SN EN 60865-1 : 1993
Current
The latest, up-to-date edition.
SHORT-CIRCUIT CURRENTS; CALCULATION OF EFFECTS; PART 1: DEFINITIONS AND CALCULATION METHODS
12-01-2013
Committees responsible
National foreword
Section 1. General
1.1 Scope and object
1.2 Normative references
1.3 Equations, symbols and units
1.4 Definitions
Section 2. The electromagnetic effect on rigid conductors
and flexible conductors
2.1 General
2.2 Rigid conductor arrangements
2.3 Flexible conductor arrangements
2.4 Structure loads due to electromagnetic effects
Section 3. The thermal effect on bare conductors and
electrical equipment
3.1 General
3.2 Calculation of temperature rise
Annexes
A. (normative) Equations for calculation of diagrams
B. (informative) Iteration-procedure for calculation
of factor eta for the tensile force Fpi in the
case of non-clashing bundled conductors according
to IEC 865, 2.3.3.3 equation (62)
Tables
1. Effective distance as between sub-conductors in
metres, for rectangular cross-section dimensions
2. Maximum possible values of Vsigma Vr, Vsigma s Vrs,
VF Vr
3. Factors alpha, beta, and gamma for different
busbar support arrangements
4. Factor q
5. Section moduli Z of main conductors with two or
more stiffening elements between two adjacent
supports
Figures
1. Factor kls for calculating the effective conductor
distance
2. Loading direction and bending axis for multiple
conductor arrangements
3. Factor c for the influence of connecting pieces in
equation (17)
4. Factors VF, Vsigma and Vsigma s to be used with
the three-phase and line-to-line short circuits
5. Factors Vr and Vrs to be used with three-phase
automatic reclosing
6. Maximum swing out angle sigma m for a given maximum
short-circuit duration Tk1
7. Factor psi for tensile force in flexible conductors
8. v2 as a function of v1
9. v3 . sin 180 deg/n as a function of as/ds
10. xi as a function of j and epsilon st
11a. eta as a function of j and epsilon st
11b. eta as a function of j and epsilon st
11c. eta as a function of j and epsilon st
12a. Factor m, heat dissipation due to d.c. component in
three-phase systems and single-phase systems
12b. Factor n, heat dissipation due to a.c. component in
three-phase systems and approximately for single-
phase systems
13. Relation between rated short-time withstand current
density (Tkr = 1 s) and conductor temperature
Applies to the mechanical and thermal effects of short-circuit currents. Includes the following sections: the electromagnetic effect on rigid conductors and flexible conductors; the thermal effect on bare conductors and electrical equipment. Also includes detailed tables and annexes.
DocumentType |
Standard
|
PublisherName |
Swiss Standards
|
Status |
Current
|
Standards | Relationship |
DIN EN 60865-1 : 2012-09 | Identical |
IEC 60865-1:2011 | Identical |
I.S. EN 60865-1:2012 | Identical |
BS EN 60865-1:2012 | Identical |
EN 60865-1:2012 | Identical |
NF EN 60865-1 : 2012 | Identical |
UNE-EN 60865-1:2013 | Identical |
NBN EN 60865-1 : 2015 | Identical |
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