Example (2.1)/ A synchronous generator-motor set, each of which is rated 20 MVA, 12.66 kV having 15% sub- transient reactance, is connected together using transformers as shown in figure below. The transformers are rated 20 MVA, 12.66/66kV with a leakage reactance of 10% each. The line has a reactance of 8% on a base of 20 MVA, 66 kV. The motor is drawing 10 MW at 0.8 leading power factor and 11 kV terminal voltage, when a symmetrical three-phase fault occurs at the genret terminals. Determine generator, motor and fault currents. G T₁ Transmission line T2 M

Introductory Circuit Analysis (13th Edition)
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Example (2.1)/A synchronous generator-motor set, each
of which is rated 20 MVA, 12.66 kV having 15% sub-
transient reactance, is connected together using
transformers as shown in figure below. The transformers
are rated 20 MVA, 12.66/66kV with a leakage reactance
of 10% each. The line has a reactance of 8% on a base of
20 MVA, 66 kV. The motor is drawing 10 MW at 0.8
leading power factor and 11 kV terminal voltage, when a
symmetrical three-phase fault occurs at the genretar
terminals. Determine generator, motor and fault currents.
Ti
Ⓒ+E
G
Transmission line
T2
HM)
Transcribed Image Text:Example (2.1)/A synchronous generator-motor set, each of which is rated 20 MVA, 12.66 kV having 15% sub- transient reactance, is connected together using transformers as shown in figure below. The transformers are rated 20 MVA, 12.66/66kV with a leakage reactance of 10% each. The line has a reactance of 8% on a base of 20 MVA, 66 kV. The motor is drawing 10 MW at 0.8 leading power factor and 11 kV terminal voltage, when a symmetrical three-phase fault occurs at the genretar terminals. Determine generator, motor and fault currents. Ti Ⓒ+E G Transmission line T2 HM)
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