upload/misc/worldtracker.org/Electronics and Communications/Electronics ebook collection II/KUFFEL, E. (2000). High Voltage Engineering - Fundamentals (2nd ed.).pdf
High Voltage Engineering Fundamentals (Newnes) 🔍
John Kuffel, E. Kuffel, W. S. Zaengl
Elsevier Science & Technology Books, Newnes, 2, 2000
英语 [en] · PDF · 4.7MB · 2000 · 📘 非小说类图书 · 🚀/lgli/lgrs/nexusstc/upload/zlib · Save
描述
Power transfer for large systems depends on high system voltages. The basics of high voltage laboratory techniques and phenomena, together with the principles governing the design of high voltage insulation, are covered in this book for students, utility engineers, designers and operators of high voltage equipment.
In this new edition the text has been entirely revised to reflect current practice. Major changes include coverage of the latest instrumentation, the use of electronegative gases such as sulfur hexafluoride, modern diagnostic techniques, and high voltage testing procedures with statistical approaches.
- A classic text on high voltage engineering
- Entirely revised to bring you up-to-date with current practice
- Benefit from expanded sections on testing and diagnostic techniques
In this new edition the text has been entirely revised to reflect current practice. Major changes include coverage of the latest instrumentation, the use of electronegative gases such as sulfur hexafluoride, modern diagnostic techniques, and high voltage testing procedures with statistical approaches.
- A classic text on high voltage engineering
- Entirely revised to bring you up-to-date with current practice
- Benefit from expanded sections on testing and diagnostic techniques
备用文件名
upload/misc/worldtracker.org/Science/Electronics/High Voltage Engineering - Fundamentals 2nd ed. - E. Kuffel, W. Zaengl, J. Kuffel (Newnes, 2000) WW).pdf
备用文件名
lgli/DVD-033/Kuffel_E.,_Zaengl_W.S.,_Kuffel_J._High_Voltage_Engineering_Fundamentals_(2000)(2nd)(en)(539s).pdf
备用文件名
lgrsnf/DVD-033/Kuffel_E.,_Zaengl_W.S.,_Kuffel_J._High_Voltage_Engineering_Fundamentals_(2000)(2nd)(en)(539s).pdf
备用文件名
nexusstc/High Voltage Engineering Fundamentals/9621d422a92c98a7fddf6543edcfe016.pdf
备用文件名
zlib/Engineering/John Kuffel, E. Kuffel, W. S. Zaengl/High Voltage Engineering Fundamentals_462609.pdf
备选标题
High Voltage Engineering Fundamentals, Second Edition(repost)
备选标题
Техника и электрофизика высоких напряжений
备选作者
Е. Куффель, В. Цаенгль, Дж. Куффель; пер. с англ. С. М. Смольского под ред. И. П. Кужекина
备选作者
E. Kuffel, W.S. Zaengl, J. Kuffel
备选作者
E. Kuffel, W S Zaengl, J. Kuffel
备选作者
Kuffel, John, Kuffel, Peter
备选作者
John Kuffel; Peter Kuffel
备选作者
Adobe Acrobat 6.0
备用出版商
Butterworth-Heinemann/Newnes
备用出版商
Butterworth-Heinemann Ltd
备用出版商
Woodhead Publishing Ltd
备用出版商
Architectural Press
备用出版商
John Murray Press
备用出版商
Focal Press
备用出版商
Интеллект
备用版本
Долгопрудный, Московская обл, Russia, 2011
备用版本
United Kingdom and Ireland, United Kingdom
备用版本
2nd ed., Oxford, Boston, England, 2000
备用版本
Elsevier Ltd., Oxford, 2000
备用版本
2 edition, July 17, 2000
备用版本
Jordan Hill, 2020
备用版本
2, US, 2000
元数据中的注释
mexmat -- 33
元数据中的注释
lg26337
元数据中的注释
producers:
Acrobat Distiller 4.05 for Windows
Acrobat Distiller 4.05 for Windows
元数据中的注释
{"edition":"2","isbns":["008050809X","0750636343","9780080508092","9780750636346"],"last_page":556,"publisher":"Elsevier","series":"Newnes"}
元数据中的注释
类型: 图书
元数据中的注释
出版日期: 2000
元数据中的注释
出版社: Newnes
元数据中的注释
Includes bibliographical references and index.
元数据中的注释
Библиогр. в конце гл.
元数据中的注释
РГБ
元数据中的注释
Russian State Library [rgb] MARC:
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备用描述
Contents 4
Preface to Second Edition 10
Preface to First Edition 13
Introduction 14
1.1 Generation and transmission of electric energy 14
1.2 Voltage stresses 16
1.3 Testing voltages 18
1.3.1 Testing with power frequency voltages 18
1.3.2 Testing with lightning impulse voltages 18
1.3.3 Testing with switching impulses 19
1.3.4 D.C. voltages 19
1.3.5 Testing with very low-frequency voltage 20
Generation of high voltages 21
2.1 Direct voltages 22
2.1.1 A.C. to D.C. conversion 23
2.1.2 Electrostatic generators 37
2.2 Alternating voltages 42
2.2.1 Testing transformers 45
2.2.2 Series resonant circuits 53
2.3 Impulse voltages 61
2.3.1 Impulse voltage generator circuits 65
2.3.2 Operation, design and construction of impulse generators 79
2.4 Control systems 87
Measurement of high voltages 90
3.1 Peak voltage measurements by spark gaps 91
3.2 Electrostatic voltmeters 107
3.3 Ammeter in series with high ohmic resistors and high ohmic resistor voltage dividers 109
3.4 Generating voltmeters and field sensors 121
3.5 The measurement of peak voltages 123
3.6 Voltage dividing systems and impulse voltage measurements 142
3.7 Fast digital transient recorders for impulse measurements 188
Electrostatic fields and field stress control 214
4.1 Electrical field distribution and breakdown strength of insulating materials 214
4.2 Fields in homogeneous, isotropic materials 218
4.3 Fields in multidielectric, isotropic materials 238
4.4 Numerical methods 254
Electrical breakdown in gases 294
5.1 Classical gas laws 294
5.2 Ionization and decay processes 307
5.3 Cathode processes – secondary effects 0
5.4 Transition from non-self-sustained discharges to breakdown 337
5.5 The streamer or ‘Kanal’ mechanism of spark 0
5.6 The sparking voltage– Paschen’s law 0
5.7 Penning effect 352
5.8 The breakdown field strength ( 353
5.9 Breakdown in non-uniform fields 355
5.10 Effect of electron attachment on the breakdown criteria 358
5.11 Partial breakdown, corona discharges 361
5.12 Polarity effect – influence of space charge 0
5.13 Surge breakdown voltage– time lag 0
Breakdown in solid and liquid dielectrics 380
6.1 Breakdown in solids 380
6.2 Breakdown in liquids 398
6.3 Static electrification in power transformers 406
Non-destructive insulation test techniques 408
7.1 Dynamic properties of dielectrics 408
7.2 Dielectric loss and capacitance measurements 424
7.3 Partial-discharge measurements 434
Overvoltages, testing procedures and insulation coordination 473
8.1 The lightning mechanism 473
8.2 Simulated lightning surges for testing 479
8.3 Switching surge test voltage characteristics 481
8.4 Laboratory high-voltage testing procedures and statistical treatment of results 485
8.5 Weighting of the measured breakdown probabilities 502
8.6 Insulation coordination 505
8.7 Modern power systems protection devices 513
Design and testing of external insulation 522
9.1 Operation in a contaminated environment 522
9.2 Flashover mechanism of polluted insulators under a. c. and d. c. 523
9.3 Measurements and tests 525
9.4 Mitigation of contamination flashover 533
9.5 Design of insulators 535
9.6 Testing and specifications 543
Index 546
Referex
Preface to Second Edition 10
Preface to First Edition 13
Introduction 14
1.1 Generation and transmission of electric energy 14
1.2 Voltage stresses 16
1.3 Testing voltages 18
1.3.1 Testing with power frequency voltages 18
1.3.2 Testing with lightning impulse voltages 18
1.3.3 Testing with switching impulses 19
1.3.4 D.C. voltages 19
1.3.5 Testing with very low-frequency voltage 20
Generation of high voltages 21
2.1 Direct voltages 22
2.1.1 A.C. to D.C. conversion 23
2.1.2 Electrostatic generators 37
2.2 Alternating voltages 42
2.2.1 Testing transformers 45
2.2.2 Series resonant circuits 53
2.3 Impulse voltages 61
2.3.1 Impulse voltage generator circuits 65
2.3.2 Operation, design and construction of impulse generators 79
2.4 Control systems 87
Measurement of high voltages 90
3.1 Peak voltage measurements by spark gaps 91
3.2 Electrostatic voltmeters 107
3.3 Ammeter in series with high ohmic resistors and high ohmic resistor voltage dividers 109
3.4 Generating voltmeters and field sensors 121
3.5 The measurement of peak voltages 123
3.6 Voltage dividing systems and impulse voltage measurements 142
3.7 Fast digital transient recorders for impulse measurements 188
Electrostatic fields and field stress control 214
4.1 Electrical field distribution and breakdown strength of insulating materials 214
4.2 Fields in homogeneous, isotropic materials 218
4.3 Fields in multidielectric, isotropic materials 238
4.4 Numerical methods 254
Electrical breakdown in gases 294
5.1 Classical gas laws 294
5.2 Ionization and decay processes 307
5.3 Cathode processes – secondary effects 0
5.4 Transition from non-self-sustained discharges to breakdown 337
5.5 The streamer or ‘Kanal’ mechanism of spark 0
5.6 The sparking voltage– Paschen’s law 0
5.7 Penning effect 352
5.8 The breakdown field strength ( 353
5.9 Breakdown in non-uniform fields 355
5.10 Effect of electron attachment on the breakdown criteria 358
5.11 Partial breakdown, corona discharges 361
5.12 Polarity effect – influence of space charge 0
5.13 Surge breakdown voltage– time lag 0
Breakdown in solid and liquid dielectrics 380
6.1 Breakdown in solids 380
6.2 Breakdown in liquids 398
6.3 Static electrification in power transformers 406
Non-destructive insulation test techniques 408
7.1 Dynamic properties of dielectrics 408
7.2 Dielectric loss and capacitance measurements 424
7.3 Partial-discharge measurements 434
Overvoltages, testing procedures and insulation coordination 473
8.1 The lightning mechanism 473
8.2 Simulated lightning surges for testing 479
8.3 Switching surge test voltage characteristics 481
8.4 Laboratory high-voltage testing procedures and statistical treatment of results 485
8.5 Weighting of the measured breakdown probabilities 502
8.6 Insulation coordination 505
8.7 Modern power systems protection devices 513
Design and testing of external insulation 522
9.1 Operation in a contaminated environment 522
9.2 Flashover mechanism of polluted insulators under a. c. and d. c. 523
9.3 Measurements and tests 525
9.4 Mitigation of contamination flashover 533
9.5 Design of insulators 535
9.6 Testing and specifications 543
Index 546
Referex
备用描述
Contents......Page 4
Preface to Second Edition......Page 10
Preface to First Edition......Page 13
1.1 Generation and transmission of electric energy......Page 14
1.2 Voltage stresses......Page 16
1.3.2 Testing with lightning impulse voltages......Page 18
1.3.4 D.C. voltages......Page 19
1.3.5 Testing with very low-frequency voltage......Page 20
Generation of high voltages......Page 21
2.1 Direct voltages......Page 22
2.1.1 A.C. to D.C. conversion......Page 23
2.1.2 Electrostatic generators......Page 37
2.2 Alternating voltages......Page 42
2.2.1 Testing transformers......Page 45
2.2.2 Series resonant circuits......Page 53
2.3 Impulse voltages......Page 61
2.3.1 Impulse voltage generator circuits......Page 65
2.3.2 Operation, design and construction of impulse generators......Page 79
2.4 Control systems......Page 87
Measurement of high voltages......Page 90
3.1 Peak voltage measurements by spark gaps......Page 91
3.2 Electrostatic voltmeters......Page 107
3.3 Ammeter in series with high ohmic resistors and high ohmic resistor voltage dividers......Page 109
3.4 Generating voltmeters and field sensors......Page 121
3.5 The measurement of peak voltages......Page 123
3.6 Voltage dividing systems and impulse voltage measurements......Page 142
3.7 Fast digital transient recorders for impulse measurements......Page 188
4.1 Electrical field distribution and breakdown strength of insulating materials......Page 214
4.2 Fields in homogeneous, isotropic materials......Page 218
4.3 Fields in multidielectric, isotropic materials......Page 238
4.4 Numerical methods......Page 254
5.1 Classical gas laws......Page 294
5.2 Ionization and decay processes......Page 307
5.13 Surge breakdown voltage– time lag......Page 0
5.4 Transition from non-self-sustained discharges to breakdown......Page 337
5.7 Penning effect......Page 352
5.8 The breakdown field strength (......Page 353
5.9 Breakdown in non-uniform fields......Page 355
5.10 Effect of electron attachment on the breakdown criteria......Page 358
5.11 Partial breakdown, corona discharges......Page 361
6.1 Breakdown in solids......Page 380
6.2 Breakdown in liquids......Page 398
6.3 Static electrification in power transformers......Page 406
7.1 Dynamic properties of dielectrics......Page 408
7.2 Dielectric loss and capacitance measurements......Page 424
7.3 Partial-discharge measurements......Page 434
8.1 The lightning mechanism......Page 473
8.2 Simulated lightning surges for testing......Page 479
8.3 Switching surge test voltage characteristics......Page 481
8.4 Laboratory high-voltage testing procedures and statistical treatment of results......Page 485
8.5 Weighting of the measured breakdown probabilities......Page 502
8.6 Insulation coordination......Page 505
8.7 Modern power systems protection devices......Page 513
9.1 Operation in a contaminated environment......Page 522
9.2 Flashover mechanism of polluted insulators under a. c. and d. c.......Page 523
9.3 Measurements and tests......Page 525
9.4 Mitigation of contamination flashover......Page 533
9.5 Design of insulators......Page 535
9.6 Testing and specifications......Page 543
Index......Page 546
Preface to Second Edition......Page 10
Preface to First Edition......Page 13
1.1 Generation and transmission of electric energy......Page 14
1.2 Voltage stresses......Page 16
1.3.2 Testing with lightning impulse voltages......Page 18
1.3.4 D.C. voltages......Page 19
1.3.5 Testing with very low-frequency voltage......Page 20
Generation of high voltages......Page 21
2.1 Direct voltages......Page 22
2.1.1 A.C. to D.C. conversion......Page 23
2.1.2 Electrostatic generators......Page 37
2.2 Alternating voltages......Page 42
2.2.1 Testing transformers......Page 45
2.2.2 Series resonant circuits......Page 53
2.3 Impulse voltages......Page 61
2.3.1 Impulse voltage generator circuits......Page 65
2.3.2 Operation, design and construction of impulse generators......Page 79
2.4 Control systems......Page 87
Measurement of high voltages......Page 90
3.1 Peak voltage measurements by spark gaps......Page 91
3.2 Electrostatic voltmeters......Page 107
3.3 Ammeter in series with high ohmic resistors and high ohmic resistor voltage dividers......Page 109
3.4 Generating voltmeters and field sensors......Page 121
3.5 The measurement of peak voltages......Page 123
3.6 Voltage dividing systems and impulse voltage measurements......Page 142
3.7 Fast digital transient recorders for impulse measurements......Page 188
4.1 Electrical field distribution and breakdown strength of insulating materials......Page 214
4.2 Fields in homogeneous, isotropic materials......Page 218
4.3 Fields in multidielectric, isotropic materials......Page 238
4.4 Numerical methods......Page 254
5.1 Classical gas laws......Page 294
5.2 Ionization and decay processes......Page 307
5.13 Surge breakdown voltage– time lag......Page 0
5.4 Transition from non-self-sustained discharges to breakdown......Page 337
5.7 Penning effect......Page 352
5.8 The breakdown field strength (......Page 353
5.9 Breakdown in non-uniform fields......Page 355
5.10 Effect of electron attachment on the breakdown criteria......Page 358
5.11 Partial breakdown, corona discharges......Page 361
6.1 Breakdown in solids......Page 380
6.2 Breakdown in liquids......Page 398
6.3 Static electrification in power transformers......Page 406
7.1 Dynamic properties of dielectrics......Page 408
7.2 Dielectric loss and capacitance measurements......Page 424
7.3 Partial-discharge measurements......Page 434
8.1 The lightning mechanism......Page 473
8.2 Simulated lightning surges for testing......Page 479
8.3 Switching surge test voltage characteristics......Page 481
8.4 Laboratory high-voltage testing procedures and statistical treatment of results......Page 485
8.5 Weighting of the measured breakdown probabilities......Page 502
8.6 Insulation coordination......Page 505
8.7 Modern power systems protection devices......Page 513
9.1 Operation in a contaminated environment......Page 522
9.2 Flashover mechanism of polluted insulators under a. c. and d. c.......Page 523
9.3 Measurements and tests......Page 525
9.4 Mitigation of contamination flashover......Page 533
9.5 Design of insulators......Page 535
9.6 Testing and specifications......Page 543
Index......Page 546
备用描述
Power transfer for large systems depends on high system voltages. The basics of high voltage laboratory techniques and phenomena, together with the principles governing the design of high voltage insulation, are covered in this book for students, utility engineers, designers and operators of high voltage equipment.<br><br>
In this new edition the text has been entirely revised to reflect current practice. Major changes include coverage of the latest instrumentation, the use of electronegative gases such as sulfur hexafluoride, modern diagnostic techniques, and high voltage testing procedures with statistical approaches.<br><br>A classic text on high voltage engineering<br>Entirely revised to bring you up-to-date with current practice<br>Benefit from expanded sections on testing and diagnostic techniques
In this new edition the text has been entirely revised to reflect current practice. Major changes include coverage of the latest instrumentation, the use of electronegative gases such as sulfur hexafluoride, modern diagnostic techniques, and high voltage testing procedures with statistical approaches.<br><br>A classic text on high voltage engineering<br>Entirely revised to bring you up-to-date with current practice<br>Benefit from expanded sections on testing and diagnostic techniques
备用描述
"The basics of high voltage laboratory techniques and phenomena, together with the principles governing the design of high voltage insulation, are covered in this book for students studying high voltage engineering at both undergraduate and postgraduate level, utility engineers, designers and operators of high voltage equipment." "In this new edition, the text has been entirely revised to reflect current practice. Major changes include coverage of the latest instrumentation, the use of electronegative gases such as sulphur hexafluoride, modern diagnostic techniques, and high voltage testing procedures with statistical approaches."--Jacket
备用描述
The potential benefits of electrical energy supplied to a number of consumers from a common generating system were recognized shortly after the development of the 'dynamo', commonly known as the generator.
开源日期
2009-07-20
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