A sharp-edged circular nozzle with a cross-sectional area of 10 cm2. Water flows from it under the action of a charge of 3m. The extrusion flowing from the nozzle decreases by 0.54 m before hitting the ground at a horizontal distance of 2.4 m from the nozzle. If the discharge is L/s 4.5, calculate the velocity and contraction coefficients of the nozzle. Do they match with theoretical values?
A sharp-edged circular nozzle with a cross-sectional area of 10 cm2. Water flows from it under the action of a charge of 3m. The extrusion flowing from the nozzle decreases by 0.54 m before hitting the ground at a horizontal distance of 2.4 m from the nozzle. If the discharge is L/s 4.5, calculate the velocity and contraction coefficients of the nozzle. Do they match with theoretical values?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:A sharp-edged circular nozzle
with a cross-sectional area of
10 cm2. Water flows from it
under the action of a charge
of 3m. The extrusion flowing
from the nozzle decreases
by 0.54 m before hitting the
ground at a horizontal distance
of 2.4 m from the nozzle. If the
discharge is L/s 4.5, calculate
the velocity and contraction
coefficients of the nozzle. Do
they match with theoretical
values?
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