Armature Flux per pole Solution

STEP 0: Pre-Calculation Summary
Formula Used
Armature Flux per Pole = Total Flux per Pole/Leakage Factor
Φa = Φt/α
This formula uses 3 Variables
Variables Used
Armature Flux per Pole - (Measured in Weber) - Armature Flux per Pole is the magnetic field strength generated by the armature winding in an electric machine per pole, crucial for inducing electromotive force and facilitating torque production.
Total Flux per Pole - (Measured in Weber) - Total Flux per Pole refers to the overall amount of magnetic flux passing through a single magnetic pole in an electric machine or transformer.
Leakage Factor - Leakage Factor is defined as the magnetic flux which does not follow the particularly intended path in a magnetic circuit.
STEP 1: Convert Input(s) to Base Unit
Total Flux per Pole: 9.8 Weber --> 9.8 Weber No Conversion Required
Leakage Factor: 1.15 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Φa = Φt/α --> 9.8/1.15
Evaluating ... ...
Φa = 8.52173913043478
STEP 3: Convert Result to Output's Unit
8.52173913043478 Weber --> No Conversion Required
FINAL ANSWER
8.52173913043478 8.521739 Weber <-- Armature Flux per Pole
(Calculation completed in 00.004 seconds)

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Created by Shobhit Dimri
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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Total Flux per pole
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Armature Flux per pole Formula

​LaTeX ​Go
Armature Flux per Pole = Total Flux per Pole/Leakage Factor
Φa = Φt/α

Why are Magnetic field lines are closed curves?

Magnetic field lines are closed continuous curves. They diverge from the north pole of a bar magnet and converge its south pole. Inside the magnet, they move from the south pole to the north pole.

How to Calculate Armature Flux per pole?

Armature Flux per pole calculator uses Armature Flux per Pole = Total Flux per Pole/Leakage Factor to calculate the Armature Flux per Pole, The Armature Flux per pole formula is defined as the armature flux is produced by the current induced in the armature conductors while the field pole flux is induced because of the main field poles. These two flux combines and gives the resultant flux ΦR as shown in the figure above. When the field flux enters into the armature, it may get distorted. Armature Flux per Pole is denoted by Φa symbol.

How to calculate Armature Flux per pole using this online calculator? To use this online calculator for Armature Flux per pole, enter Total Flux per Pole t) & Leakage Factor (α) and hit the calculate button. Here is how the Armature Flux per pole calculation can be explained with given input values -> 3.043478 = 9.8/1.15.

FAQ

What is Armature Flux per pole?
The Armature Flux per pole formula is defined as the armature flux is produced by the current induced in the armature conductors while the field pole flux is induced because of the main field poles. These two flux combines and gives the resultant flux ΦR as shown in the figure above. When the field flux enters into the armature, it may get distorted and is represented as Φa = Φt or Armature Flux per Pole = Total Flux per Pole/Leakage Factor. Total Flux per Pole refers to the overall amount of magnetic flux passing through a single magnetic pole in an electric machine or transformer & Leakage Factor is defined as the magnetic flux which does not follow the particularly intended path in a magnetic circuit.
How to calculate Armature Flux per pole?
The Armature Flux per pole formula is defined as the armature flux is produced by the current induced in the armature conductors while the field pole flux is induced because of the main field poles. These two flux combines and gives the resultant flux ΦR as shown in the figure above. When the field flux enters into the armature, it may get distorted is calculated using Armature Flux per Pole = Total Flux per Pole/Leakage Factor. To calculate Armature Flux per pole, you need Total Flux per Pole t) & Leakage Factor (α). With our tool, you need to enter the respective value for Total Flux per Pole & Leakage Factor and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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