A tunnel with the flow rate qy = 2.5 L/s. See the figure, the diameter d, = 50 mm and d2 = 25 mm . The pressure at cross section 1 is p, = 9807 Pa. A tube connects the tunnel to a open container which contains the water at cross section 2. The density of water p = 1000 kg/m?. The gravitational acceleration g = 9.81 N/kg. Calculate the height difference h. (The friction loss is negligible.)

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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A tunnel with the flow rate qy = 2.5 L/s. See the figure, the diameter d, = 50 mm and
d2 = 25 mm . The pressure at cross section 1 is p1 = 9807 Pa. A tube connects the tunnel
to a open container which contains the water at cross section 2. The density of water p =
1000 kg/m³. The gravitational acceleration g = 9.81 N/kg.
Calculate the height difference h. (The friction loss is negligible.)
Transcribed Image Text:A tunnel with the flow rate qy = 2.5 L/s. See the figure, the diameter d, = 50 mm and d2 = 25 mm . The pressure at cross section 1 is p1 = 9807 Pa. A tube connects the tunnel to a open container which contains the water at cross section 2. The density of water p = 1000 kg/m³. The gravitational acceleration g = 9.81 N/kg. Calculate the height difference h. (The friction loss is negligible.)
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