Gegee:
TR = 5 : 1
V1 = 2 000 V
S = 50 kVA
Puit = 45 kW
Transformatorverliese = 500 W
Bereken die:
4.7.1 Sekondêre fase spanning
4.7.2 Rendement van die transformator
4.7.3 Arbeidsfaktor van die transformator
4.7.4 Stroom deur die las getrek - NSC Electrical Technology Power Systems - Question 4 - 2021 - Paper 1
Question 4
Gegee:
TR = 5 : 1
V1 = 2 000 V
S = 50 kVA
Puit = 45 kW
Transformatorverliese = 500 W
Bereken die:
4.7.1 Sekondêre fase spanning
4.7.2 Rendement van die transforma... show full transcript
Worked Solution & Example Answer:Gegee:
TR = 5 : 1
V1 = 2 000 V
S = 50 kVA
Puit = 45 kW
Transformatorverliese = 500 W
Bereken die:
4.7.1 Sekondêre fase spanning
4.7.2 Rendement van die transformator
4.7.3 Arbeidsfaktor van die transformator
4.7.4 Stroom deur die las getrek - NSC Electrical Technology Power Systems - Question 4 - 2021 - Paper 1
Step 1
Sekondêre fase spanning
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Answer
To find the secondary phase voltage V2, we use the transformer turns ratio:
V2=N1N2×V1
Given:
N1=5, N2=1, and V1=2000V:
V2=51×2000=400V
Therefore, the secondary phase voltage is 400 V.
Step 2
Rendesment van die transformator
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Answer
The efficiency η of the transformer can be calculated using the formula:
η=Puit+verliesPuit×100
Where:
Puit=45000W (45 kW) and verlies=500W:
η=45000+50045000×100=98.9%
Thus, the efficiency of the transformer is 98.9%.
Step 3
Arbeidsfaktor van die transformator
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Answer
The power factor cosθ is determined using the following equation:
cosθ=SP
Where:
P=45000W and S=50000VA (50 kVA):
cosθ=5000045000=0.9
So, the power factor is 0.9.
Step 4
Stroom deur die las getrek
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Answer
To find the current through the load I2, we use the formula:
I2=3×V2×cosθS
Substituting the values:
S=50000VA and V2=400V accordingly:
I2=3×400×0.950000=72.17A
Thus, the current drawn by the load is approximately 72.17 A.