Determine the volumetric flow of water in m3/hr flowing in a pipe having a diameter of 40 mm through an orifice having a diameter of 20 mm. Manometer reading across the tapping is 15 cm of Hg. Assume correction factor = 1. Reynolds number Ra is 105 . Assume density of water = 1000 kg/m3 and kinematic viscosity is 10–2 stokes (cm2/sec). Also calculate the pressure difference at the tappings. Assume Cd = 0.61
Determine the volumetric flow of water in m3/hr flowing in a pipe having a diameter of 40 mm through an orifice having a diameter of 20 mm. Manometer reading across the tapping is 15 cm of Hg. Assume correction factor = 1. Reynolds number Ra is 105 . Assume density of water = 1000 kg/m3 and kinematic viscosity is 10–2 stokes (cm2/sec). Also calculate the pressure difference at the tappings. Assume Cd = 0.61
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Q.5 Determine the volumetric flow of water in m3/hr flowing in a pipe
having a diameter of 40 mm through an orifice having a diameter of 20 mm.
Manometer reading across the tapping is 15 cm of Hg. Assume correction
factor = 1. Reynolds number Ra is 105
. Assume density of water = 1000 kg/m3
and kinematic viscosity is 10–2 stokes (cm2/sec). Also calculate the pressure
difference at the tappings. Assume Cd = 0.61.
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