Q2/ A horizontal pipe carries cooling water at 10°C for a thermal power plant. what is the pressure in the pipe at L = 2000 m? The head loss in the pipe is 0.02(L/D)V² h₂ = 2g where L is the length of the pipe from the reservoir to the point in question, V is the mean velocity in the pipe, and D is the diameter of the pipe. The pipe diameter is 20 cm and the rate of flow is 0.06 m³/s. 80 m Datum Elevation = 20 m Ecvation = 100 m ·D=0.2m -L-2000 m- . D2g Q=0.06 m³/s

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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سمنب Fluid mechanics
Q2/
A horizontal pipe carries cooling water at 10°C for a
thermal power plant. what is the pressure in the
pipe at L = 2000 m? The head loss in the pipe is
0.02(L/D)V²
ML
=
2g
where L is the length of the pipe from the reservoir to
the point in question,
V is the mean velocity in the pipe, and
D is the diameter of the pipe.
The pipe diameter is 20 cm and the rate of flow is 0.06
m³/s,
80 m
Datum
Elevation = 20 m
Ecvation = 100 m
·D=0.2m
-L-2000 m-
LV2
D2g
h₂ = 0.02
pho
Q=0.06 m³/s
Transcribed Image Text:Q2/ A horizontal pipe carries cooling water at 10°C for a thermal power plant. what is the pressure in the pipe at L = 2000 m? The head loss in the pipe is 0.02(L/D)V² ML = 2g where L is the length of the pipe from the reservoir to the point in question, V is the mean velocity in the pipe, and D is the diameter of the pipe. The pipe diameter is 20 cm and the rate of flow is 0.06 m³/s, 80 m Datum Elevation = 20 m Ecvation = 100 m ·D=0.2m -L-2000 m- LV2 D2g h₂ = 0.02 pho Q=0.06 m³/s
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