a) Calculate the log-mean-temperature difference and value of overall heat transfer coefficient from the data provided in observation table#01. The data is collected by testing shell-and-tube heat exchanger having parallel/co-current flow arrangement on multi-heat exchanger unit. Note: The contact area for shell-and-tube heat exchanger is 0.3297 m². Take C-4.183KJ/kg°C and p=998.2 kg/m². Cool cool Hot water Hot water in Hot water out water Q: Cool water in U Q. Hot Water (LPM) tank temp. temp. T: temp. T3 (C) out LMTD "/m²c) Water temp. temp. Ts C) (LPM) (°C) 1 3 50 50 38 17 27 2. en
a) Calculate the log-mean-temperature difference and value of overall heat transfer coefficient from the data provided in observation table#01. The data is collected by testing shell-and-tube heat exchanger having parallel/co-current flow arrangement on multi-heat exchanger unit. Note: The contact area for shell-and-tube heat exchanger is 0.3297 m². Take C-4.183KJ/kg°C and p=998.2 kg/m². Cool cool Hot water Hot water in Hot water out water Q: Cool water in U Q. Hot Water (LPM) tank temp. temp. T: temp. T3 (C) out LMTD "/m²c) Water temp. temp. Ts C) (LPM) (°C) 1 3 50 50 38 17 27 2. en
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 10.13P
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Heat Exchangers
Heat exchangers are the types of equipment that are primarily employed to transfer the thermal energy from one fluid to another, provided that one of the fluids should be at a higher thermal energy content than the other fluid.
Heat Exchanger
The heat exchanger is a combination of two words ''Heat'' and ''Exchanger''. It is a mechanical device that is used to exchange heat energy between two fluids.
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