The equation of the turning moment diagram of a three crank ne is ( 4905 + 1471.5 sin 30 )N.m where 0 in radian is the crank e. The moment of inertia of the flywheel is one tone. m² and the n engine speed is 300 rpm. Calculate: (a) the power of the engine (b) the total fluctuation of speed of the flywheel in percentage er the following conditions:- (1) when the resisting torque is tant and (2) when the resisting torque is 4905 + 588.6 sin 0 N.m

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q6:- The equation of the turning moment diagram of a three crank
engine is ( 4905 + 1471.5 sin 30 )N.m where 0 in radian is the crank
angle. The moment of inertia of the flywheel is one tone. m? and the
mean engine speed is 300 rpm. Calculate: (a) the power of the engine
and (b) the total fluctuation of speed of the flywheel in percentage
under the following conditions:- (1) when the resisting torque is
constant and (2) when the resisting torque is 4905 + 588.6 sin 0 N.m
Transcribed Image Text:Q6:- The equation of the turning moment diagram of a three crank engine is ( 4905 + 1471.5 sin 30 )N.m where 0 in radian is the crank angle. The moment of inertia of the flywheel is one tone. m? and the mean engine speed is 300 rpm. Calculate: (a) the power of the engine and (b) the total fluctuation of speed of the flywheel in percentage under the following conditions:- (1) when the resisting torque is constant and (2) when the resisting torque is 4905 + 588.6 sin 0 N.m
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