A 13.2 kV, 60 Hz, single phase line connects a substation to an industrial load. The line has a resistance of 2.4 Ω and a reactance of 12 Ω. The metering equipment at the substation indicates that the line voltage is 12.5 kV and that the line is drawing 3 MW of active power and 2 Mvar of reactive power. Calculate showing all the steps: The current flowing in the line The active and reactive power consumed by the line The active, reactive an apparent power absorbed by the load
A 13.2 kV, 60 Hz, single phase line connects a substation to an industrial load. The line has a resistance of 2.4 Ω and a reactance of 12 Ω. The metering equipment at the substation indicates that the line voltage is 12.5 kV and that the line is drawing 3 MW of active power and 2 Mvar of reactive power. Calculate showing all the steps: The current flowing in the line The active and reactive power consumed by the line The active, reactive an apparent power absorbed by the load
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
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.10P: For the circuit element of Problem 2.3, calculate (a) the instantaneous power absorbed, (b) the real...
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- A 13.2 kV, 60 Hz, single phase line connects a substation to an industrial load. The line has a resistance of 2.4 Ω and a reactance of 12 Ω. The metering equipment at the substation indicates that the line voltage is 12.5 kV and that the line is drawing 3 MW of active power and 2 Mvar of reactive power. Calculate showing all the steps:
- The current flowing in the line
- The active and reactive power consumed by the line
- The active, reactive an apparent power absorbed by the load
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