fluidized Bed (Backmix); 3.6.11 Mix of CSTR, PFTR with Recycle
3.6.12 Reactive Extrusion
Record Nr. UNINA-9910144004803321
Woods Donald R  
Weinheim, : Wiley-VCH, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Successful trouble shooting for process engineers [[electronic resource] ] : a complete course in case studies / / Donald R. Woods
Successful trouble shooting for process engineers [[electronic resource] ] : a complete course in case studies / / Donald R. Woods
Autore Woods Donald R
Pubbl/distr/stampa Weinheim, : Wiley-VCH, c2006
Descrizione fisica 1 online resource (650 p.)
Disciplina 660.2815
Soggetto topico Chemical plants - Design
Chemical process control
Chemical processes
ISBN 1-280-85415-4
9786610854158
3-527-60783-8
3-527-60707-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Successful Trouble Shooting for Process Engineers; Contents; Preface; 1 What is Trouble Shooting?; 1.1 Characteristics of a Trouble-Shooting Problem; 1.1.1 Similarities among TS Problems; 1.1.2 Differences between TS Problems; 1.2 Characteristics of the Process Used to Solve Trouble-Shooting Problems; 1.2.1 How the Type of Problem Guides the TS Process or Strategy; 1.2.2 Five Key Elements Common to the TS Process; 1.3 Self-Test and Reflections; 1.4 Overview of the Book; 1.5 Summary; 1.6 Cases to Consider; 2 The Mental Problem-Solving Process used in Trouble Shooting; 2.1 Problem Solving
2.2 Trouble Shooting2.2.1 Considerations when Applying the Strategy to Solve Trouble-Shooting Problems; 2.2.2 Problem-Solving Processes Used by Skilled Trouble Shooters; 2.2.3 Data Collection and Analysis: Approaches Used to Test Hypotheses; 2.3 Overall Summary of Major Skills and a Worksheet; 2.3.1 Getting Organized: the Use of a Trouble-Shooter's Worksheet; 2.3.2 Feedback about your Trouble Shooting; 2.4 Example Use of the Trouble-Shooter's Worksheet; 2.5 Summary; 2.6 Cases to Consider; 3 Rules of Thumb for Trouble Shooting; 3.1 Overall; 3.1.1 General Rules of Thumb and Typical Causes
3.1.2 Corrosion as a Cause3.1.3 Instruments, Valves and Controllers; 3.1.4 Rules of Thumb for People; 3.1.5 Trouble-Shooting Teams; 3.2 Transportation Problems; 3.2.1 Gas Moving: Pressure Service; 3.2.2 Gas Moving: Vacuum Service; 3.2.3 Liquid; 3.2.4 Solids; 3.2.5 Steam; 3.3 Energy Exchange; 3.3.1 Drives; 3.3.2 Thermal Energy: Furnaces; 3.3.3 Thermal Energy: Fluid Heat Exchangers, Condensers and Boilers; 3.3.4 Thermal Energy: Refrigeration; 3.3.5 Thermal Energy: Steam Generation; 3.3.6 High-Temperature Heat-Transfer Fluids; 3.4 Homogeneous Separation; 3.4.1 Evaporation; 3.4.2 Distillation
3.4.3 Solution Crystallization3.4.4 Gas Absorption; 3.4.5 Gas Desorption/Stripping; 3.4.6 Solvent Extraction, SX; 3.4.7 Adsorption: Gas; 3.4.8 Adsorption: Liquid; 3.4.9 Ion Exchange; 3.4.10 Membranes: Reverse Osmosis, RO; 3.4.11 Membranes: Nanofiltration; 3.4.12 Membranes: Ultrafiltration, UF, and Microfiltration; 3.5 Heterogeneous Separations; 3.5.1 Gas-Liquid; 3.5.2 Gas-Solid; 3.5.3 Liquid-Liquid; 3.5.4 Gas-Liquid-Liquid Separators; 3.5.5 Dryer for GS Separation; 3.5.6 Screens for Liquid Solid Separation or Dewatering; 3.5.7 Settlers for LS Separation; 3.5.8 Hydrocyclones for LS Separation
3.5.9 Thickener for LS Separation3.5.10 Sedimentation Centrifuges; 3.5.11 Filtering Centrifuge; 3.5.12 Filter for LS Separation; 3.5.13 Screens for Solid-Solid Separation; 3.6 Reactor Problems; 3.6.1 PFTR: Multitube Fixed-Bed Catalyst, Nonadiabatic; 3.6.2 PFTR: Fixed-Bed Catalyst in Vessel: Adiabatic; 3.6.3 PFTR: Bubble Reactors, Tray Column Reactors; 3.6.4 PFTR: Packed Reactors; 3.6.5 PFTR: Trickle Bed; 3.6.6 PFTR: Thin Film; 3.6.7 STR: Batch (Backmix); 3.6.8 STR: Semibatch; 3.6.9 CSTR: Mechanical Mixer (Backmix); 3.6.10 STR: Fluidized Bed (Backmix); 3.6.11 Mix of CSTR, PFTR with Recycle
3.6.12 Reactive Extrusion
Record Nr. UNINA-9910830560203321
Woods Donald R  
Weinheim, : Wiley-VCH, c2006
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui