EN 60909-3:2010
Current
The latest, up-to-date edition.
Short-circuit currents in three-phase a.c systems - Part 3: Currents during two separate simultaneous line-to-earth short-circuits and partial short-circuit currents flowing through earth
12-03-2010
FOREWORD
1 Scope and object
2 Normative references
3 Terms and definitions
4 Symbols
5 Calculation of currents during two separate
simultaneous line-to-earth short circuits
6 Calculation of partial short-circuit currents
flowing through earth in case of an unbalanced
short circuit
7 Reduction factor for overhead lines with earth wires
8 Calculation of current distribution and reduction factor
in case of cables with metallic sheath or shield earthed
at both ends
Annex A (informative) - Example for the calculation of two
separate simultaneous line-to-earth short-circuit currents
Annex B (informative) - Examples for the calculation of partial
short-circuit currents through earth
Annex C (informative) - Example for the calculation of the
reduction factor r[1] and the current distribution
through earth in case of a three-core cable
Annex D (informative) - Example for the calculation of the
reduction factor r[3] and the current distribution through
earth in case of three single-core cables
Annex ZA (normative) - Normative references to international
publications with their corresponding European
publications
IEC 60909-3:2009 specifies procedures for calculation of the prospective short-circuit currents with an unbalanced short circuit in high-voltage three-phase a.c. systems operating at nominal frequency 50 Hz or 60 Hz, i. e.: - currents during two separate simultaneous line-to-earth short circuits in isolated neutral or resonant earthed neutral systems; - partial short-circuit currents flowing through earth in case of single line-to-earth short circuit in solidly earthed or low-impedance earthed neutral systems. The currents calculated by these procedures are used when determining induced voltages or touch or step voltages and rise of earth potential at a station (power station or substation) and the towers of overhead lines. Procedures are given for the calculation of reduction factors of overhead lines with one or two earth wires. This edition constitutes a technical revision. The main changes with respect to the previous edition are: - New procedures are introduced for the calculation of reduction factors of the sheaths or shields and in addition the current distribution through earth and the sheaths or shields of three-core cables or of three single-core cables with metallic non-magnetic sheaths or shields earthed at both ends; - The information for the calculation of the reduction factor of overhead lines with earth wires are corrected and given in the new Clause 7; - A new Clause 8 is introduced for the calculation of current distribution and reduction factor of three-core cables with metallic sheath or shield earthed at both ends; - The new Annexes C and D provide examples for the calculation of reduction factors and current distribution in case of cables with metallic sheath and shield earthed at both ends. This publication is to be read in conjunction with IE C 60909-0:2001. NEW! IEC 60909-3:2009 is also available as IEC Standards+ 60909-3:2009 which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition.
Committee |
CLC/SR 73
|
DevelopmentNote |
To be read in conjunction with EN 60909-0. (04/2010)
|
DocumentType |
Standard
|
PublisherName |
European Committee for Standards - Electrical
|
Status |
Current
|
Standards | Relationship |
IEC 60909-3:2009 | Identical |
NF EN 60909-3 : 2010 | Identical |
NBN EN 60909-3 : 2010 | Identical |
NEN EN IEC 60909-3 : 2010 C1 2013 | Identical |
I.S. EN 60909-3:2010 | Identical |
PN EN 60909-3 : 2010 | Identical |
SN EN 60909-3 : 2003 | Identical |
(INACTIVE RECORD)DIN EN 60909-3 : 2010 COR 1 2014 | Identical |
DIN EN 60909-3:2010-08 | Identical |
VDE 0102-3:2010-08 | Identical |
DIN EN 60909-3 Berichtigung 1:2014-02 | Identical |
VDE 0102-3 Berichtigung 1:2014-02 | Identical |
BS EN 60909-3:2010 | Identical |
UNE-EN 60909-3:2011 | Identical |
CEI EN 60909-3 : 2011 | Identical |
CEI EN 60027-7 : 2011 | LETTER SYMBOLS TO BE USED IN ELECTRICAL TECHNOLOGY - PART 7: POWER GENERATION, TRANSMISSION AND DISTRIBUTION |
EN 60909-0:2016 | Short-circuit currents in three-phase a.c. systems - Part 0: Calculation of currents |
08/30191664 DC : DRAFT OCT 2008 | BS EN 50522 - EARTHING OF POWER INSTALLATIONS EXCEEDING 1 KV A.C. |
BS EN 60909-0:2016 | Short-circuit currents in three-phase a.c. systems Calculation of currents |
I.S. EN 60027-7:2010 | LETTER SYMBOLS TO BE USED IN ELECTRICAL TECHNOLOGY - PART 7: POWER GENERATION, TRANSMISSION AND DISTRIBUTION |
I.S. EN 60909-0:2016 | SHORT-CIRCUIT CURRENTS IN THREE-PHASE A.C. SYSTEMS - PART 0: CALCULATION OF CURRENTS |
BS EN 60027-7:2010 | Letter symbols to be used in electrical technology Power generation, transmission and distribution |
EN 60027-7:2010 | Letter symbols to be used in electrical technology - Part 7: Power generation, transmission and distribution |
IEC TR 60909-2:2008 | Short-circuit currents in three-phase a.c. systems - Part 2: Data of electrical equipment for short-circuit current calculations |
IEC 60909-0:2016 | Short-circuit currents in three-phase a.c. systems - Part 0: Calculation of currents |
EN 60909-0:2016 | Short-circuit currents in three-phase a.c. systems - Part 0: Calculation of currents |
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