Planning guide for power distribution plants: design, implementation and operation of industrial networks
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Erlangen
Publicis Publ.
2011
|
Schlagworte: | |
Online-Zugang: | Ausfuehrliche Beschreibung Inhaltsverzeichnis |
Beschreibung: | 427 S. Ill., graph. Darst. |
ISBN: | 9783895783715 |
Internformat
MARC
LEADER | 00000nam a2200000 c 4500 | ||
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Datensatz im Suchindex
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adam_text | IMAGE 1
TABLE OF CONTENTS
A FUNDAMENTALS
1 INTRODUCTION 13
1.1 SPECIAL ASPECTS OF INDUSTRIAL POWER SYSTEMS 13
1.2 NEED FOR COMPLETE POWER SYSTEM AND INSTALLATION ENGINEERING
SOLUTIONS 15 1.3 TASK OF SYSTEM PLANNING 16
2 BASIC WORKFLOW FOR PLANNING 19
2.1 TOP-DOWN PRINCIPLE 19
2.2 DETERMINING THE STATE OF THE EXISTING SYSTEM 20
2.3 DETERMINING THE REQUIREMENTS 22
2.3.1 POWER DEMAND 22
2.3.2 QUALITY OF SUPPLY 24
2.3.2.1 SUPPLY RELIABILITY 24
2.3.2.2 VOLTAGE QUALITY 27
2.4 DETERMINING OF PROCESS-COMPLIANT POWER SUPPLY VARIANTS 34 2.5 SEARCH
FOR THE OPTIMUM SOLUTION 42
2.5.1 DECISION OBJECTIVES 42
2.5.2 DECISION-MAKING METHOD 43
B PLANNING RECOMMENDATIONS FOR MEDIUM-VOLTAGE SYSTEMS
3 CHOOSING THE MV SYSTEM VOLTAGE 47
3.1 INCOMING SUPPLY LEVEL 47
3.2 DISTRIBUTION LEVEL 48
4 DETERMINING SHORT-CIRCUIT STRESS AND THE NECESSARY SHORT-CIRCUIT
WITHSTAND CAPABILITY 51
4.1 CHOOSING THE SHORT-CIRCUIT POWER 51
4.2 SHORT-CIRCUIT WITHSTAND CAPABILITY OF THE EQUIPMENT 53
4.2.1 MV SWITCHGEAR 53
4.2.2 MV CABLES 58
4.2.3 MV DISTRIBUTION TRANSFORMERS 60
5 DEFINING OPTIMUM SYSTEM CONFIGURATIONS FOR INDUSTRIAL POWER SUPPLIES
62
5.1 MV LOAD STRUCTURE IN THE METAL-PROCESSING INDUSTRY 62
5.2 BEST MV/LV INCOMING SUPPLY VARIANT IN TERMS OF POWER SYSTEM
ENGINEERING 62
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1005644543
DIGITALISIERT DURCH
IMAGE 2
TABLE OF CONTENTS
5.3 OPTIMUM SYSTEM CONFIGURATION FOR CONNECTING TRANSFORMER LOAD-CENTRE
SUBSTATIONS 63
5.4 SYSTEM STRUCTURES AND CONCEPTS MEETING THE REQUIREMENTS FOR
INDUSTRIAL PLANTS 67 5.4.1 SMALL INDUSTRIAL PLANTS 67
5.4.2 MEDIUM-SIZED INDUSTRIAL PLANTS 69
5.4.3 LARGE INDUSTRIAL PLANTS 71
5.4.4 PRODUCTION FACILITIES OF HIGH-TECHNOLOGY BUSINESSES 78
5.5 SWITCHGEAR CLASSIFICATION FOR IMPLEMENTING THE MV POWER SYSTEM
CONCEPTS 84
6 CHOOSING THE NEUTRAL EARTHING 86
6.1 IMPORTANCE OF NEUTRAL EARTHING 86
6.2 METHODS OF NEUTRAL EARTHING 86
6.3 SELECTION CRITERION AND DECISION AID 107
6.4 SELECTION RECOMMENDATION FOR OPERATION OF MV CABLE NETWORKS IN
INDUSTRY . .. 109 6.5 NEUTRAL EARTHING ON BOTH SIDES OF TRANSFER
TRANSFORMERS IN OPERATION OF MV INDUSTRIAL POWER SYSTEMS 110
7 DESIGN OF THE MV POWER SYSTEM PROTECTION 114
7.1 FUNDAMENTALS OF PROTECTION ENGINEERING AND EQUIPMENT 114
7.2 PROTECTION OF SUPPLYING 110-KV/MV TRANSFORMERS 129
7.3 PROTECTION OF MV DISTRIBUTION TRANSFORMERS 130
7.3.1 PROTECTION WITH A SWITCH-FUSE COMBINATION 132
7.3.2 PROTECTION WITH A CIRCUIT-BREAKER-RELAY COMBINATION 146
7.4 CURRENT-LIMITING SHORT-CIRCUIT PROTECTION OF MOTORS AND CAPACITORS
150 7.4.1 FUSE PROTECTION OF HV MOTORS 150
7.4.2 FUSE PROTECTION OF CAPACITORS 154
7.5 PROTECTION OF BUSBARS 154
7.6 PROTECTION OF LINES 155
7.6.1 PROTECTION IN THE CASE OF DOUBLE-RADIAL-LINE CONNECTION OF SYSTEM
DISTRIBUTION SUBSTATIONS 156
7.6.2 PROTECTION IN THE CASE OF LOOP-IN OF SYSTEM DISTRIBUTION
SUBSTATIONS 157 7.7 PROTECTION CONCEPT FOR A FICTITIOUS 20-KV INDUSTRIAL
POWER SYSTEM WITH LOW-IMPEDANCE NEUTRAL EARTHING 159
C PLANNING RECOMMENDATIONS FOR LOW-VOLTAGE SYSTEMS
8 CHOOSING THE LV SYSTEM VOLTAGE 161
8.1 CATEGORIZATION OF THE LV LEVEL AS THE PROCESS AND LOAD LEVEL 161
8.2 VOLTAGES FOR THE PROCESS AND LOAD LEVEL 161
9 SHORT-CIRCUIT POWER AND CURRENTS IN THE LOW-VOLTAGE POWER SYSTEM . ..
166 9.1 TYPES AND CURRENTS OF FAULTS DETERMINING THE DIMENSIONING OF THE
SYSTEM AND EQUIPMENT 166
9.2 USE OF EQUIPMENT RESERVES TO HANDLE SHORT-CIRCUIT CURRENTS 170
8
IMAGE 3
TABLE OF CONTENTS
10 DESIGNING A LOW-VOLTAGE POWER SYSTEM TO MEET REQUIREMENTS 173 10.1
ANALYSIS OF THE LOAD STRUCTURE 173
10.1.1 CHARACTERISTIC LOAD GROUPS IN THE METAL-PROCESSING INDUSTRY 173
10.1.1.1 TOOLMAKING AND MECHANICAL WORKSHOPS 173
10.1.1.2 PUNCH AND PRESS SHOPS 177
10.1.1.3 WELDING SHOPS 183
10.1.1.4 PAINTING AND CURING PLANTS 195
10.1.1.5 LIGHTING SYSTEMS 196
10.1.1.6 EDP AND IT SYSTEMS 199
10.2 CHOOSING THE TYPE OF LV SYSTEM EARTHING 202
10.2.1 SYSTEM TYPES POSSIBLE ACCORDING TO THE STANDARDS 202
10.2.1.1 IT SYSTEM 208
10.2.1.2 TT SYSTEM 212
10.2.1.3 TN SYSTEM 217
10.2.2 EMC-COMPLIANT TN SYSTEMS WITH MULTIPLE INCOMING SUPPLY 225
10.2.2.1 TN-EMC SYSTEM WITH CENTRALIZED MULTIPLE INCOMING SUPPLY 226
10.2.2.2 TN-EMC SYSTEM WITH DECENTRALIZED MULTIPLE INCOMING SUPPLY 228
10.3 DEFINITION OF THE NETWORK CONFIGURATION 230
10.3.1 NETWORK CONFIGURATIONS FOR POWER SUPPLY AND DISTRIBUTION 230
10.3.1.1 SIMPLE RADIAL NETWORK 230
10.3.1.2 RADIAL NETWORK WITH SWITCHOVER RESERVE CAPACITY 231
10.3.1.3 RADIAL NETWORKS IN AN INTERCONNECTED CABLE SYSTEM 233 10.3.1.4
MULTI-END-FED MESHED NETWORK 234
10.3.1.5 RADIAL NETWORKS INTERCONNECTED THROUGH BUSBAR TRUNKING SYSTEMS
. . .. 235 10.3.2 SELECTING THE ECONOMICALLY AND TECHNICALLY MOST
FAVOURABLE NETWORK CONFIGURATION 236
11 SELECTING AND DIMENSIONING THE ELECTRICAL EQUIPMENT 238
11.1 DISTRIBUTION TRANSFORMERS 238
11.2 LOW-VOLTAGE SWITCHBOARDS AND DISTRIBUTION BOARD SYSTEMS 244 11.2.1
SIVACON S8 SWITCHBOARD 249
11.2.2 ALPHA 630 FLOOR-MOUNTED DISTRIBUTION BOARD 255
11.2.3 ALPHA 8HP MOULDED-PLASTIC DISTRIBUTION BOARD 256
11.2.4 SIVACON 8PS BUSBAR TRUNKING SYSTEM 257
11.2.5 TRANSFORMER LOAD-CENTRE SUBSTATION WITH SIVACON S8/8PS 260 11.3
CABLES 263
11.3.1 PERMISSIBLE CURRENT-CARRYING CAPACITY 263
11.3.2 PROTECTION AGAINST OVERLOAD 272
11.3.3 PROTECTION AGAINST SHORT CIRCUIT 275
11.3.4 PROTECTION AGAINST ELECTRIC SHOCK 280
11.3.5 PERMISSIBLE VOLTAGE DROP 283
11.3.6 DIMENSIONING EXAMPLE 290
12 REACTIVE-POWER COMPENSATION 297
12.1 TECHNICAL AND ECONOMIC REASONS FOR COMPENSATION 297
12.2 COMPENSATION WHEN SUPPLYING LINEAR LOADS 297
12.2.1 DETERMINING THE NECESSARY CAPACITIVE POWER 298
12.2.2 TYPES OF REACTIVE-POWER COMPENSATION 302
IMAGE 4
TABLE OF CONTENTS
12.2.2.1 INDIVIDUAL COMPENSATION 302
12.2.2.2 GROUP COMPENSATION 303
12.2.2.3 CENTRALIZED COMPENSATION 303
12.2.2.4 HYBRID OR MIXED COMPENSATION 305
12.2.3 CHOOSING THE MOST ADVANTAGEOUS TYPE OF COMPENSATION 305 12.2 A
REACTIVE-POWER COMPENSATION OF THREE-PHASE ASYNCHRONOUS MOTORS AND
DISTRIBUTION TRANSFORMERS 306
12.2.4.1 THREE-PHASE ASYNCHRONOUS MOTORS 306
12.2.4.2 DISTRIBUTION TRANSFORMERS 309
12.2.5 CONNECTING AND OPERATING AUTOMATIC COMPENSATION SYSTEMS 312
12.2.5.1 SELECTING A CURRENT TRANSFORMER FOR THE PF CONTROLLER 313
12.2.5.2 DEFINING THE NUMBER OF STEPS AND THE STEP POWER 314
12.2.5.3 SETTING THE CONTROLLER SENSITIVITY (C/K RESPONSE VALUE) 315
12.2.5.4 REQUIREMENTS, CONNECTION AND FUSE PROTECTION OF THE POWER
CAPACITORS 316 12.2.5.5 REACTIONS AFFECTING AUDIO-FREQUENCY RIPPLE
CONTROL SYSTEMS 320 12.3 COMPENSATION WHEN SUPPLYING NON-LINEAR LOADS
323
12.3.1 NEGATIVE EFFECTS OF HARMONICS ON THE POWER SYSTEM 323
12.3.2 MEASURES TO MITIGATE HARMONICS 328
12.3.2.1 INSTALLATION OF CAPACITOR UNITS WITH REACTORS 328
12.3.2.2 USE OF TUNED FILTER CIRCUITS 332
12.3.2.3 OPERATION WITH ACTIVE FILTERS 335
12.4 PLANNING OF COMPENSATION SYSTEMS WITH PRODUCTS FROM MODI 336 12.5
DEMONSTRATION OF THE ECONOMIC AND TECHNICAL BENEFIT OF REACTIVE-POWER
COMPENSATION 339
13 DESIGNING THE LV POWER SYSTEM PROTECTION 345
13.1 FUNDAMENTALS OF PROTECTION ENGINEERING AND EQUIPMENT 345
13.1.1 FUSES 346
13.1.2 CIRCUIT-BREAKERS 347
13.1.3 SWITCHGEAR ASSEMBLIES 351
13.1.4 COMPARATIVE EVALUATION OF THE CHARACTERISTICS OF PROTECTIVE
DEVICES 354 13.2 SELECTIVITY IN LV NETWORKS 356
13.2.1 RADIAL NETWORKS 356
13.2.1.1 SELECTIVITY BETWEEN LVHRC FUSES 357
13.2.1.2 SELECTIVITY BETWEEN CIRCUIT-BREAKERS 358
13.2.1.3 SELECTIVITY BETWEEN A CIRCUIT-BREAKER AND LV HRC FUSE 362
13.2.1.4 SELECTIVITY IN CASE OF INCOMING FEEDERS CONNECTED IN PARALLEL
365 13.2.1.5 SELECTIVITY AND UNDERVOLTAGE PROTECTION 371
13.2.2 MESHED AND CLOSED RING-OPERATED NETWORKS 372
13.2.2.1 SELECTIVITY IN MESHED NETWORKS WITH NODE FUSES 372
13.2.2.2 SELECTIVITY IN OPERATION OF RADIAL NETWORKS IN AN
INTERCONNECTED CABLE SYSTEM 373
13.2.2.3 SELECTIVITY IN OPERATION OF RADIAL NETWORKS INTERCONNECTED
THROUGH BUSBAR TRUNKING SYSTEMS 374
13.3 EXAMPLE OF SELECTIVE PROTECTION COORDINATION WITH SIMARIS DESIGN
375
14 LIST OF ACRONYMS, ABBREVIATIONS, SYMBOLS AND SUBSCRIPTS USED 382 14.1
ACRONYMS AND ABBREVIATIONS 382
14.2 SYMBOLS 386
10
IMAGE 5
TABLE OF CONTENTS
14.2.1 CURRENTS 386
14.2.2 VOLTAGES 386
14.2.3 RESISTANCES 387
14.2.4 POWERS AND ENERGY 387
14.2.5 TIME/DURATION 388
14.2.6 FACTORS 388
14.2.7 OTHER QUANTITIES 389
14.3 SUBSCRIPTS AND SUPERSCRIPTS 389
REFERENCES AND FURTHER READING 391
INDEX 414
11
|
any_adam_object | 1 |
author | Kiank, Hartmut 1952- Fruth, Wolfgang 1966- |
author_GND | (DE-588)110924053 (DE-588)143144022 |
author_facet | Kiank, Hartmut 1952- Fruth, Wolfgang 1966- |
author_role | aut aut |
author_sort | Kiank, Hartmut 1952- |
author_variant | h k hk w f wf |
building | Verbundindex |
bvnumber | BV039150530 |
classification_rvk | ZN 8510 |
classification_tum | ELT 901f |
ctrlnum | (OCoLC)759529724 (DE-599)DNB1005644543 |
dewey-full | 621.3192 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.3192 |
dewey-search | 621.3192 |
dewey-sort | 3621.3192 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Energietechnik, Energiewirtschaft Elektrotechnik Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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illustrated | Illustrated |
indexdate | 2024-07-10T00:00:04Z |
institution | BVB |
isbn | 9783895783715 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024168333 |
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owner_facet | DE-83 DE-12 DE-29T DE-634 DE-91 DE-BY-TUM |
physical | 427 S. Ill., graph. Darst. |
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record_format | marc |
spelling | Kiank, Hartmut 1952- Verfasser (DE-588)110924053 aut Planning guide for power distribution plants design, implementation and operation of industrial networks by Hartmut Kiank and Wolfgang Fruth Erlangen Publicis Publ. 2011 427 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Industrieanlage (DE-588)4026801-9 gnd rswk-swf Niederspannungsnetz (DE-588)4171865-3 gnd rswk-swf Elektrizitätsversorgung (DE-588)4014224-3 gnd rswk-swf Netzplanung (DE-588)4171522-6 gnd rswk-swf Mittelspannungsnetz (DE-588)4128965-1 gnd rswk-swf Mittelspannungsnetz (DE-588)4128965-1 s Niederspannungsnetz (DE-588)4171865-3 s Netzplanung (DE-588)4171522-6 s Elektrizitätsversorgung (DE-588)4014224-3 s Industrieanlage (DE-588)4026801-9 s DE-604 Fruth, Wolfgang 1966- Verfasser (DE-588)143144022 aut X:MVB text/html http://books.publicis-erlangen.de/cms/website.php?id=/de/produkte/energietechnik.htm&action=detail&pid=30076&pages=1 Ausfuehrliche Beschreibung DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024168333&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Kiank, Hartmut 1952- Fruth, Wolfgang 1966- Planning guide for power distribution plants design, implementation and operation of industrial networks Industrieanlage (DE-588)4026801-9 gnd Niederspannungsnetz (DE-588)4171865-3 gnd Elektrizitätsversorgung (DE-588)4014224-3 gnd Netzplanung (DE-588)4171522-6 gnd Mittelspannungsnetz (DE-588)4128965-1 gnd |
subject_GND | (DE-588)4026801-9 (DE-588)4171865-3 (DE-588)4014224-3 (DE-588)4171522-6 (DE-588)4128965-1 |
title | Planning guide for power distribution plants design, implementation and operation of industrial networks |
title_auth | Planning guide for power distribution plants design, implementation and operation of industrial networks |
title_exact_search | Planning guide for power distribution plants design, implementation and operation of industrial networks |
title_full | Planning guide for power distribution plants design, implementation and operation of industrial networks by Hartmut Kiank and Wolfgang Fruth |
title_fullStr | Planning guide for power distribution plants design, implementation and operation of industrial networks by Hartmut Kiank and Wolfgang Fruth |
title_full_unstemmed | Planning guide for power distribution plants design, implementation and operation of industrial networks by Hartmut Kiank and Wolfgang Fruth |
title_short | Planning guide for power distribution plants |
title_sort | planning guide for power distribution plants design implementation and operation of industrial networks |
title_sub | design, implementation and operation of industrial networks |
topic | Industrieanlage (DE-588)4026801-9 gnd Niederspannungsnetz (DE-588)4171865-3 gnd Elektrizitätsversorgung (DE-588)4014224-3 gnd Netzplanung (DE-588)4171522-6 gnd Mittelspannungsnetz (DE-588)4128965-1 gnd |
topic_facet | Industrieanlage Niederspannungsnetz Elektrizitätsversorgung Netzplanung Mittelspannungsnetz |
url | http://books.publicis-erlangen.de/cms/website.php?id=/de/produkte/energietechnik.htm&action=detail&pid=30076&pages=1 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024168333&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT kiankhartmut planningguideforpowerdistributionplantsdesignimplementationandoperationofindustrialnetworks AT fruthwolfgang planningguideforpowerdistributionplantsdesignimplementationandoperationofindustrialnetworks |