6. A 2,000-kVA transformer (4) is connected in parallel with a 4,000-kVA transformer (B) to supply a 3-phase load of 5,000 kVA at 0.8 p.f. lagging. Determine the kVA supplied by each transformer assuming equal no-load voltages. The percentage volt drops in the windings at the rated loads are as follows: Transformer A: resistance 2%; reactance 8% Transformer B: resistance 1.6%; reactance 3% [A : 860 kVA, 0.661 lag; B: 4170 kVA, 0.824 lag] (4.C. Machines-I, Jadavpur Univ. 1979)

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 3.17P: The transformer of Problem 3.16 is supplying a rated load of 50 kVA at a rated secondary voltage of...
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Please help me solve question 6 below. Please provide a clear and readable solution. Thanks in advance!!! The course subject is Electrical Machines 2.

NOTE: The answers are given below. Please provide the solution. If the answer given below is wrong, please give the correct answer. Thanks a lot!!!

6. A 2,000-kVA transformer (4) is connected in parallel with a 4,000-kVA transformer (B) to supply a
3-phase load of 5,000 kVA at 0.8 p.f. lagging. Determine the kVA supplied by each transformer
assuming equal no-load voltages. The percentage volt drops in the windings at the rated loads are as
follows:
Transformer A: resistance 2%; reactance 8%
Transformer B: resistance 1.6%; reactance 3%
[A : 860 kVA, 0.661 lag; B: 4170 kVA, 0.824 lag] (4.C. Machines-I, Jadavpur Univ. 1979)
Transcribed Image Text:6. A 2,000-kVA transformer (4) is connected in parallel with a 4,000-kVA transformer (B) to supply a 3-phase load of 5,000 kVA at 0.8 p.f. lagging. Determine the kVA supplied by each transformer assuming equal no-load voltages. The percentage volt drops in the windings at the rated loads are as follows: Transformer A: resistance 2%; reactance 8% Transformer B: resistance 1.6%; reactance 3% [A : 860 kVA, 0.661 lag; B: 4170 kVA, 0.824 lag] (4.C. Machines-I, Jadavpur Univ. 1979)
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