2.1 Determine the value of the phase voltage in a delta-connected system if the line voltage is 380 V - NSC Electrical Technology Electronics - Question 2 - 2016 - Paper 1
Question 2
2.1 Determine the value of the phase voltage in a delta-connected system if the line voltage is 380 V.
2.2 Draw a neat, labelled voltage phasor diagram that represe... show full transcript
Worked Solution & Example Answer:2.1 Determine the value of the phase voltage in a delta-connected system if the line voltage is 380 V - NSC Electrical Technology Electronics - Question 2 - 2016 - Paper 1
Step 1
Determine the value of the phase voltage in a delta-connected system if the line voltage is 380 V.
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Answer
In a delta-connected system, the phase voltage (Vph) is equal to the line voltage (VL). Therefore, the phase voltage can be expressed as:
Vph=VL=380extV
Thus, the phase voltage is 380 V.
Step 2
Draw a neat, labelled voltage phasor diagram that represents a three-phase delta-connected system.
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Answer
The voltage phasor diagram for a three-phase delta-connected system consists of three phasors, each separated by 120 degrees, illustrated as follows:
Label each phase as VL1, VL2, and VL3.
The angles between the phasors should be 120 degrees.
Make sure to indicate the rotation direction and label each phasor appropriately.
Step 3
Current delivered by the alternator at full load.
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Answer
To determine the current delivered by the alternator at full load, we use the formula: