3th 50 MVA, 12.2 kV, xgl = 0.10 pu 20 MVA, 13.8 kV, xg2 = 0.10 pu 80 MVA, 12.2/132 kV, XT1 = 0.10 pu H 40 MVA, 13.8/132 kV, xT2 = 0.10 pu Load 50 MVA, 0.80 pf lagging operating at 124 kV. G₁ GI G2 TI T2 (4+ /16) 2 (2+1} Ω] {2J * B) Ω 3 -Load to 1

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
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.30P: Reconsider Problem 3.29. If Va,VbandVc are a negative-sequence set, how would the voltage and...
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draw the impedance diagram in per unit
1
J
G₁
GI
G2
TI
T2
Load
3th
50 MVA, 12.2 kV, xgl = 0.10 pu
20 MVA, 13.8 kV, xg2 = 0.10 pu
(4+/16) 22
(2+8) 22 (2/+B) Q
3- Load
37
80 MVA, 12.2/132 kV, XTI = 0.10 pu
www
40 MVA, 13.8/132 kV, xT2 = 0.10 pu
50 MVA, 0.80 pf lagging operating at 124 kV.
Transcribed Image Text:1 J G₁ GI G2 TI T2 Load 3th 50 MVA, 12.2 kV, xgl = 0.10 pu 20 MVA, 13.8 kV, xg2 = 0.10 pu (4+/16) 22 (2+8) 22 (2/+B) Q 3- Load 37 80 MVA, 12.2/132 kV, XTI = 0.10 pu www 40 MVA, 13.8/132 kV, xT2 = 0.10 pu 50 MVA, 0.80 pf lagging operating at 124 kV.
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