2. 16 A single-phase 20kVA, 480/120 V, 60 Hz transformer has an equivalent leakage impedance referred to 120-volt winding of Zeq2 = 0.0525/78.13° §. (a) Using the transformer rating as base values, find per-unit leakage impedance. Leaz V₁ in N1 N2 12 I uw 15 Steps: first pick SB = 20kVA, Ebasel = 480V, Ebase2 = 120V, then calculate Zbase2. Finally Zpu Zeq2/ Zbase2 (b) Draw the per unit equivalent circuit 3.13 A single-phase 50-kVA, 2400/240-volt, 60-Hz distribution transformer has a 1-ohm equivalent leakage reactance and a 5000-ohm magnetizing reactance referred to the high-voltage side. If rated voltage is applied to the high-voltage winding, calculate the open-circuit secondary voltage. Neglect I'R and G2V losses. Assume equal series leakage reactances for the primary and the referred secondary. 3.18 using the transformer ratings as base quantities, work problem 3.13 in per unit
2. 16 A single-phase 20kVA, 480/120 V, 60 Hz transformer has an equivalent leakage impedance referred to 120-volt winding of Zeq2 = 0.0525/78.13° §. (a) Using the transformer rating as base values, find per-unit leakage impedance. Leaz V₁ in N1 N2 12 I uw 15 Steps: first pick SB = 20kVA, Ebasel = 480V, Ebase2 = 120V, then calculate Zbase2. Finally Zpu Zeq2/ Zbase2 (b) Draw the per unit equivalent circuit 3.13 A single-phase 50-kVA, 2400/240-volt, 60-Hz distribution transformer has a 1-ohm equivalent leakage reactance and a 5000-ohm magnetizing reactance referred to the high-voltage side. If rated voltage is applied to the high-voltage winding, calculate the open-circuit secondary voltage. Neglect I'R and G2V losses. Assume equal series leakage reactances for the primary and the referred secondary. 3.18 using the transformer ratings as base quantities, work problem 3.13 in per unit
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 3.34P: Three single-phase, two-winding transformers, each rated 450MVA,20kV/288.7kV, with leakage reactance...
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Question
Power systems. this is not a graded assignment. for personal studies

Transcribed Image Text:2.
16 A single-phase 20kVA, 480/120 V, 60 Hz transformer has an equivalent leakage
impedance referred to 120-volt winding of Zeq2 = 0.0525/78.13° §.
(a) Using the transformer rating as base values, find per-unit leakage impedance.
Leaz
V₁
in
N1 N2
12
I
uw
15
Steps: first pick SB = 20kVA, Ebasel = 480V, Ebase2 = 120V, then calculate Zbase2. Finally Zpu
Zeq2/ Zbase2
(b) Draw the per unit equivalent circuit

Transcribed Image Text:3.13 A single-phase 50-kVA, 2400/240-volt, 60-Hz distribution transformer
has a 1-ohm equivalent leakage reactance and a 5000-ohm magnetizing
reactance referred to the high-voltage side. If rated voltage is applied to
the high-voltage winding, calculate the open-circuit secondary voltage.
Neglect I'R and G2V losses. Assume equal series leakage reactances for the
primary and the referred secondary.
3.18 using the transformer ratings as base quantities, work problem 3.13 in per unit
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