Three single-phase, 50 kVA, 2300/230 V, 60 Hz transformers are connected to form a three-phase, 4000/230 V transformer bank. The equivalent impedance of each transformer referred to low voltage is 0.04+j0.08 ohms. The three-phase transformer supplies a three-phase, 130 kVA, 230 V, 0.63 lagging-power-factor load. (a) Determine the transformer winding currents. (b) Determine the primary voltage (line-to-line) required. (c) Determine the voltage regulation. (a) Current in primary winding: A (b) Current in secondary winding: A (c) Primary Voltage (line to line): ____ V (d) Voltage Regulation: %

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 3.14P: A single-phase 50-kVA,2400/240-volt,60-Hz distribution transformer is used as a step-down...
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Three single-phase, 50 kVA, 2300/230 V, 60 Hz transformers are
connected to form a three-phase, 4000/230 V transformer bank.
The equivalent impedance of each transformer referred to low
voltage is 0.04+j0.08 ohms. The three-phase transformer supplies
a three-phase, 130 kVA, 230 V, 0.63 lagging-power-factor load.
(a) Determine the transformer winding currents. (b) Determine the
primary voltage (line-to-line) required. (c) Determine the voltage
regulation.
(a) Current in primary winding: A
(b) Current in secondary winding: A
(c) Primary Voltage (line to line):
V
(d) Voltage Regulation: %
Transcribed Image Text:Three single-phase, 50 kVA, 2300/230 V, 60 Hz transformers are connected to form a three-phase, 4000/230 V transformer bank. The equivalent impedance of each transformer referred to low voltage is 0.04+j0.08 ohms. The three-phase transformer supplies a three-phase, 130 kVA, 230 V, 0.63 lagging-power-factor load. (a) Determine the transformer winding currents. (b) Determine the primary voltage (line-to-line) required. (c) Determine the voltage regulation. (a) Current in primary winding: A (b) Current in secondary winding: A (c) Primary Voltage (line to line): V (d) Voltage Regulation: %
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