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 3.25 Consider a single-phase electric system shown in Figure 3.33. Transform- ers are rated as follows: X-Y 15 MVA, 13.8/138 kV, leakage reactance 10% Y-Z 15 MVA, 138/69 kV, leakage reactance 8% With the base in circuit Y chosen as 15 MVA, 138 kV, determine the per- unit impedance of the 500 resistive load in circuit Z, referred to circuits Z, Y, and X. Neglecting magnetizing currents, transformer resistances, and line impedances, draw the impedance diagram in per unit. FIGURE 3.33 1:10 Single-phase electric system for Problem 3.25 X-Y Y 2:1 Y-Z N 500 Ω
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 3.25 Consider a single-phase electric system shown in Figure 3.33. Transform- ers are rated as follows: X-Y 15 MVA, 13.8/138 kV, leakage reactance 10% Y-Z 15 MVA, 138/69 kV, leakage reactance 8% With the base in circuit Y chosen as 15 MVA, 138 kV, determine the per- unit impedance of the 500 resistive load in circuit Z, referred to circuits Z, Y, and X. Neglecting magnetizing currents, transformer resistances, and line impedances, draw the impedance diagram in per unit. FIGURE 3.33 1:10 Single-phase electric system for Problem 3.25 X-Y Y 2:1 Y-Z N 500 Ω
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 3.25P: Consider a single-phase electric system shown in Figure 3.33. Transformers are rated as follows:...
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
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

Transcribed Image Text:3.25 Consider a single-phase electric system shown in Figure 3.33. Transform-
ers are rated as follows:
X-Y 15 MVA, 13.8/138 kV, leakage reactance 10%
Y-Z 15 MVA, 138/69 kV, leakage reactance 8%
With the base in circuit Y chosen as 15 MVA, 138 kV, determine the per-
unit impedance of the 500 resistive load in circuit Z, referred to circuits
Z, Y, and X. Neglecting magnetizing currents, transformer resistances,
and line impedances, draw the impedance diagram in per unit.
FIGURE 3.33
1:10
Single-phase electric
system for
Problem 3.25
X-Y
Y
2:1
Y-Z
N
500 Ω
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