Question 5 Figure 5 shows a header tank in a laboratory. a) Determine the discharge when filling the tank using the main water. b) If the tank bottom is rectangular (1m x 3m) and the required depth is 0.75 m, determine the time needed to fill the tank. c) With respect to pipe flow, discuss how viscosity and pipe surface condition affect the flow velocity. Pipe diameter AC: D = 22 mm; Mains water pipe diameter (BC): 100mm Mains water pressure head at B: 35 m 3.4 m 3.5 m B Mains water

Structural Analysis
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Chapter2: Loads On Structures
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Question 5
Figure 5 shows a header tank in a laboratory.
a) Determine the discharge when filling the tank using the main water.
b) If the tank bottom is rectangular (1m x 3m) and the required depth is 0.75 m,
determine the time needed to fill the tank.
c) With respect to pipe flow, discuss how viscosity and pipe surface condition affect
the flow velocity.
Pipe diameter AC: D = 22 mm;
Mains water pipe diameter (BC): 100mm
Mains water pressure head at B: 35 m
3.4 m
Figure 5. for Question 5
3.5 m
B
Mains water
Transcribed Image Text:Question 5 Figure 5 shows a header tank in a laboratory. a) Determine the discharge when filling the tank using the main water. b) If the tank bottom is rectangular (1m x 3m) and the required depth is 0.75 m, determine the time needed to fill the tank. c) With respect to pipe flow, discuss how viscosity and pipe surface condition affect the flow velocity. Pipe diameter AC: D = 22 mm; Mains water pipe diameter (BC): 100mm Mains water pressure head at B: 35 m 3.4 m Figure 5. for Question 5 3.5 m B Mains water
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