4.1 After a motor has been started and is running, what other functions does the starter perform?
4.2 Name THREE parts of a three-phase induction motor - NSC Electrical Technology Power Systems - Question 4 - 2017 - Paper 1
Question 4
4.1 After a motor has been started and is running, what other functions does the starter perform?
4.2 Name THREE parts of a three-phase induction motor.
4.3 Explai... show full transcript
Worked Solution & Example Answer:4.1 After a motor has been started and is running, what other functions does the starter perform?
4.2 Name THREE parts of a three-phase induction motor - NSC Electrical Technology Power Systems - Question 4 - 2017 - Paper 1
Step 1
4.1 After a motor has been started and is running, what other functions does the starter perform?
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Answer
The starter continues to protect the motor from overload conditions, allows for safe operation, and can provide features such as speed control and automatic restarting after power loss.
Step 2
4.2 Name THREE parts of a three-phase induction motor.
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Answer
Stator
Rotor
Bearings
Step 3
4.3 Explain why a star-delta starter is used to start three-phase induction motors.
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Answer
A star-delta starter reduces the voltage across the motor during starting. This leads to a lower starting current, minimizing the inrush current that might damage the motor and prevent nuisance tripping of the supply.
Step 4
4.4.1 The current drawn from the supply
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Answer
To calculate the current drawn from the supply, use the formula:
IL=3×V×cosθP
Substituting the given values:
IL=3×380×0.915000≈25,32A
Step 5
4.4.2 The apparent power of the motor
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The apparent power (S) can be calculated using:
Sapparent=cosθP
So, substituting the values:
Sapparent=0.915000≈16667kVA
Step 6
4.4.3 The phase current of the motor
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Answer
The phase current can be found using:
Iphase=3IL
Thus,
Iphase=325.32≈14.43A
Step 7
4.5.1 Describe why it is important to test the insulation resistance between the windings and the frame of the motor.
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Answer
Testing the insulation resistance is crucial to ensure safety and to prevent faults that could lead to electric shock, equipment damage, or motor failure. It ensures that the insulation is intact and can withstand operational conditions.
Step 8
4.5.2 Describe the insulation resistance reading you would expect when measuring between the windings of the motor.
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The expected insulation resistance reading should typically be high, indicating good insulation integrity, often in the range of megaohms. A reading significantly below this indicates potential insulation breakdown.
Step 9
4.6 Describe how the direction of rotation of a three-phase motor may be changed.
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The direction of rotation can be changed by reversing any two of the three supply lines connected to the motor.
Step 10
4.7 Describe why it is necessary to have protective devices as part of motor control.
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Protective devices are essential to safeguard the motor against overloads and short circuits, ensuring the longevity of the motor and maintenance of safe operational conditions.
Step 11
4.8 Explain what occurs to the three-phase induction motor if one phase fails.
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If one phase fails, the motor will continue to run, but with reduced performance. The remaining phases will handle the output power, but this can lead to overheating and eventual motor damage if not addressed.
Step 12
4.9.1 State the function of the starter.
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Answer
The function of a star-delta starter is to reduce the starting current of the motor, limiting it to 3 to 4 times the full-load current.
Step 13
4.9.2 Describe how it achieves this function.
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The star-delta starter initially connects the motor in a star configuration, which reduces the voltage and current. After a brief period, it switches to the delta configuration, providing full voltage to allow the motor to run at full power.
Step 14
4.10 Describe the principle of operation of an overload unit in a direct-on-line starter.
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The overload unit monitors the current flowing to the motor. If the current exceeds a preset limit for a specified time, the unit opens the circuit, disconnecting power to protect the motor.
Step 15
4.11 Draw and label the control circuit of a direct-on-line starter.
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A control circuit for a direct-on-line starter typically includes a start button, stop button, contactor, and overload relay. The primary components control power to the motor and ensure safe operation.