Water entering through 5 ft long and 1 inch diameter pipe has a flow rate of 100 kg/min at a temperature of 100°C and pressure of 2 bar. The density of water at these conditions is 961.5 kg/m3. Calculate the rate of work done at the entrance of pipe.
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- Water entering through 5 ft long and 1 inch diameter pipe has a flow rate of 100 kg/min at a temperature of 100 °C and pressure of 2 bar. The density of water at these conditions is 961.5 kg/m3. Calculate the rate of work done at the entrance of pipe.Water entering through 5 ft long and 1 inch diameter pipe has a flow rate of 100 kg/min at a temperature of 100 °C and pressure of 1.95 bar at exit. The density of water at these conditions is 961.5 kg/m3. Calculate the rate of work done at the exit of pipe.A pipe carries water at a flow rate of 90 L/s. Determine the minimum inside diameter sothat the average velocity of the fluid does not exceed: a. 3 m/s b. 2 m/s c. 1.4 m/s
- Calculate the water hammer in a steel pipe 4000 m long, 1 m in diameter and 9 mm thick. The flow rate is 1.5 m3/s and the closing time is 3 seconds.Water is issued vertically at the rate of 35 L/s through a 60 mm diameter nozzle. What is the the maximum height of water can reach.Determine the volume flow rate in m 3 /sec of water in a pipe section with adiameter of 2 inches and a pressure gage which reads 35 pounds per sq.inch (psi).
- The total flow in the pipe system in the figure is 0.86 m³/s. Assume f = 0.032 for all pipes. A. What is the flow in pipeline 1? (m³/s) B. What is the flow in pipeline 2? (m³/s) C. What is the flow in pipeline 3? (m³/s)Given below are pipe lengths, sizes and connections. All pipes have a friction factor of 0.020. If the flow from A to B is 8cfs. a.) Determine the head loss in feet in PIPE 1. b.) Determine the head loss in feet in PIPE 5. c.)Determine the flow in the upper branch pipe Q2 in cubic feet per second.diameter of pipe = 200mm Cc = 0.61Cv = 0.97 Considering the figure, what is the flow of water?
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