The discharge of air through a 600-mm pipe is 4 m3/sec. Compute the mean velocity in m/sec
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The discharge of air through a 600-mm pipe is 4 m3/sec. Compute the mean velocity in m/sec.
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- Calculate the velocity if 10 m3/h of water flows through a 100 mm inside diameter pipe. If the pipe is reduced to 80 mm inside diameter.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 flows from a tank through a 23 cm diameter steel pipe. Determine (a) the discharge of water, (b) the distance from the inlet that ensures flow can be fully developed, and (c) the maximum flow velocity at the pipe center.
- A square tank 4 ft on a side and 10 ft high is filled to the brim with water.Find the time required for it to empty through a hole in the bottom 1 in.squared in area. The velocity of the water leaving the tank is 4.97√h ft/sec.All friction factor f = 0.02 All pipe lengths L = 250m Diameter of Pipe A = 400mm with Flow Rate at Pipe A = 500 L/s Diameter of Pipe B = 300mm Diameter of Pipe C = 200mm Refer to the illustration below14. Compute the resulting velocity of flow if 400 L/min of fluid slows through a DN 50 Schedule 40 pipe. for a DN 50 Schedule 80 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.Example: Find the velocity at the pipe center.waterWater flows through a one-inch diameter pipe at a velocity of 14.4 ft/s. The pipe divides into two 3/4-pipes. Find the flow rate in the two 3/4-inch pipes.
- 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/sA 40-mm-diameter circular pipe carries water at 20°C. Calculate the largest flow rate for which laminar flow can be expected (in m3 sec-1).A pipe line consists of successive lengths of 396-mm, 350-mm, and 280-mm pipe. With a continuous flow through the line of 376 Lit/sec of water, compute the mean velocity in 396 size of pipe. (m/s)