Q1/ liquid is pumped from a ground level reservoir to an overhead tank 90 90 For this system: - (Le/d) of globe valve 240 (Le/d) of 90" elbow - 40 (Le/d) of 45" elbow - 18 h. of Heat Exchanger 1 = 2.2m of liq. Fof Heat Exchanger 2 - 25 J/kg Pump efficiency elbow elbow H.Ex.2 L. through a 15 cm ID pipes of e/d = 0.018 as shown in figure: i. What is the pressure developed by the pump to supply water to Tank Globe Valve 45" elbow - 62 % Pump the tank at the rate of 960 45 elbow I/min? ii. What is the power required for the pump? Given that: u = 1.6 cP; sp.gr 0.86; and the lengths as follow; L = 33 m, L2 = 17 m, L3 = 8 m, L = 35 m Reservair H.Ex.1

Structural Analysis
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Chapter2: Loads On Structures
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Q1/
liquid is pumped from a ground
90
elbow
90°
For this system: -
(Le/d) of globe valve = 240
(Le/d) of 90" elbow = 40
(Le/d) of 45" elbow - 18
h: of Heat Exchanger 1 = 2.2 m of liq.
Fof Heat Exchanger 2 = 25 J/kg
Pump efficiency
elbow
level reservoir to an overhead tank
H.Ex.2
through a 15 cm ID pipes of e/d =
0.018 as shown in figure:
i. What is the pressure developed
by the pump to supply water to
Tank
Globe
Valve
45" elbow
- 62 %
Pump
the tank at the rate of 960
45°
elbow
/min?
ii. What is the power required for
the pump?
Given that: u = 1.6 cP; sp.gr 0.86;
and the lengths as follow; L = 33 m, L2 = 17 m, L3 = 8 m, L4 = 35 m
Reservair
H.Ex.1
Transcribed Image Text:Q1/ liquid is pumped from a ground 90 elbow 90° For this system: - (Le/d) of globe valve = 240 (Le/d) of 90" elbow = 40 (Le/d) of 45" elbow - 18 h: of Heat Exchanger 1 = 2.2 m of liq. Fof Heat Exchanger 2 = 25 J/kg Pump efficiency elbow level reservoir to an overhead tank H.Ex.2 through a 15 cm ID pipes of e/d = 0.018 as shown in figure: i. What is the pressure developed by the pump to supply water to Tank Globe Valve 45" elbow - 62 % Pump the tank at the rate of 960 45° elbow /min? ii. What is the power required for the pump? Given that: u = 1.6 cP; sp.gr 0.86; and the lengths as follow; L = 33 m, L2 = 17 m, L3 = 8 m, L4 = 35 m Reservair H.Ex.1
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