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4.1 Name THREE losses that occur in transformers - NSC Electrical Technology Power Systems - Question 4 - 2018 - Paper 1

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4.1 Name THREE losses that occur in transformers. 4.2 State TWO applications of a delta-star transformer. 4.3 State TWO functions of the oil used in transformers. ... show full transcript

Worked Solution & Example Answer:4.1 Name THREE losses that occur in transformers - NSC Electrical Technology Power Systems - Question 4 - 2018 - Paper 1

Step 1

4.1 Name THREE losses that occur in transformers.

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Answer

The three losses that occur in transformers include:

  1. Copper losses (I²R losses): These occur due to the resistance in the windings when current flows through them.
  2. Iron losses: This includes eddy current losses and hysteresis losses that happen in the magnetic core of the transformer due to alternating magnetic fields.
  3. Stray losses: Losses that occur from leakage flux in the transformer.

Step 2

4.2 State TWO applications of a delta-star transformer.

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Answer

Delta-star transformers are commonly used for:

  1. Power distribution in Commercial and power distribution in Industries.
  2. Power distribution for domestic use, particularly in converting 380 V to 220 V.

Step 3

4.3 State TWO functions of the oil used in transformers.

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Answer

The oil in transformers serves two main functions:

  1. Insulation: It improves the insulation of the transformer, preventing electrical breakdown.
  2. Cooling: It conducts heat away from the windings, helping maintain optimal operational temperatures.

Step 4

4.4 Describe the operation of a transformer.

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Answer

A transformer operates on the principle of electromagnetic induction. When an alternating current passes through the primary winding, it creates a magnetic field that induces an alternating voltage in the secondary winding. The ratio of turns between the primary and secondary windings determines the voltage increase or decrease.

Step 5

4.5 Explain why transformers have a better efficiency in comparison to other machines.

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Answer

Transformers have better efficiency due to:

  1. No Moving Parts: They have no moving parts which minimizes mechanical wear and losses.
  2. Higher Output: They are designed to deliver power output efficiently with fewer losses, thus ensuring that a larger portion of input energy is converted to output energy.

Step 6

4.6 State the purpose of the Buchholz relay in transformers.

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Answer

The Buchholz relay functions as a safety device in transformers. It detects abnormal gas formation, which can indicate internal faults, and isolates the transformer from the supply to prevent further damage.

Step 7

4.7.1 Secondary phase voltage.

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Answer

To calculate the secondary phase voltage, we use: V(S)=V(L(S))3V_{(S)} = \frac{V_{(L(S))}}{\sqrt{3}} Substituting in the values: V(S)=380V3219.39VV_{(S)} = \frac{380 V}{\sqrt{3}} \approx 219.39 V

Step 8

4.7.2 Transformation ratio.

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Answer

The transformation ratio (TR) can be calculated using: TR=V(P)V(S)TR = \frac{V_{(P)}}{V_{(S)}} Substituting the known values: TR=2200V219.39V10:1TR = \frac{2200 V}{219.39 V} \approx 10:1

Step 9

4.7.3 Number of secondary turns.

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Answer

Using the turns ratio, we can deduce the number of secondary turns (N2N_2) as follows: V(P)V(S)=NPNS\frac{V_{(P)}}{V_{(S)}} = \frac{N_P}{N_S} Thus, N(S)=NP×V(S)V(P)N_{(S)} = N_P \times \frac{V_{(S)}}{V_{(P)}} Substituting in: N(S)=1500×219.392200149.58150N_{(S)} = 1500 \times \frac{219.39}{2200} \approx 149.58 \approx 150

Step 10

4.8.1 Determine whether the transformer is a step-down or a step-up transformer.

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Answer

The transformer is a step-down transformer as the number of primary turns (N_P) is greater than the number of secondary turns (N_S).

Step 11

4.8.2 State why the transformer can be used for distributing electrical power for domestic and industrial loads.

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Answer

Transformers can distribute electrical power effectively due to their ability to adjust voltage levels for different applications. When connected in star, they create a neutral point to supply single-phase and three-phase systems, making them versatile for both domestic and industrial use.

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