The flow rate in a 300 mm diameter pipe is 0.226 m³/s. The flow is known to be turbulent and the centerline velocity is 3.66 m/s. The density of liquid flowing is 900 kg/m³. 850 - Determine the friction factor. a) 0.02655 c) 0.03411 b) 0.01168 d) 0.04158 Determine the head loss per meter length of pipe. a) 0.08 m. b) 0.06 m. c) 0.02 m. d) 0.04 m. 3 Determine the shearing stress at the walls of the pipe. a) 12.71 N/m2 c) 14.57 N/m² b) 17.54 N/m2 d) 16.47 N/m²

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The flow rate in a 300 mm diameter pipe
is 0.226 m³/s. The flow is known to be
turbulent and the centerline velocity is
3.66 m/s. The density of liquid flowing is
900 kg/m³.
850
-
Determine the friction factor.
c) 0.03411
d) 0.04158
a) 0.02655
b) 0.01168
Determine the head loss per meter
length of pipe.
a) 0.08 m.
b) 0.06 m.
-
c) 0.02 m.
d) 0.04 m.
Determine the shearing stress at the
walls of the pipe.
a) 12.71 N/m2
c) 14.57 N/m²
b) 17.54 N/m2 d) 16.47 N/m²
Transcribed Image Text:The flow rate in a 300 mm diameter pipe is 0.226 m³/s. The flow is known to be turbulent and the centerline velocity is 3.66 m/s. The density of liquid flowing is 900 kg/m³. 850 - Determine the friction factor. c) 0.03411 d) 0.04158 a) 0.02655 b) 0.01168 Determine the head loss per meter length of pipe. a) 0.08 m. b) 0.06 m. - c) 0.02 m. d) 0.04 m. Determine the shearing stress at the walls of the pipe. a) 12.71 N/m2 c) 14.57 N/m² b) 17.54 N/m2 d) 16.47 N/m²
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