6. A 3-phase, 50 Hz overhead transmission line, 100 km long, 110 kV between the lines at the receiving end has the following constants: Resistance per km per phase Inductance per km per phase Capacitance per km per phase= 0-153 Ω 1-21 mH 0-00958 µF The line supplies a load of 20,000 kW at 0-9 power factor lagging. Calculate using nominal t representation, the sending end voltage, current, power factor, regulation and the efficiency of the line. Neglect leakage. [115-645 kV (line voltage): 109 Z-16-68 A; 0-923 lag : 5-13 %; 97-21 %)

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6. A 3-phase, 50 Hz overhead transmission line, 100 km long, 110 kV between the lines at the receiving end
has the following constants:
Resistance per km per phase=0-1532
Inductance per km per phase =
1-21 mH
Capacitance per km per phase = 0-00958 μF
The line supplies a load of 20,000 kW at 0-9 power factor lagging. Calculate using nominal
representation, the sending end voltage, current, power factor, regulation and the efficiency of the line.
Neglect leakage. [115-645 kV (line voltage): 109 Z-16-68° A; 0-923 lag ; 5-13 %; 97-21 %
Transcribed Image Text:6. A 3-phase, 50 Hz overhead transmission line, 100 km long, 110 kV between the lines at the receiving end has the following constants: Resistance per km per phase=0-1532 Inductance per km per phase = 1-21 mH Capacitance per km per phase = 0-00958 μF The line supplies a load of 20,000 kW at 0-9 power factor lagging. Calculate using nominal representation, the sending end voltage, current, power factor, regulation and the efficiency of the line. Neglect leakage. [115-645 kV (line voltage): 109 Z-16-68° A; 0-923 lag ; 5-13 %; 97-21 %
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