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US$669.00 · In stock Delivery: <= 5 days. True-PDF full-copy in English will be manually translated and delivered via email. GBZ29630-2013: Static var compensators (SVC) -- System design and application guidelines Status: Valid
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| GB/Z 29630-2013 | English | 669 |
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Static var compensators (SVC) -- System design and application guidelines
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GB/Z 29630-2013
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Basic data | Standard ID | GB/Z 29630-2013 (GB/Z29630-2013) | | Description (Translated English) | Static var compensators (SVC) -- System design and application guidelines | | Sector / Industry | National Standard | | Classification of Chinese Standard | K46 | | Classification of International Standard | 29.200 | | Word Count Estimation | 29,244 | | Quoted Standard | GB 311.1; GB/T 1094.6; GB 1984; GB 1985; GB/T 6451; GB/T 10228; GB/T 11024.1; GB 11032; GB/T 12325; GB/T 12326; GB/T 14285; GB/T 14549; GB/T 14598.9; GB/T 14598.10; GB/T 14598.13; GB/T 14598.14; GB/T 15166.4; GB/T 15291; GB/T 15543; GB/T 15945; GB/T 20298 | | Regulation (derived from) | National Standards Bulletin 2013 No. 10 | | Issuing agency(ies) | Ministry of Health of the People's Republic of China | | Summary | This standard specifies: static var compensator device meets the system requirements to run design content, against SVC components, subsystems and layout, installation and associated design content put forward the basic requirements. This standard applies |
GBZ29630-2013: Static var compensators (SVC) -- System design and application guidelines---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Static var compensators (SVC) .System design and application guidelines
ICS 29.200
K46
People's Republic of China national standardization of technical guidance documents
Static reactive power compensation device
System Design and Application Guidelines
Staticvarcompensators (SVC) -
2013-07-19 released
2013-12-02 Implementation
General Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
China National Standardization Administration released
Directory
Foreword Ⅲ
1 Scope 1
2 Normative references 1
3 Terms and definitions 2
4 SVC installation site 5
4.1 Environmental conditions 5
4.2 system conditions 6
4.3 load conditions 6
4.4 other conditions 6
5 main function 6
6 type and wiring 7
7 main parameters and performance 8
8 system design 9
8.1 Design Goal 9
8.2 Design Content 9
8.3 System Research 9
8.4 Equipment Layout 10
8.5 Utilization and Reliability 11
8.6 Assessment of wear and tear 11
8.7 Noise 12
9 SVC Components and Subsystem Requirements 12
9.1 Thyristor valve 12
9.2 Thyristor valve cooling equipment 12
9.3 Phased Reactor 12
9.4 capacitor bank 13
9.5 filter (series) reactor 13
9.6 Circuit Breakers 13
9.7 Isolation switch and grounding switch 13
Lightning arrester
9.9 Special Transformer (if required) 13
9.10 Control System
9.11 Protection System 14
9.12 fault recording system 15
9.13 Meter and monitoring system 15
9.14 Electromagnetic compatibility 15
9.15 Auxiliary Equipment 15
Other requirements 16
10.1 Installation 16
10.2 Fire and Ventilation 16
10.3 SVC Engineering Description and Scope of Supply 16
10.4 Technical Documentation and Training 16
Appendix A (informative) flicker improvement rate 17
Appendix B (Normative) Thyristor valve loss calculation method 18
Appendix C (informative) SVC project description and scope of supply 21
Appendix D (informative) technical documents and training 23
Foreword
This instructional document has been drafted in accordance with the rules given in GB/T 1.1-2009.
This guidance document is proposed by China Electrical Equipment Industry Association.
This Guidance Document is organized by the National Committee of Technical Standardization of Power Electronics (SAC/TC60).
The main drafting of this technical guidance document. Xi'an High Voltage Apparatus Research Institute Co., Ltd., China Southern Power Grid Research Institute limited liability
Any company, Nanjing NARI insurance Electric Co., Ltd., Rongxin Power Electronics Co., Ltd., State Power Nanjing Automation Co., Ltd., Xi'an
Polytechnic University, Xi'an Xixian Power Capacitor Co., Ltd., Southwest Power Design Institute Grid Branch, Xi'an Institute of Power Electronics Technology,
State Grid Electric Power Research Institute, Kunming Electric Institute of Science and Technology, Xi'an Xikai High Voltage Electric Co., Ltd. Xu Ji Group Co., Ltd. Flexible
Transmission company.
The main drafters of this technical document are Sun Wei, Fu Chuang, Chen Chih-han, Zhang Fan-yong, Yang Xiaohui, Tian Enwen, Li Lu, Tong Xiangqian, Shin Jianwei,
Wang Youlong, Yang Zhiyong, Zhang Huarong, Wei Hongqi, Zhu Zhenfei, Liang Shuaiqi, Zhou Qiongfang, Zhao Yongtao, Hu Xuhui, Meng Chen, He Qinglian.
Static reactive power compensation device
System Design and Application Guidelines
1 Scope
This Guidance Document specifies the design of a static var compensation device (hereinafter referred to as SVC) to meet the operational requirements of the system.
SVC components, subsystems, and layout, installation, and related design content set forth the basic requirements.
This guidance document is applicable to the design of thyristor-based SVCs in transmission and distribution systems.
This guidance is mainly for Thyristor Control Reactor (TCR) type and Thyristor Switched Capacitor (TSC) type SVC
Thyristor Switching Reactor (TSR) SVC Refer to this instructional document for implementation.
Each SVC project has its own particularity, and should be used according to the specific engineering conditions and requirements of the guidance of technical documents, if necessary, should be phase
Should be added.
2 Normative references
The following documents for the application of this document is essential. For dated references, only the dated version applies to this article
Pieces. For undated references, the latest edition (including all amendments) applies to this document.
GB 311.1 Insulation coordination Part 1. Definitions, principles and rules (GB 311.1-2012, IEC 60071-1.2006, MOD)
GB/T 1094.6 Power Transformer Part 6. Reactors (GB/T 1094.6-2011, IEC 60076-6.2007, MOD)
GB 1984 high-voltage AC circuit breakers (GB 1984-2003, IEC 62271-100.2001, MOD)
GB 1985 high-voltage AC isolation switch and earthing switch (GB 1985-2004, IEC 62271-102.2002, MOD)
GB/T 6451 oil-immersed power transformer technical parameters and requirements
GB/T 10228 dry-type power transformer technical parameters and requirements
GB/T 11024.1 Shunt capacitors for AC power systems with nominal voltages above 1000 V - Part 1. General
(GB/T 11024.1-2010, IEC 60871-1.2005, MOD)
GB 11032 AC gapless metal oxide surge arresters (GB 11032-2010, IEC 60099-4.2006, MOD)
GB/T 12325 power quality power supply voltage deviation
GB/T 12326 power quality voltage fluctuations and flicker
GB/T 14285 relay protection and safety automatic device technical regulations
GB/T 14549 Power Quality Utility Harmonic
GB/T 14598.9 Measuring relays and protection equipment - Part 22-3 - Electrical disturbance tests Radiated electromagnetic field immunity
(GB/T 14598.9-2010, IEC 60255-22-3.2007, IDT)
GB/T 14598.10 Measuring relays and protection equipment - Part 22-4 - Electrical disturbance tests Electrical fast transient/burst resistance
Scramble test (GB/T 14598.10-2012, IEC 60255-22-4.2008, IDT)
GB/T 14598.13 Electrical relays Part 22-1. Electrical disturbance tests for measuring relays and protection devices 1MHz pulse
Rush immunity test (GB/T 14598.13-2008, IEC 60255-22-1.2007, MOD)
GB/T 14598.14 Measuring relays and protection equipment - Part 22-2. Electrical disturbance tests Electrostatic discharge test
(GB/T 14598.14-2010, IEC 60255-22-2.2008, IDT)
GB/T 15166.4 high-voltage AC fuses - Part 4. Shunt capacitors with protective fuses (GB/T 15166.4-
2008, IEC 60549.1976, MOD)
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