A nozzle is bolted onto a pipe by the flanged joint as shown in the Agure. The flowing fluid is water. The cross-sectional area perpendicular to the flow at point 1 is 12 in² and at point 2 is 3 in². At point 2 the flow is open to the atmosphere. The pressure at point 1 is 40 psig. (a) Calculate the exit velocity (i.e., V₂). b) Calculate the mass flow rate. c) Calculate the magnitude of the force on the support (i.e., the agnitude of the force tending to tear the nozzle off of the pipe). Water Pipe 31n² Nozzle

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
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A nozzle is bolted onto a pipe by the flanged joint as shown in the
Agure. The flowing fluid is water. The cross-sectional area perpendicular to
the flow at point 1 is 12 in² and at point 2 is 3 in². At point 2 the flow is open
to the atmosphere. The pressure at point 1 is 40 psig.
(a) Calculate the exit velocity (i.e., V₂).
(b) Calculate the mass flow rate.
(c) Calculate the magnitude of the force on the support (i.e., the
magnitude of the force tending to tear the nozzle off of the pipe).
Water
Pipe
#6
31n²
Nozzle
Transcribed Image Text:A nozzle is bolted onto a pipe by the flanged joint as shown in the Agure. The flowing fluid is water. The cross-sectional area perpendicular to the flow at point 1 is 12 in² and at point 2 is 3 in². At point 2 the flow is open to the atmosphere. The pressure at point 1 is 40 psig. (a) Calculate the exit velocity (i.e., V₂). (b) Calculate the mass flow rate. (c) Calculate the magnitude of the force on the support (i.e., the magnitude of the force tending to tear the nozzle off of the pipe). Water Pipe #6 31n² Nozzle
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