Ammonia at atmospheric pressure and 400 K with a bulk stream velocity of 10 m/sec flows in pipe of ID of 20 cm. Calculate the pressure drop per 100 m length of the pipe and the power Consumed. Friction factor f = 0.079 Re0.25 in the turbulent regime. Viscosity of ammonia may be taken as 10 x 10-6 kg m.sec

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Ammonia at atmospheric pressure and 400 K with a bulk stream velocity of 10 m/sec flows in
pipe of ID of 20 cm. Calculate the pressure drop per 100 m length of the pipe and the power
Consumed. Friction factor f = 0.079Re0.25 in the turbulent regime. Viscosity of ammonia may
be taken as 10 x 106 kg
m.sec
Transcribed Image Text:Ammonia at atmospheric pressure and 400 K with a bulk stream velocity of 10 m/sec flows in pipe of ID of 20 cm. Calculate the pressure drop per 100 m length of the pipe and the power Consumed. Friction factor f = 0.079Re0.25 in the turbulent regime. Viscosity of ammonia may be taken as 10 x 106 kg m.sec
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