Q) A 3-ph balance express feeder has an impedance of (6+j20)₪/ph. At the UP load end, the line-to-line voltage is 13.8kV, and the total 3-ph balanced power is 1200kW, at 0.8 p.f. lagging. Determine: -ve/ph a) The line-to-line voltage at the sending end of the feeder. b) The p.f. at the sending end. c) The copper loss of the feeder. P-IR 1200K = 1 * 6 " d) The power at the sending end. I =n ال ما ذكر فولطية تكون Line

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 4.33MCQ
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=),
ate
the
Q) A 3-ph balance express feeder has an impedance of (6+j20)N/ph. At the
UP
load end, the line-to-line voltage is 13.8kV, and the total 3-ph balanced power
is 1200kW, at 0.8 p.f. lagging. Determine:
To = ve/ph
a) The line-to-line voltage at the sending end of the feeder.
b) The p.f. at the sending end.
c) The copper loss of the feeder.
P=IR
d) The power at the sending end.
1200K = 16
I =^.
2-6 Distribution System Parameters:-
ال ما ذكر فولطية
تاون Line
Transcribed Image Text:=), ate the Q) A 3-ph balance express feeder has an impedance of (6+j20)N/ph. At the UP load end, the line-to-line voltage is 13.8kV, and the total 3-ph balanced power is 1200kW, at 0.8 p.f. lagging. Determine: To = ve/ph a) The line-to-line voltage at the sending end of the feeder. b) The p.f. at the sending end. c) The copper loss of the feeder. P=IR d) The power at the sending end. 1200K = 16 I =^. 2-6 Distribution System Parameters:- ال ما ذكر فولطية تاون Line
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