OS GSO IEC 60853-2:2017
IEC 60853-2:1989
Omani Standard
Current Edition
·
Approved on
03 October 2017
Calculation of the cyclic and emergency current rating of cables. Part 2: Cyclic rating of cables greater than 18/30 (36) kV and emergency ratings for cables of all voltages
OS GSO IEC 60853-2:2017 Files
English
101 Pages
Current Edition
Reference Language
Obtaining this standard through the store is currently unavailable. You can acquire it directly from its source.
OS GSO IEC 60853-2:2017 Scope
1.1 General
This standard gives manual methods for calculating cyclic rating factors for cables whose internal thermal capacitance cannot be neglected; in general this applies to cables for voltages greater than 18/30 (36) kV. It also gives a method for calculating the emergency rating for cables of any voltage. Part I of the standard dealt with cyclic rating factors for cables of voltages not greater than 18/30 (36) kV where the internal thermal capacitance could be neglected.
To determine the cyclic rating factors where the internal thermal capacitance cannot be neglected it is necessary to calculate the transient temperature response of the cable and its environment.
The formulae recommended in this standard contain quantities which vary with cable design and materials used. The values given in the tables are either internationally agreed, for example, resistance temperature coefficients, or are those which are generally accepted in practice, for example, thermal resistivities and volumetric specific heats of materials. In order that uniform and comparable results may be obtained, the cyclic and/or emergency current ratings should be calculated with the values given in this standard. However, where it is known with certainty that other values are more appropriate to the materials and design, then these may be used, and the corresponding cyclic/emergency current rating declared in addition, provided that the different values are quoted..
No account has been taken at present of possible effects of moisture migration on the thermal resistivity of the soil. This is in line with the approach already adopted for the calculation of steady state ratings in uniform soil as given in IEC Publication 287. Methods for dealing with regions having different thermal characteristics and with drying out of the soil are under consideration.
A means of incorporating the effect of change in conductor resistance with temperature is included.
Best Sellers From Electrical Sector
GSO 2530:2016
Gulf Standard
Energy Labelling And Minimum Energy Performance Requirements For Air-Conditioners
OS GSO 2530:2016
GSO 2530:2016
Omani Standard
Energy Labelling And Minimum Energy Performance Requirements For Air-Conditioners
OS GSO 34:2007
GSO 34:2007
Omani Standard
LEAD-ACID STARTER BATTERIES USED FOR
MOTOR VEHICLES AND INTERNAL
COMBUSTION ENGINES
GSO 34:2007
Gulf Technical Regulation
LEAD-ACID STARTER BATTERIES USED FOR
MOTOR VEHICLES AND INTERNAL
COMBUSTION ENGINES
Recently Published from Electrical Sector
GSO IEC 61643-41:2026
IEC 61643-41:2025
Gulf Standard
Low-voltage surge protective devices - Part 41: Surge protective devices connected to DC low-voltage power systems – Requirements and test methods
GSO IEC PAS 63629:2026
IEC PAS 63629:2025
Gulf Standard
PSR – Specific rules for luminaires
GSO IEC 60704-2-3:2026
IEC 60704-2-3:2025
Gulf Standard
Household and similar electrical appliances - Test code for the determination of airborne acoustical noise - Part 2-3: Particular requirements for dishwashers
GSO IEC 60270:2026
IEC 60270:2025
Gulf Standard
High-voltage test techniques – Charge-based measurement of partial discharges