A 1,000-kVA, 12.47-kV-480Y/277-V transformer with 4% impedance feeds a 480-V bus. The fault duty of the 12.47-kV system is 40 MVA. Assuming the transformer and the 12.47-kV system have the same X/R ratio, the 3-phase short-circuit current (amperes) available at the 480-V bus is most nearly: O A 10,700 O B. 18,500 O C. 24,900 O D. 30,100

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 3.14MCQ: The ideal transformer windings are eliminated from the per-unit equivalent circuit of a transformer....
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A 1,000-kVA, 12.47-kV-480Y/277-V transformer with 4% impedance feeds a 480-V bus. The
fault duty of the 12.47-kV system is 40 MVA. Assuming the transformer and the 12.47-kV
system have the same X/R ratio, the 3-phase short-circuit current (amperes) available at the 480-V
bus is most nearly:
OA.
O B
10,700
18,500
24,900
O D.
30,100
Transcribed Image Text:A 1,000-kVA, 12.47-kV-480Y/277-V transformer with 4% impedance feeds a 480-V bus. The fault duty of the 12.47-kV system is 40 MVA. Assuming the transformer and the 12.47-kV system have the same X/R ratio, the 3-phase short-circuit current (amperes) available at the 480-V bus is most nearly: OA. O B 10,700 18,500 24,900 O D. 30,100
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