8. Water is flowing in a 100 mm diameter Mild Steel (MS) pipe of length 180 m as shown in the figure. The reservoir water level remains constant. Determine the flow rate. Use the following methods: (a) Darcy Weisbach formula with loss coefficient method, (b) Darcy Weisbach formula with effective pipe length method, (c) Hazen William's formula with loss coefficient method, and (d) Hazen William's formula with effective pipe length method. (Ans.: 28.27 liter/s, 28.33 liter/s, 32.04 liter/s, 32.67 liter/s) EL85 m EL = Elevation Gạte valve Butterfly valve openęd end EL50 m

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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8. Water is flowing in a 100 mm diameter Mild Steel (MS) pipe of length 180 m as shown in the
figure. The reservoir water level remains constant. Determine the flow rate. Use the following
methods:
(a) Darcy Weisbach formula with loss coefficient method,
(b) Darcy Weisbach formula with effective pipe length method,
(c) Hazen William's formula with loss coefficient method, and
(d) Hazen William's formula with effective pipe length method.
(Ans.: 28.27 liter/s, 28.33 liter/s, 32.04 liter/s, 32.67 liter/s)
EL85 m
EL = Elevation
Gaie
valve
Butterfly
valvé
opened
EL50 m
Transcribed Image Text:8. Water is flowing in a 100 mm diameter Mild Steel (MS) pipe of length 180 m as shown in the figure. The reservoir water level remains constant. Determine the flow rate. Use the following methods: (a) Darcy Weisbach formula with loss coefficient method, (b) Darcy Weisbach formula with effective pipe length method, (c) Hazen William's formula with loss coefficient method, and (d) Hazen William's formula with effective pipe length method. (Ans.: 28.27 liter/s, 28.33 liter/s, 32.04 liter/s, 32.67 liter/s) EL85 m EL = Elevation Gaie valve Butterfly valvé opened EL50 m
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