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- The diameter of a pipe gradually reduces from 1 m to 0.7 m. The pressure intensity atthe center line of 1 m section is 8and rate of flow of water through the pipe is600 liters/s.,I. Find the intensity of pressure at the center line of 0.7 m section.II. Determine the force exerted by flowing water on transition of the pipe.The diameter of a pipe at the section 1 and 2 are 10 cm and 15 cm respectively. Find the discharge through the pipe if the velocity of water flowing through the pipe at section 1 is 5m/sec. Determine the velocity at section 2.Reservoir A (Elev. 106 m.) to the turbine is connected by a 638 mm pipe. Another 638 mm pipe connects the turbine to Reservoir B (Elev. 85 m.). The loss of head from A to 1 is 5 times the velocity head of the pipe and the loss of head from 2 to B is 0.2 times the velocity head of the pipe. If water is being discharged at a rate of 741 L/s, determine the horsepower required for the turbine to operate. (Assume 100% efficiency.)
- A horizontal pipe discharges at point A a stream of water into a reservoir. Express the radius of curvature of the stream at point B in terms of the magnitudes of the velocities V₁ and VB. m1Reservoir A and B have elevations of 100 m and 160 mm respectively. A pump is installed near reservoir A to pump water from A to B. The rate of flow in the pipes is 650 L/s and the pipe length of 1000 m with a diameter of 600 mm. If C= 120 what is the Energy added by the pump?A hose discharges water from a tank as shown. Find the rate of discharge and the pressure head at point "B" if the hose has a uniform diameter of 6 inches. Assume that the energy loss in the hose due to friction is zero. All dimensions given in the diagram have units of feet. Show all your work in detail. B м 16'
- Water is flowing through the nozzle of the sprinkler at a constant rate of 3 m/sec when the sprinkler rotates with an angular velocity, 2 rad/sec, and an angular acceleration, Ö= 3 rad/sec². Assuming the nozzle lies in the vertical plane, determine the magnitude of the acceleration of a water particle as it exits the open end, r = 0.2 meters. Present your answer in m/sec² using 3 significant figures. r = 0.2 m Make NEThe diameter of the pipe at point B is larger than at point A. - At which point is the water speed greater? Point B Point A It is the same at both points. Cannot be determined from the information given.Water is flowing through the nozzle of the sprinkler at a constant rate of 3 m/sec when the sprinkler rotates with an angular velocity, 2 rad/sec, and an angular acceleration, 0 = 3 rad/sec². Assuming the nozzle lies in the vertical plane, determine the magnitude of the acceleration of a water particle as it exits the open end, r = 0.2 meters. Present your answer in m/sec² using 3 significant figures. r= 0.2 m PE
- Water flows at a rate of 3 m3/s through a 300 mm diameter pipe in which there is a 90o bend. if the pressure at the entrance to the bend is 450 kN/m2 (absolute), determine the total force necessary to anchor (kN) the bend. Friction losses can be neglected.A pump is installed in a pipe system, where at the suction side 1.0 m below the pump, an open manometer reads a vacuum of 20 cm of mercury. The pipe is 10 cm in diameter and the flow is 35 L/s of water. Find the total energy at the location of the manometer, relative to a datum, through the pump. include your free body diagram A.12.74 m B.-4.67 m C.-2.72 m D.2.56A pipe of diameter 10cm conveying 200 liters/s of water has bend of angle (θ = 90⁰) and θ = 0⁰ through horizontal plane. Find theresultant force exerted on the bend if the pressure at the inlet and outlet of the bend are 15N/cm2 and 10 N/cm2respectively