The diameter of the overhead lines in the form of cylindrical conductors in a 300 kV three-phase transmission system is 20 mm. a) - How much distance should there be between two conductors using the maximum area calculation equations? Calculate. (Puncture peak strength of air is 30kV / cm.) b) - In this configuration, if the distance between phase conductors is 0 m, will discharge calculation? c) - Maximum electric field in the same configuration, for electrode distances to be A m Calculate the value. (When heard in calculations Ꜫ0 = 8.854x10-12 F / m)
The diameter of the overhead lines in the form of cylindrical conductors in a 300 kV three-phase transmission system is 20 mm. a) - How much distance should there be between two conductors using the maximum area calculation equations? Calculate. (Puncture peak strength of air is 30kV / cm.) b) - In this configuration, if the distance between phase conductors is 0 m, will discharge calculation? c) - Maximum electric field in the same configuration, for electrode distances to be A m Calculate the value. (When heard in calculations Ꜫ0 = 8.854x10-12 F / m)
Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter4: Transmission Line Parameters
Section: Chapter Questions
Problem 4.5MCQ: Shield wires located above the phase conductors protect the phase conductors against lightning. True...
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The diameter of the overhead lines in the form of cylindrical conductors in a 300 kV three-phase transmission system is 20 mm. a) - How much distance should there be between two conductors using the maximum area calculation equations? Calculate. (Puncture peak strength of air is 30kV / cm.) b) - In this configuration, if the distance between phase conductors is 0 m, will discharge calculation? c) - Maximum electric field in the same configuration, for electrode distances to be A m Calculate the value. (When heard in calculations Ꜫ0 = 8.854x10-12 F / m)
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