The figure below provides steady-state data for water vapor flowing through a piping configuration where V1 = 20 m/s and T1 = 5 At each exit, the volumetric flow rate, pressure, and temperature are equal.

Elements Of Electromagnetics
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The figure below provides steady-state data for water vapor flowing through a piping configuration where V1 = 20 m/s and T1 = 520°C.
At each exit, the volumetric flow rate, pressure, and temperature are equal.
P2= 4.8 bar
T = 320°C
1
Water vapor
(AV)2 = (AV)3
Aj = 0.2 m?
P1 = 5 bar
3
P3= 4.8 bar
T3 = 320°C
Determine the mass flow rate at the inlet and exits, each in kg/s.
i
! kg/s
n2 =
i
! kg/s
n3 =
i
! kg/s
Transcribed Image Text:The figure below provides steady-state data for water vapor flowing through a piping configuration where V1 = 20 m/s and T1 = 520°C. At each exit, the volumetric flow rate, pressure, and temperature are equal. P2= 4.8 bar T = 320°C 1 Water vapor (AV)2 = (AV)3 Aj = 0.2 m? P1 = 5 bar 3 P3= 4.8 bar T3 = 320°C Determine the mass flow rate at the inlet and exits, each in kg/s. i ! kg/s n2 = i ! kg/s n3 = i ! kg/s
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