A 500 KVA, 6600/400 V, 50 Hz single phase transformer .The high voltage and low voltage winding have resistance of 0.422 and 0.0011 2 respectively. The full-load current is obtained when 264V at 50 Hz is applied to (H.V winding) with (L.V winding) short-circuit. Find: i) The equivalent resisance and reactance of the transformer referred to H.V. side ii) The maximum efficiency at 0.8 p.f. lagging, if the efficiency of transformer at 25% full-load is 96.9% when p.f. is 0.8 lagging
A 500 KVA, 6600/400 V, 50 Hz single phase transformer .The high voltage and low voltage winding have resistance of 0.422 and 0.0011 2 respectively. The full-load current is obtained when 264V at 50 Hz is applied to (H.V winding) with (L.V winding) short-circuit. Find: i) The equivalent resisance and reactance of the transformer referred to H.V. side ii) The maximum efficiency at 0.8 p.f. lagging, if the efficiency of transformer at 25% full-load is 96.9% when p.f. is 0.8 lagging
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![A 500 KVA, 6600/400 V, 50 Hz single phase transformer .The high voltage and low
voltage winding have resistance of 0.422 and 0.0011 2 respectively. The full-load
current is obtained when 264V at 50 Hz is applied to (H.V winding) with (L.V
winding) short-circuit. Find:
i) The equivalent resisance and reactance of the transformer referred to H.V. side
ii) The maximum efficiency at 0.8 p.f. lagging, if the efficiency of transformer at
25% full-load is 96.9% when p.f. is 0.8 lagging](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faf3b189c-b9e7-4d0a-aa02-0ee8de32758d%2Fb4c28cb4-41e0-4257-b2f0-ef075952c9da%2Fbvf26pr_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A 500 KVA, 6600/400 V, 50 Hz single phase transformer .The high voltage and low
voltage winding have resistance of 0.422 and 0.0011 2 respectively. The full-load
current is obtained when 264V at 50 Hz is applied to (H.V winding) with (L.V
winding) short-circuit. Find:
i) The equivalent resisance and reactance of the transformer referred to H.V. side
ii) The maximum efficiency at 0.8 p.f. lagging, if the efficiency of transformer at
25% full-load is 96.9% when p.f. is 0.8 lagging
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