Water flows through a Y-shaped horizontal pipe system consisting of two branches and stem, as shown below. The velocity in the stem V is 3m/s and the diameter Dị is 0.3m. Each branch D2 is 0.13m diameter and makes a 30° angle with the axis of the stem. The pressure in the stem P is 196.2kN/m² and the flow is divided equally between the two branches. Water unit weight is 9.81 kN/m³.

Elements Of Electromagnetics
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Water flows through a Y-shaped horizontal pipe system consisting of two
branches and stem, as shown below. The velocity in the stem V is 3m/s and
the diameter D1
is 0.3m.
Each branch D2 is 0.13m diameter and makes a 30° angle with the axis of the
stem. The pressure in the stem P is 196.2kN/m² and the flow is divided
equally between the two branches. Water unit weight is 9.81 kN/m³.
V m/s
D1
D2
Determine the flow velocity in the branches, V2= ?.
Transcribed Image Text:Water flows through a Y-shaped horizontal pipe system consisting of two branches and stem, as shown below. The velocity in the stem V is 3m/s and the diameter D1 is 0.3m. Each branch D2 is 0.13m diameter and makes a 30° angle with the axis of the stem. The pressure in the stem P is 196.2kN/m² and the flow is divided equally between the two branches. Water unit weight is 9.81 kN/m³. V m/s D1 D2 Determine the flow velocity in the branches, V2= ?.
Determine the flow velocity in the branches, V2 = ?.
Determine the pressure on the branches, P2 = ? in kN.
Calculate the magnitude of the force (in kN) in the X-direction acting on the
Y-shaped connection.
Calculate the magnitude of the force (in kN) in the Y-direction acting on the
Y-shaped connection.
Transcribed Image Text:Determine the flow velocity in the branches, V2 = ?. Determine the pressure on the branches, P2 = ? in kN. Calculate the magnitude of the force (in kN) in the X-direction acting on the Y-shaped connection. Calculate the magnitude of the force (in kN) in the Y-direction acting on the Y-shaped connection.
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