A 3-phase, 50 Hz, overhead transmission line delivers 10 MW at 0·8 p.f. lagging and at 66 kV. The resistance and inductive reactance of the line per phase are 10 Ω and 20 Ω respectively while capacitance admittance is 4 × 10− 4 siemen. Calculate : (i) the sending end current    (ii) sending end voltage (line-to-line) (iii) Power angle and sending end pf (iv) transmission efficiency Use nominal T method

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
Chapter5: Transmission Lines: Steady-state Operation
Section: Chapter Questions
Problem 5.25P
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A 3-phase, 50 Hz, overhead transmission line delivers 10 MW at 0·8 p.f. lagging and at 66 kV. The resistance and inductive reactance of the line per phase are 10 Ω and 20 Ω respectively while capacitance admittance is 4 × 10− 4 siemen. Calculate :

(i) the sending end current    (ii) sending end voltage (line-to-line)

(iii) Power angle and sending end pf (iv) transmission efficiency

Use nominal T method

2. A 3-phase, 50 Hz, overhead transmission line delivers 10 MW at 0-8
p.f. lagging and at 66 kV. The resistance and inductive reactance of
the line per phase are 10 2 and 20 2 respectively while capacitance
admittance is 4 x 10-4 siemen. Calculate :
(i) the sending end current (ii) sending end voltage (line-to-line)
(iii) Power angle and sending end pf (iv) transmission efficiency
Use nominal T method.
Transcribed Image Text:2. A 3-phase, 50 Hz, overhead transmission line delivers 10 MW at 0-8 p.f. lagging and at 66 kV. The resistance and inductive reactance of the line per phase are 10 2 and 20 2 respectively while capacitance admittance is 4 x 10-4 siemen. Calculate : (i) the sending end current (ii) sending end voltage (line-to-line) (iii) Power angle and sending end pf (iv) transmission efficiency Use nominal T method.
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