Q7) Water flows from a large reservoir to a smaller one through a 5-cm diameter smooth piping system as shown in the figure. Determine the elevation Z1 for a flow rate of 6 L/s. The dynamic viscosity of water is (0.001307 Pa.s). Z₁ = ? Sharp-edged entrance, K₁=0.5 D=5cm -Control volume boundary 9m Standard elbow, flanged, K₁=0.3 Gate valve, fully open K₂=0.2- -80 m 4 = 4m -Exit, K₂=1.06
Q7) Water flows from a large reservoir to a smaller one through a 5-cm diameter smooth piping system as shown in the figure. Determine the elevation Z1 for a flow rate of 6 L/s. The dynamic viscosity of water is (0.001307 Pa.s). Z₁ = ? Sharp-edged entrance, K₁=0.5 D=5cm -Control volume boundary 9m Standard elbow, flanged, K₁=0.3 Gate valve, fully open K₂=0.2- -80 m 4 = 4m -Exit, K₂=1.06
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question

Transcribed Image Text:Q7) Water flows from a large
reservoir to a
smaller one
through a 5-cm diameter
smooth piping system as shown
the
in the figure. Determine
elevation Z1 for a flow rate of 6
L/s. The dynamic viscosity of
water is (0.001307 Pa.s).
Z₁ = ?
Sharp-edged
entrance, K₁=0.5
D=5cm
-Control
volume
boundary
9m
-Standard elbow,
flanged, K₁=0.3
Gate valve,
fully open
K₂=0.2-
-80 m-
4 =4m
-Exit, K₂=1.06
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