In a reservoir system with a very large accumulation volume for the ideal fluid (water), a) Since the diameter of the ABCDEF outlet pipe is D = 20 cm, the flow rate through the pipe, b) Calculate the velocity, velocity height, relative pressure and pressure heights in the ABCDEF outlet pipe. c) Draw the relative energy and piezometer lines of the system. d) If the relative evaporation pressure of water is pv = -98.5 kPa, what can be z maximum? e) The relative evaporation pressure of the water is pv = -98.5 Pa and h = 6 m. Determine how much can be reduced without reason. f) Calculate the critical velocity value for cavitatio
In a reservoir system with a very large accumulation volume for the ideal fluid (water), a) Since the diameter of the ABCDEF outlet pipe is D = 20 cm, the flow rate through the pipe, b) Calculate the velocity, velocity height, relative pressure and pressure heights in the ABCDEF outlet pipe. c) Draw the relative energy and piezometer lines of the system. d) If the relative evaporation pressure of water is pv = -98.5 kPa, what can be z maximum? e) The relative evaporation pressure of the water is pv = -98.5 Pa and h = 6 m. Determine how much can be reduced without reason. f) Calculate the critical velocity value for cavitatio
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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In a reservoir system with a very large accumulation volume for the ideal fluid (water), a) Since the diameter of the ABCDEF outlet pipe is D = 20 cm, the flow rate through the pipe, b) Calculate the velocity, velocity height, relative pressure and pressure heights in the ABCDEF outlet pipe. c) Draw the relative energy and piezometer lines of the system. d) If the relative evaporation pressure of water is pv = -98.5 kPa, what can be z maximum? e) The relative evaporation pressure of the water is pv = -98.5 Pa and h = 6 m. Determine how much can be reduced without reason. f) Calculate the critical velocity value for cavitation.
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