B1. A crude oil of specific gravity 0.75 is flowing through a pipe of diameter 350 mm and the frictional head loss of 4 m of crude oil between the two ends of a pipe which are 625 m apart. Calculate the Reynold's Number, discharge of crude oil in the pipe. Take co - efficient of friction as 0.0075 and kinematic viscosity as 10 stokes

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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B1. A crude oil of specific gravity 0.75 is
flowing through a pipe of diameter 350 mm
and the frictional head loss of 4 m of crude
oil between the two ends of a pipe which are
625 m apart.
Calculate the Reynold's Number, discharge
of crude oil in the pipe. Take co - efficient of
friction as 0.0075 and kinematic viscosity as
10 stokes
The velocity of flow of oil in the pipe is (m/s)
The Reynold's Number for the flow is
Discharge of crude oil through pipe (in m3/s)
is
Transcribed Image Text:B1. A crude oil of specific gravity 0.75 is flowing through a pipe of diameter 350 mm and the frictional head loss of 4 m of crude oil between the two ends of a pipe which are 625 m apart. Calculate the Reynold's Number, discharge of crude oil in the pipe. Take co - efficient of friction as 0.0075 and kinematic viscosity as 10 stokes The velocity of flow of oil in the pipe is (m/s) The Reynold's Number for the flow is Discharge of crude oil through pipe (in m3/s) is
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