Example 26.28. A long-shunt compound-wound generator gives 240 volts at F.L. output of 100 A. The resistances of various windings of the machine are: armature (including brush contact) 0.1 , series field 0.02 , interpole field 0.025 S2, shunt field (including regulating resistance) 100 №. The iron loss at F.L. is 1000 W; windage and friction losses total 500 W. Calculate F.L. efficiency of the machine.
Example 26.28. A long-shunt compound-wound generator gives 240 volts at F.L. output of 100 A. The resistances of various windings of the machine are: armature (including brush contact) 0.1 , series field 0.02 , interpole field 0.025 S2, shunt field (including regulating resistance) 100 №. The iron loss at F.L. is 1000 W; windage and friction losses total 500 W. Calculate F.L. efficiency of the machine.
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Solve question no.2 and show a clear and readable solution. Super thanks!!!
Note: Please include the circuit diagram if possible. Also, please write the given and the required. The course subject is Electrical Machines.
Thanks!!!
![Example 26.28. A long-shunt compound-wound generator gives 240 volts at F.L. output of 100
A. The resistances of various windings of the machine are: armature (including brush contact) 0.1
, series field 0.02 S2, interpole field 0.025 S2, shunt field (including regulating resistance) 100 2.
The iron loss at F.L. is 1000 W; windage and friction losses total 500 W. Calculate F.L. efficiency of
the machine.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F12d10203-08e8-43b9-b4ba-8afa8d5186ba%2Fb4db2fe8-7abb-486e-a0ed-51bac930f3c0%2Fgo7f8it_processed.png&w=3840&q=75)
Transcribed Image Text:Example 26.28. A long-shunt compound-wound generator gives 240 volts at F.L. output of 100
A. The resistances of various windings of the machine are: armature (including brush contact) 0.1
, series field 0.02 S2, interpole field 0.025 S2, shunt field (including regulating resistance) 100 2.
The iron loss at F.L. is 1000 W; windage and friction losses total 500 W. Calculate F.L. efficiency of
the machine.
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