JB/T 10181.6-2000
Calculation of the current rating of electric cables.Part 3:Sections on operating conditions.Section 2:Economic optimization of power cable size (English Version)

Standard No.
JB/T 10181.6-2000
Language
Chinese, Available in English version
Release Date
2000
Published By
Professional Standard - Machinery
Status
 2014-10
Replace By
JB/T 10181.32-2014
Latest
JB/T 10181.32-2014
Scope
This standard describes methods for selecting economic conductor cross-sections, taking into account the initial investment and the expected value of Joule losses over the economic life of the cable. Note: The method recommended by this standard is not applicable to cables working under the system voltage equal to or greater than the following values: Cable type System voltage U0 (kV) Impregnated paper insulated cable: Sticky impregnated paper 36 Oil-filled and gas-filled 64 Other types of insulated cables: B Propylene rubber (RPR) 64 Polyvinyl chloride (PVC) 6 Polyethylene (PE) (HD and LD) 127 Cross-linked polyethylene (XLPE) (unfilled type) 127 Cross-linked polyethylene (XLPE) (filled type) 64 Such as Maintenance, energy consumption of forced cooling systems and hourly electricity pricing are not included in this standard.

JB/T 10181.6-2000 history

  • 2014 JB/T 10181.32-2014 Electric cables.Calculation of the current rating.Part 32: Sections on operating conditions.Economic optimization of power cable size
  • 2000 JB/T 10181.6-2000 Calculation of the current rating of electric cables.Part 3:Sections on operating conditions.Section 2:Economic optimization of power cable size

JB/T 10181.6-2000 Calculation of the current rating of electric cables.Part 3:Sections on operating conditions.Section 2:Economic optimization of power cable size was changed to JB/T 10181.32-2014 Electric cables.Calculation of the current rating.Part 32: Sections on operating conditions.Economic optimization of power cable size.

Calculation of the current rating of electric cables.Part 3:Sections on operating conditions.Section 2:Economic optimization of power cable size



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