21. The thrust of a propeller shaft in a marine engine is taken up by a number of collars integral with the shaft which is 300 mm in diameter. The thrust on the shaft is 200 kN and the speed is 75 r.p.m. Taking u constant and equal to 0.05 and assuming intensity of pressure as uniform and equal to 0.3 N/mm², find the external diameter of the collars and the number of collars required, if the power lost in friction is not to exceed 16 kW.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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e in a marine engine is taken up by a 300 mm in diameter: The thrust on the shaft is 20( equal t0 0.05 and assuming intensiry of press diameter of the collars and th, 16 kW, e number of
121. The thrust of a propeller shaft in a marine engine is taken up by a number
of collars integral with the shaft which is 300 mm in diameter. The thrust on the shaft is 200 kN and
the speed is 75 r.p.m. Taking H constant and equal to 0.05 and assuming intensity of pressure as
uniform and equal to 0.3 N/mm, find the external diameter of the collars and the number of collars
required, if the power lost in friction is not to exceed 16 kW.
Transcribed Image Text:121. The thrust of a propeller shaft in a marine engine is taken up by a number of collars integral with the shaft which is 300 mm in diameter. The thrust on the shaft is 200 kN and the speed is 75 r.p.m. Taking H constant and equal to 0.05 and assuming intensity of pressure as uniform and equal to 0.3 N/mm, find the external diameter of the collars and the number of collars required, if the power lost in friction is not to exceed 16 kW.
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