Water at 60°F is flowing through a reducing pipe fitting in the horizontal plane as shown below at a volumetric flow rate of Q = 4.5 ft/s at steady-state. The inlet has a diameter of D1 = 12 in. and a pressure of P1 = 7.0 psig while the outlet has a diameter D2 = 2.5 in. and a pressure of P2 = 1.5 psig. The weight of the fitting and water is W = 8.0 lbf. Determine the components of force in the x, y, and z directions required to hold the fitting stationary. Outlet from reducing fitting AY a ond sia vb BElo om wol nsno T08 Vwolod m niwoh 60° Inlet to reducing fitting

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
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Water at 60°F is flowing through a reducing pipe fitting in the
horizontal plane as shown below at a volumetric flow rate of
Q = 4.5 ft/s at steady-state. The inlet has a diameter of D1 = 12 in.
and a pressure of P1 = 7.0 psig while the outlet has a diameter
D2 = 2.5 in. and a pressure of P2 = 1.5 psig. The weight of the
fitting and water is W = 8.0 lbf. Determine the components of force
in the x, y, and z directions required to hold the fitting stationary.
Outlet from
reducing fitting
AY
a ond sia vb
BElo om wol nsno T08 Vwolod m
niwoh
60°
Inlet to
reducing
fitting
Transcribed Image Text:Water at 60°F is flowing through a reducing pipe fitting in the horizontal plane as shown below at a volumetric flow rate of Q = 4.5 ft/s at steady-state. The inlet has a diameter of D1 = 12 in. and a pressure of P1 = 7.0 psig while the outlet has a diameter D2 = 2.5 in. and a pressure of P2 = 1.5 psig. The weight of the fitting and water is W = 8.0 lbf. Determine the components of force in the x, y, and z directions required to hold the fitting stationary. Outlet from reducing fitting AY a ond sia vb BElo om wol nsno T08 Vwolod m niwoh 60° Inlet to reducing fitting
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