Question 3. As shown in the figure that the pipe section is placed on a horizontal plane. At flow of ideal fluid, the diameters, velocities and gauge pressure are given as Dı=2.00 m, D2=1.50 m, D3= 1.0 m, Vı=6 + a/10 m/s, V2=4 + b/10 m/s, pı=300 + c*10 kN/m² dir. a) Calculate the flow rates of each pipe. b) Find the gauge pressures at (2) ve (3). c) Determine the direction and magnitude of the force acting by the flow. (ywater = 9,81 kN/m3) 120° VI

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter15: Fluid Mechanics
Section: Chapter Questions
Problem 37P: A horizontal pipe 10.0 cm in diameter has a smooth reduction to a pipe 5.00 cm in diameter. If the...
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a = 6 , b = 4 , c = 6

Question 3. As shown in the figure that the pipe section is placed on a horizontal plane. At
flow of ideal fluid, the diameters, velocities and gauge pressure are given as Dı=2.00 m, D2=1.50
m, D3= 1.0 m, V1=6 + a/10 m/s, V2=4 + b/10 m/s, pı=300 + c*10 kN/m² dir.
a) Calculate the flow rates of each pipe.
b) Find the gauge pressures at (2) ve (3).
c) Determine the direction and magnitude of the force acting by the flow. (ywater = 9,81
kN/m³)
120
VI
Transcribed Image Text:Question 3. As shown in the figure that the pipe section is placed on a horizontal plane. At flow of ideal fluid, the diameters, velocities and gauge pressure are given as Dı=2.00 m, D2=1.50 m, D3= 1.0 m, V1=6 + a/10 m/s, V2=4 + b/10 m/s, pı=300 + c*10 kN/m² dir. a) Calculate the flow rates of each pipe. b) Find the gauge pressures at (2) ve (3). c) Determine the direction and magnitude of the force acting by the flow. (ywater = 9,81 kN/m³) 120 VI
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