BS EN IEC 62271-203:2022:2024 Edition
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High-voltage switchgear and controlgear – AC gas-insulated metal-enclosed switchgear for rated voltages above 52 kV
Published By | Publication Date | Number of Pages |
BSI | 2024 | 84 |
This part of IEC 62271 specifies requirements for gas-insulated metal-enclosed switchgear in which the insulation is obtained, at least partly, by an insulating gas or gas mixture other than air at atmospheric pressure, for alternating current of rated voltages above 52 kV, for indoor and outdoor installation, and for service frequencies up to and including 60 Hz. For the purpose of this document, the terms “GIS” and “switchgear” are used for “gas-insulated metal-enclosed switchgear”. The gas-insulated metal-enclosed switchgear covered by this document consists of individual components intended to be directly connected together and able to operate only in this manner. This document completes and amends, if applicable, the various relevant standards applying to the individual components constituting GIS.
PDF Catalog
PDF Pages | PDF Title |
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2 | undefined |
5 | Annex ZA (normative)Normative references to international publicationswith their corresponding European publications |
7 | English CONTENTS |
9 | FOREWORD |
11 | 1 Scope 2 Normative references |
12 | 3 Terms and definitions |
15 | 4 Normal and special service conditions |
16 | 5 Ratings Tables Table 1 ā Reference table of service conditions relevant to GIS |
17 | Table 2 ā Rated insulation levels for rated voltagesfor equipment of range I (245 kV and below) |
18 | Table 3 ā Rated insulation levels for rated voltages for equipment of range II(above 245 kV) |
19 | 6 Design and construction |
24 | Figures Figure 1 ā Pressure coordination |
25 | Table 4 ā Performance criteria |
29 | Figure 2 ā Example of arrangement of enclosures and gas compartments |
32 | 7 Type tests |
33 | Table 5 ā Type tests |
36 | Table 6 ā Test voltage for measuring PD intensity |
46 | 8 Routine tests |
49 | 9 Guide to the selection of switchgear and controlgear (informative) 10 Information to be given with enquiries, tenders and orders (informative) 11 Transport, storage, installation, operating instructions and maintenance |
53 | Table 7 ā On-site test voltages |
55 | 12 Safety |
56 | 13 Influence of the product on the environment |
57 | Annexes Annex A (normative) Test procedure for dielectric test on three-phase encapsulated GIS, range II (above 245 kV) Table A.1 ā Switching impulse test conditions above 245 kV |
58 | Annex B (normative) Methods for testing gas-insulated metal-enclosed switchgear under conditions of arcing due to an internal fault |
61 | Annex C (informative) Technical and practical considerations of site testing |
66 | Annex D (informative) Calculation of pressure rise due to an internal fault |
67 | Annex E (informative) Information to be given with enquiries, tenders and orders Table E.1 ā Normal and special service conditions |
68 | Table E.2 ā Ratings |
69 | Table E.3 ā Design and construction |
70 | Table E.4 ā Bus ducts Table E.5 ā Bushing |
71 | Table E.6 ā Cable connection Table E.7 ā Transformer connection Table E.8 ā Current transformer Table E.9 ā Inductive voltage transformer |
72 | Table E.10 ā Documentation for enquiries and tenders |
73 | Annex F (informative) Service continuity |
76 | Figure F.1 ā MRE1X (e.g. repair of disconnector to busbar) Figure F.2 ā MRE00 (e.g. during visual inspection) |
77 | Figure F.3 ā MRE01 (e.g. repair of circuit-breaker) Figure F.4 ā MRE11 (e.g. repair of disconnector) |
78 | Figure F.5 ā MRE11 (e.g. extension of switchgear with a feeder bay) Figure F.6 ā MRE13 (e.g. repair of disconnector) |
79 | Figure F.7 ā MRE2X (e.g. on-site dielectric test of busbar section A) Figure F.8 ā MRE2X (e.g. on-site dielectric test of busbar section 1) |
80 | Figure F.9 ā MRE00 (e.g. repair of circuit-breaker) |
81 | Annex G (informative) List of notes concerning certain countries |
82 | Bibliography |