b) Fig. 3 shows a graph that has variable drive torque and constant load torque. The load ( torque is 500Nm with average speed of 30rpm. A complete cycle for the system is 3x radian. Determine thickness of the flywheel if you want to reduce the coefficient speed of fluctiation from 0.15 to 0.1. Assume the diameter for the flywheel is 50cm and material used is steel (p=8050kg/m³) Le.. Torque (N-m) 12 cm 750 220 T 2n } 813 8 3n 3 E 8(rad)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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b) Fig. 3 shows a graph that has variable drive torque and constant load torque. The load (2
torque is 500Nm with average speed of 30rpm. A complete cycle for the system is
3x radian. Determine thickness of the flywheel if you want to reduce the coefficient
speed of fluctiation from 0.15 to 0.1. Assume the diameter for the flywheel is 50cm
and material used is steel (p =
8050kg/m³)
le..
Torque (N-m)
cm
750
220
K
2n
3
8h3
3"
3n
8(rad)
Transcribed Image Text:b) Fig. 3 shows a graph that has variable drive torque and constant load torque. The load (2 torque is 500Nm with average speed of 30rpm. A complete cycle for the system is 3x radian. Determine thickness of the flywheel if you want to reduce the coefficient speed of fluctiation from 0.15 to 0.1. Assume the diameter for the flywheel is 50cm and material used is steel (p = 8050kg/m³) le.. Torque (N-m) cm 750 220 K 2n 3 8h3 3" 3n 8(rad)
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