Hi there,
I'm studying for finals and can't quite get this question out.
For a DC machine:
Average air-gap flux density - B = 389 mT
Effective length of rotor slots - L=0.2 m
Rotor diamater D=0.2m
Number of poles P=4
number of parallel paths in armature winding - alpha=4
Required rotational back EMF E = 220V
Rotational speed N = 1500 r/min
Calculate the flux per pole and the number of turns on the rotor winding.
I'd be able to do it if I knew how many slots there were (because one could then find the number of conductors).
Becuase in that case you could just rearrange
E = (pz/alpha) * phi * N
to
phi = (alpha*E)/(pzN)
However since I can't find Z (number of conductors), I'm lost.
Any help is muchly appreciated. Thanks
I'm studying for finals and can't quite get this question out.
For a DC machine:
Average air-gap flux density - B = 389 mT
Effective length of rotor slots - L=0.2 m
Rotor diamater D=0.2m
Number of poles P=4
number of parallel paths in armature winding - alpha=4
Required rotational back EMF E = 220V
Rotational speed N = 1500 r/min
Calculate the flux per pole and the number of turns on the rotor winding.
I'd be able to do it if I knew how many slots there were (because one could then find the number of conductors).
Becuase in that case you could just rearrange
E = (pz/alpha) * phi * N
to
phi = (alpha*E)/(pzN)
However since I can't find Z (number of conductors), I'm lost.
Any help is muchly appreciated. Thanks