Steam at P1 = 160 bar and T1 = 480C enters a turbine operating at steady with a volumetric flowrate of (AV), = 160 m³ /min The outflow is split between two pipes: 22% of the mass flow leaves from an outlet at P, = 5 bar and T2 = 240°C with a velocity of V, = 26 m/s, while the remainder exits from another outlet at P3 0.1 bar, X3 = 81%, and V3 = 390 m/s. Determine the diameter of each outlet, and report the ratio da/da %3D %3! %3D %3D

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Steam at P1
= 160 bar and T, = 480°C enters a turbine operating at steady-state
with a volumetric flowrate of (AV), = 160 m³ /min - The outflow is split between
two pipes: 22% of the mass flow leaves from an outlet at P, = 5 bar and T, = 240°C
with a velocity of V, = 26 m/s, while the remainder exits from another outlet at P3
0.1 bar, X3 = 81%, and V3 = 390 m/s. Determine the diameter of each outlet, and
report the ratio d2/d3.
%3D
%3D
%3D
Transcribed Image Text:Steam at P1 = 160 bar and T, = 480°C enters a turbine operating at steady-state with a volumetric flowrate of (AV), = 160 m³ /min - The outflow is split between two pipes: 22% of the mass flow leaves from an outlet at P, = 5 bar and T, = 240°C with a velocity of V, = 26 m/s, while the remainder exits from another outlet at P3 0.1 bar, X3 = 81%, and V3 = 390 m/s. Determine the diameter of each outlet, and report the ratio d2/d3. %3D %3D %3D
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