A double tube heat exchanger is made of copper (k=380 W/m.°C). Inner diameter of inner tube Di=1.2 cm, outer diameter D0=1.6 cm and the diameter of the outer tube is 3.0 cm. Convection heat transfer coefficient on the inner surface of the pipe hi=700 W/m2 .°C and the heat transfer coefficient on the outer surface h0= 1400 W/m2 .°C. on the pipe side contamination factor Rf,i=0.0005 m2 .°C/W and the contamination factor on the body side Rf,0 = 0.0002 m2 .°C/W as it is; a) The thermal resistance of the heat exchanger per unit length, b) Total heat transfer coefficients (U0 and Ui) taking into account the inner and outer surface areas of the pipe calculate.

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
8th Edition
ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
Publisher:Kreith, Frank; Manglik, Raj M.
Chapter10: Heat Exchangers
Section: Chapter Questions
Problem 10.32P
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A double tube heat exchanger is made of copper (k=380 W/m.°C). Inner diameter of inner tube Di=1.2 cm, outer diameter D0=1.6 cm and the diameter of the outer tube is 3.0 cm. Convection heat transfer coefficient on the inner surface of the pipe hi=700 W/m2 .°C and the heat transfer coefficient on the outer surface h0= 1400 W/m2 .°C. on the pipe side contamination factor Rf,i=0.0005 m2 .°C/W and the contamination factor on the body side Rf,0 = 0.0002 m2 .°C/W as it is; a) The thermal resistance of the heat exchanger per unit length, b) Total heat transfer coefficients (U0 and Ui) taking into account the inner and outer surface areas of the pipe calculate.

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