Determine the Reynolds number, Re. Determine the friction factor. Compute the total head losses (major and minor).

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Hydraulics

-2.5m
Determine the Reynolds number, Re.
Determine the friction factor.
Compute the total head losses (major and minor).
Determine the height, h, to which the water rises in the piezometer tube
EN
Transcribed Image Text:-2.5m Determine the Reynolds number, Re. Determine the friction factor. Compute the total head losses (major and minor). Determine the height, h, to which the water rises in the piezometer tube EN
Water flows through a 22-cm diameter (D) pipe with a velocity (V) of 6 m/s as
shown below.
The relative roughness of the pipe is 0.004, and the loss coefficient for the
exit is 0.8.
Given that the kinematic viscosity is 1.12 x 10 N/m2.s.
9-
Open
2.5m
D)cm
Vm/s
2.5m
Determine the Reynolds number, Re.
Determine the friction factor.
EN
2.
Transcribed Image Text:Water flows through a 22-cm diameter (D) pipe with a velocity (V) of 6 m/s as shown below. The relative roughness of the pipe is 0.004, and the loss coefficient for the exit is 0.8. Given that the kinematic viscosity is 1.12 x 10 N/m2.s. 9- Open 2.5m D)cm Vm/s 2.5m Determine the Reynolds number, Re. Determine the friction factor. EN 2.
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