Example 1: A single-phase, 100-kVA, 1000:100-V, 60-Hz transformer has the following test results: Open-circuit test (HV side open): 100 V, 6 A, 400 W Short-circuit test (LV side shorted): 50 V, 100 A, 1800 W 1. Draw equivalent circuit of the transformer referred to the high-voltage side. Label impedances numerically in ohms and in per unit. 2. Determine the voltage regulation at rated secondary current with 0.6 power factor lagging. Assume the primary is supplied with rated voltage 3. Determine the efficiency of the transformer when the secondary current is 75% of its rated value and the power factor at the load is 0.8 lagging with a secondary voltage of 98 V across the load

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 3.57P: A two-winding single-phase transformer rated 60kVA,240/1200V,60Hz, has an efficiency of 0.96 when...
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Example 1: A single-phase, 100-kVA, 1000:100-V, 60-Hz transformer has the
following test results:
Open-circuit test (HV side open): 100 V, 6 A, 400 W
Short-circuit test (LV side shorted): 50 V, 100 A, 1800 W
1. Draw equivalent circuit of the transformer referred to the high-voltage
side. Label impedances numerically in ohms and in per unit.
2. Determine the voltage regulation at rated secondary current with 0.6
power factor lagging. Assume the primary is supplied with rated voltage
3. Determine the efficiency of the transformer when the secondary current is
75% of its rated value and the power factor at the load is 0.8 lagging with a
secondary voltage of 98 V across the load
Transcribed Image Text:Example 1: A single-phase, 100-kVA, 1000:100-V, 60-Hz transformer has the following test results: Open-circuit test (HV side open): 100 V, 6 A, 400 W Short-circuit test (LV side shorted): 50 V, 100 A, 1800 W 1. Draw equivalent circuit of the transformer referred to the high-voltage side. Label impedances numerically in ohms and in per unit. 2. Determine the voltage regulation at rated secondary current with 0.6 power factor lagging. Assume the primary is supplied with rated voltage 3. Determine the efficiency of the transformer when the secondary current is 75% of its rated value and the power factor at the load is 0.8 lagging with a secondary voltage of 98 V across the load
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