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Inductive load switching for high-voltage alternating current switchgear and controlgear
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GB/T 29489-2013
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Basic data | Standard ID | GB/T 29489-2013 (GB/T29489-2013) | | Description (Translated English) | Inductive load switching for high-voltage alternating current switchgear and controlgear | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | K43 | | Classification of International Standard | 29.130.10 | | Word Count Estimation | 25,215 | | Quoted Standard | GB 1984-2003; GB/T 2900.20-1994; GB/T 11022-2011; GB/T 14808; IEC 62271-306; IEC 62271-310 | | Adopted Standard | IEC 62271-110-2009, MOD | | Regulation (derived from) | National Standards Bulletin 2013 No. 2 | | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China | | Summary | This standard applies to indoor or outdoor installation, the operating frequency is 50 Hz, voltage 3 000 V and above systems and used for inductive load current switching of high voltage AC switchgear and control equipment. This standard does not consider |
GB/T 29489-2013: Inductive load switching for high-voltage alternating current switchgear and controlgear ---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.
Inductive load switching for high-voltage alternating current switchgear and controlgear
ICS 29.130.10
K43
National Standards of People's Republic of China
AC high voltage switchgear and control equipment
Inductive load opening and closing
controlgear
(IEC 62271-110.2009, High-voltageswitchgearandcontrolgear-
Part 110. Inductiveloadswitching, MOD)
Issued on. 2013-02-07
2013-07-01 implementation
Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China
Standardization Administration of China released
Table of Contents
Introduction Ⅲ
1 Overview 1
1.1 Scope 1
1.2 Normative references 1
2 Normal and special conditions of use
3 Terms and definitions 2
Rating 3 4
4.1 Overview 3
4.2 Rated voltage (Ur) 3
4.3 Rated insulation level 3
4.4 Rated frequency (fr) 3
4.5 rated current (Ir) and temperature rise 3
4.6 Rated short time withstand current (Ik) 3
4.7 Rated peak withstand current (Ip) 3
4.8 Rated short duration (tk) 3
4.9 actuator and the auxiliary and control circuit rated supply voltage (Ua) 3
4.10 operating mechanism and auxiliary circuit and control circuit of the power frequency rated 3
4.11 insulation, operation and/or breaking with the compressed air supply pressure rated 3
4.101 rated short-circuit breaking current (Isc) 3
4.102 and rated short-circuit breaking current related to transient recovery voltage 4
4.103 rated short-circuit current 3
4.104 Rated operating sequence 4
4.108 inductive load opening and closing 4
4.109 rated time parameter 4
4.110 Mechanical operation times 4
4.111 electrical circuit breaker according to the classification of life 4
5 Design and Structure 4
6 Type Test 4
6.1 Overview 4
6.2 Insulation test 4
6.3 Radio interference voltage (riv) test 5
6.4 main circuit resistance measurements 5
6.5 Temperature Rise Test 5
6.6 Short-time withstand current and peak withstand current 5
6.7 degree of protection of verification 5
6.8 tightness test 5
6.9 Electromagnetic compatibility (EMC) test 5
6.101 mechanical and environmental tests 5
6.102 closing and breaking tests of the provisions of 5
6.103 short-circuit breaking test and test circuit (5)
6.104 short-circuit test parameter 5
6.105 short circuit test procedure 5
6.106 Basic circuit test mode 5
6.107 critical current test 6
6.108 single-phase and out-phase ground fault test 6
6.109 near zone fault test 6
6.110 step-closing and breaking tests 6
6.111 Capacitive current switching test 6
6.112 E2 class breaker closing and breaking tests of special requirements 6
6.113 72.5kV and above Electrical Life Test 6
6.114 HV Motor current switching test 6
6.115 shunt reactor current switching test 9
7 factory test 15
8 is a circuit breaker selection guide 15
9 Inquire with information, the tender offer and order 15
10 transport, storage, installation, operation and maintenance of Rule 15
11 security 15
Calculation Appendix A (normative appendix) t3 value 20
Foreword
This standard was drafted in accordance with GB/T 1.1-2009 given rules.
This standard uses redrafted law revision using IEC 62271-110.2009 "high-voltage switchgear and control equipment Part 110. sense
Load opening and closing. "
This standard and IEC 62271-110.2009 technical differences and their reasons are as follows.
--- In order to comply with the actual situation of China's power grid, in the "1.1" and will "run frequency 50Hz, 60Hz, with voltage 1000V
On "to" run frequency 50Hz, voltage 3kV and above ";
--- In order to maintain the integrity of the standard structure, in Chapter 4 increase in the content of 4.111 to 4.2, 4.4 to 4.104,4.109;
--- In order to maintain the integrity of the standard structure, in Chapter 6 increase in the content of 6.109 to 6.113;
--- Increased in line with China's actual situation of the grid in Table 4 7.2kV, 31.5kV, 40.5kV and 126kV related
parameter;
--- Increased in line with China's actual situation of the 126kV grid in Table 5, the relevant parameters of 252kV and 363kV;
--- In order to meet the actual situation of China's power grid, modification of the relevant standard values \u200b\u200bof rated voltage;
--- According to the actual situation of China's power grid will be "72.5kV or less" to "72.5kV and below", "72.5kV and above" to
"72.5kV above."
The standard proposed by China Electrical Equipment Industrial Association.
This standard by the national high-voltage switch equipment Standardization Technical Committee (SAC/TC65) centralized.
This standard was drafted. Xi'an High Voltage Apparatus Research Institute Co., Ltd., China Electric Power Research Institute, Institute of High Voltage, Hebei
Electric Power Research Institute, high-voltage electrical machinery industry product quality inspection center (Shenyang), New Northeast Electric (Shenyang) High Voltage Switchgear Co., Ltd., the high level
Group Co., Ltd. Shandong Taikai high-voltage switch, Chint Electric Co., Ltd. Changzhou Pacific Power Equipment (Group) Co.,
The company, The Institute of Electrical Science, Alstom Grid Technology Center Co., Ltd., Suzhou Alstom high-voltage electrical switch Ltd., Shi
Schneider Electric (China) Co., Ltd., ABB Xiamen Switchgear Co. Ltd., ABB (China) Co., Ltd. Pressure Technology Center.
The main drafters of this standard. Tian Enwen, Panjin, Li Xiangyang, Xing Na, Wu Zhao, Wangchao Wu, Guo Zheng, Deng Meng, Weijun Mei, Huang Jinfeng, Yan Guan Xing,
WANG Zhao Min, Liu all, Jiang Xiaofei, Yuanchun Ping, Deng Yonghui, Xiaomin Ying, Wang Jue, Chen Shu Yan, Dai Huai-Zhi, Li sixty, Liu Yuwen, Yangxin Jie.
AC high voltage switchgear and control equipment
Inductive load opening and closing
1 Overview
1.1 Scope
This standard applies to indoor or outdoor installation, the operating frequency of 50Hz, and above 3000V voltage systems and are used for inductive
Load current switching of high voltage AC switchgear and control equipment.
Note 1. This standard mainly has the inductive load open high voltage AC circuit breaker binding capacity were prepared.
Note 2. This standard also applies to a circuit breaker GB 1984-2003 for the opening and closing motor current and high voltage shunt reactor current for
GB/T 14808 is used to cover the opening and closing of the high-pressure high-voltage current of the motor contactor.
This standard does not consider the opening and closing load transformer, ie breaking transformer magnetizing current. The following reasons.
a) due to the nonlinear transformer core in the laboratory can not co-linear element off the transformer magnetizing current to establish the correct mode
type. Using available transformer (such as test transformer) test conducted only test transformer effective and do not represent the
Other transformer;
b) As the IEC 62271-306 are described, generally characteristic of the way compared to other inductive current switching mode less harsh. test
Into account the resurgence of the resonant frequency circuit breaker and transformer windings may arise, it should be noted that the approach may within the transformer windings
Serious over-voltage.
Near the fault zone, step-current closing and breaking and capacitive current switching does not apply to open merger-linked reactors and motor circuit breaker
Device. Thus, these methods are not included in this standard.
Unless otherwise specified, GB 1984-2003 1.1 apply.
1.2 Normative references
The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein
Member. For undated references, the latest edition (including any amendments) applies to this document.
GB 1984-2003 high voltage AC circuit breaker (IEC 62271-100.2001, MOD)
GB/T 2900.20-1994 Electrotechnical terminology voltage switchgear (IEC 60050-411. 1984, NEQ)
GB/T 11022-2011 high-voltage switchgear and control equipment standard common technical requirements (IEC 62271-1.2008, MOD)
GB/T 14808 AC high voltage contactors and contactor-based motor starter (GB/T 14808-2001, IEC 60470.
1999, EQV)
IEC 62271-306 high voltage switchgear and control equipment Part 306. IEC 62271-1, IEC 62271-100 and other post
CIRCUIT BREAKER related application guidelines (17A/936/CD)
IEC 62271-310 high voltage switchgear and control equipment Part 310. Rated voltage of 72.5kV and above electrical circuit breaker life
Life test
2 Normal and special service conditions
GB/T 11022-2011 Chapter 2 apply.
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