A tank filled with water at 30°C is supplies water for a shower based on gravity driven flow. The system includes 20 m of 1.5-cm-diameter galvanized iron piping with four 90° miter bends without vanes and a wide-open globe valve. The entrance to the pipe from the tank is square-edged, and the showerhead has an exit loss coefficient of 0.5. If water is to flow at a rate of 0.7 L/s through the showerhead, determine how high the water level in the tank must be above the exit level of the shower to meet the flow requirement.
A tank filled with water at 30°C is supplies water for a shower based on gravity driven flow. The system includes 20 m of 1.5-cm-diameter galvanized iron piping with four 90° miter bends without vanes and a wide-open globe valve. The entrance to the pipe from the tank is square-edged, and the showerhead has an exit loss coefficient of 0.5. If water is to flow at a rate of 0.7 L/s through the showerhead, determine how high the water level in the tank must be above the exit level of the shower to meet the flow requirement.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A tank filled with water at 30°C is supplies water for a shower based on gravity driven flow. The system includes 20 m of 1.5-cm-diameter galvanized iron piping with four 90° miter bends without vanes and a wide-open globe valve. The entrance to the pipe from the tank is square-edged, and the showerhead has an exit loss coefficient of 0.5. If water is to flow at a rate of 0.7 L/s through the showerhead, determine how high the water level in the tank must be above the exit level of the shower to meet the flow requirement.
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