A ship’s steam turbine receives steam at a pressure of 700 [psia] and a velocity of 100 [ft/s]. The steam leaves the turbine at 27 in Hg vacuum with a velocity of 900 [ft/s]. The turbine entrance is 5 [ft] above the exit level. Find the power produced in [Btu/hr] if the mass flow rate of the steam is 500 [lb/hr] and the heat loss from the turbine is 5000 [Btu/hr]. The steam has the following properties:

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
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A ship’s steam turbine receives steam at a pressure of 700 [psia] and a velocity of 100 [ft/s]. The steam leaves the
turbine at 27 in Hg vacuum with a velocity of 900 [ft/s]. The turbine entrance is 5 [ft] above the exit level. Find the
power produced in [Btu/hr] if the mass flow rate of the steam is 500 [lb/hr] and the heat loss from the turbine is 5000 [Btu/hr]. The steam has the following properties:

Pressure
Temperature [°F]
Velocity [ft/s]
Specific Internal Energy [Btu/lb]
Specific Volume [ft³/lb]
Inlet
700 [psia]
1000
100
1358.7
1.202
Outlet
27 in Hg vac
114
900
951
214
Transcribed Image Text:Pressure Temperature [°F] Velocity [ft/s] Specific Internal Energy [Btu/lb] Specific Volume [ft³/lb] Inlet 700 [psia] 1000 100 1358.7 1.202 Outlet 27 in Hg vac 114 900 951 214
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