E3.18 Air [R = 1715, c, = 6003 ft lbf/(slug R)] flows steadily, as shown in Fig. E3.18, through a turbine which produces 700 hp. For the inlet and exit conditions shown, estimate (a) the exit ve- locity V₂ D₁ = 6 in P₁ = 150 lb/in² T₁ = 300° F V₁ = 100 ft/s Turbomachine w₂ = 700 hp D₂ = 6 in P₂ = 40 lb/in² T₂ = 35° F

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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E3.18
Air [R = 1715, c, = 6003 ft·lbf/(slug R)] flows steadily, as shown in Fig. E3.18, through a
turbine which produces 700 hp. For the inlet and exit conditions shown, estimate (a) the exit ve-
locity V₂ (
D₁ = 6 in
P₁ = 150 lb/in²
T₁ = 300°F
V₁ = 100 ft/s
Turbomachine
w₂ = 700 hp
D₂ = 6 in
P₂ = 40 lb/in²
T₂ = 35° F
Transcribed Image Text:E3.18 Air [R = 1715, c, = 6003 ft·lbf/(slug R)] flows steadily, as shown in Fig. E3.18, through a turbine which produces 700 hp. For the inlet and exit conditions shown, estimate (a) the exit ve- locity V₂ ( D₁ = 6 in P₁ = 150 lb/in² T₁ = 300°F V₁ = 100 ft/s Turbomachine w₂ = 700 hp D₂ = 6 in P₂ = 40 lb/in² T₂ = 35° F
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