A condenser consists of 5 horizontal pipes of 3 meters length of 1/4 sch40 arranged in 6 rows on top of each other. Cooling water with a heat transfer coefficient of 2000W / m-K flows through the pipes. As the flow rate of water is very high, the water temperature is fixed to 35C. Saturated water vapor at 2 bar pressure condenses outside the pipes. Calculate the condenser capacity in kW.
A condenser consists of 5 horizontal pipes of 3 meters length of 1/4 sch40 arranged in 6 rows on top of each other. Cooling water with a heat transfer coefficient of 2000W / m-K flows through the pipes. As the flow rate of water is very high, the water temperature is fixed to 35C. Saturated water vapor at 2 bar pressure condenses outside the pipes. Calculate the condenser capacity in kW.
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.
Chapter9: Heat Transfer With Phase Change
Section: Chapter Questions
Problem 9.32P
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A condenser consists of 5 horizontal pipes of 3 meters length of 1/4 sch40 arranged in 6 rows on top of each other. Cooling water with a heat transfer coefficient of 2000W / m-K flows through the pipes. As the flow rate of water is very high, the water temperature is fixed to 35C. Saturated water vapor at 2 bar pressure condenses outside the pipes. Calculate the condenser capacity in kW.
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