A countercurrent heat exchanger was designed with an overall heat transfer coefficient of 900 kcal/hr-m-°C. The heat transfer area of a newly designed heat exchanger is 7 m². Over a period of time, its overall heat transfer coefficient has fallen to 450 kcal/hr mt²°C due to fouling. Given: Specific heat of hot fluid = 1 kcal/kg °C Hot fluid entering temperature = 90°C Hot fluid leaving temperature = 65°C Cold fluid entering temperature = 25°C Cold fluid leaving temperature = 40°C Required: How much additional area is to be added to maintain the same rate of heat transfer?   Need asap pls

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 countercurrent heat exchanger was designed with an overall heat transfer coefficient of 900 kcal/hr-m-°C. The heat transfer area of a newly designed heat exchanger is 7 m². Over a period of time, its overall heat transfer coefficient has fallen to 450 kcal/hr mt²°C due to fouling.

Given:

Specific heat of hot fluid = 1 kcal/kg °C

Hot fluid entering temperature = 90°C

Hot fluid leaving temperature = 65°C

Cold fluid entering temperature = 25°C

Cold fluid leaving temperature = 40°C

Required: How much additional area is to be added to maintain the same rate of heat transfer?

 

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