Ketchup is being cooled from 90oC to 20oC in a double-pipe heat exchanger. The overall heat transfer coefficient based on the inside surface area is 600 W/m2oC. The ketchup has a specific heat of 3.8 J/kgoC and is being cooled at the rate of 45 kg/hr. Cooling water enters in countercurrent flow at 10oC and leave the heat exchanger t 16oC. For this problem, b) Calculate the quantity of cooling water required. The specific heat of water is 4.186 kJ/kgoC. In kg/s
Ketchup is being cooled from 90oC to 20oC in a double-pipe heat exchanger. The overall heat transfer coefficient based on the inside surface area is 600 W/m2oC. The ketchup has a specific heat of 3.8 J/kgoC and is being cooled at the rate of 45 kg/hr. Cooling water enters in countercurrent flow at 10oC and leave the heat exchanger t 16oC. For this problem, b) Calculate the quantity of cooling water required. The specific heat of water is 4.186 kJ/kgoC. In kg/s
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Ketchup is being cooled from 90oC to 20oC in a double-pipe heat exchanger. The overall heat transfer coefficient based on the inside surface area is 600 W/m2oC. The ketchup has a specific heat of 3.8 J/kgoC and is being cooled at the rate of 45 kg/hr. Cooling water enters in countercurrent flow at 10oC and leave the heat exchanger t 16oC.
For this problem,
b) Calculate the quantity of cooling water required. The specific heat of water is 4.186 kJ/kgoC.
In kg/s
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