B1. A crude oil of specific gravity 0.85 is flowing through a pipe of diameter 325 mm and the frictional head loss of 5 m of crude oil between the two ends of a pipe which are 675 m apart. Calculate the Reynold's Number, discharge of crude oil in the pipe. Take co - efficient of friction as 0.0085 and kinematic viscosity as 10 stokes. (Enter only the values by referring the unit given. Also upload the hand written answers in the link provided) 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

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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B1. A crude oil of specific gravity 0.85 is flowing
through a pipe of diameter 325 mm and the
frictional head loss of 5 m of crude oil between the
two ends of a pipe which are 675 m apart.
Calculate the Reynold's Number, discharge of
crude oil in the pipe. Take co - efficient of friction
as 0.0085 and kinematic viscosity as 10 stokes.
(Enter only the values by referring the unit
given. Also upload the hand written answers in
the link provided)
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 0.85 is flowing through a pipe of diameter 325 mm and the frictional head loss of 5 m of crude oil between the two ends of a pipe which are 675 m apart. Calculate the Reynold's Number, discharge of crude oil in the pipe. Take co - efficient of friction as 0.0085 and kinematic viscosity as 10 stokes. (Enter only the values by referring the unit given. Also upload the hand written answers in the link provided) 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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