A tube bank uses a staggered arrangement of D=0.9 cm diameter tubes with S7=2 cm and SL=1.7 cm. There are 23 rows of tubes in flow direction with 14 tubes in each row. Consider an application for which carbon dioxide enters the tube bank with a velocity of V=2.3 m/s and temperature of T;=307 K. The surface temperature of the tubes is T=231 K and the tube length is L=51 cm. What is the outlet temperature of the carbon dioxide at the exit of the tube bank, in K? Properties of carbon dioxide: p=1.963 kg/m3 Pi=1.871 kg/m3 C,=841 J/(kgK) µ=1.389×10-5 kg/(ms) k=0.015 W/(mK) Pr=0.78 Pr,=0.81

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Heat transfer
A tube bank uses a staggered arrangement of D=0.9 cm diameter tubes with ST=2 cm and SL=1.7 cm.
There are 23 rows of tubes in flow direction with 14 tubes in each row. Consider an application for
which carbon dioxide enters the tube bank with a velocity of V=2.3 m/s and temperature of T;=307 K.
The surface temperature of the tubes is T3=231 Kand the tube length is L=51 cm. What is the outlet
temperature of the carbon dioxide at the exit of the tube bank, in K?
Properties of carbon dioxide:
p=1.963 kg/m3
Pi=1.871 kg/m3
C,=841 J/(kgK)
µ=1.389x10-5 kg/(ms)
k=0.015 W/(mK)
Pr=0.78
Pr,=0.81
Transcribed Image Text:A tube bank uses a staggered arrangement of D=0.9 cm diameter tubes with ST=2 cm and SL=1.7 cm. There are 23 rows of tubes in flow direction with 14 tubes in each row. Consider an application for which carbon dioxide enters the tube bank with a velocity of V=2.3 m/s and temperature of T;=307 K. The surface temperature of the tubes is T3=231 Kand the tube length is L=51 cm. What is the outlet temperature of the carbon dioxide at the exit of the tube bank, in K? Properties of carbon dioxide: p=1.963 kg/m3 Pi=1.871 kg/m3 C,=841 J/(kgK) µ=1.389x10-5 kg/(ms) k=0.015 W/(mK) Pr=0.78 Pr,=0.81
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