heated from 50 C to 75 C by an oil flowing through the tube.. The oil enters at 115 °C and leaves at Water flows at the rate of 65 kg/min through a double pipe counter flow heat exchanger. Water is 70 °C. The overall heat transfer co-efficient is 340 W/m²K. (Specific heat of water is 4186 J/kg. C, and the specific heat of the oil is 1780 j/kg.° C). calculate the following: 1. Heat exchanger area 2. Rate of heat transfer 3. Mass flow rate of oil

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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heated from 50 C to 75 C by an oil flowing through the tube.. The oil enters at 115 °C and leaves at
70 °C. The overall heat transfer co-efficient is 340 W/m²K.
Water flows at the rate of 65 kg/min through a double pipe counter flow heat exchanger. Water is
(Specific heat of water is 4186 J/kg. C, and the specific heat of the oil is 1780 j/kg. °C).
calculate the following:
1. Heat exchanger area
2. Rate of heat transfer
3. Mass flow rate of oil
Transcribed Image Text:heated from 50 C to 75 C by an oil flowing through the tube.. The oil enters at 115 °C and leaves at 70 °C. The overall heat transfer co-efficient is 340 W/m²K. Water flows at the rate of 65 kg/min through a double pipe counter flow heat exchanger. Water is (Specific heat of water is 4186 J/kg. C, and the specific heat of the oil is 1780 j/kg. °C). calculate the following: 1. Heat exchanger area 2. Rate of heat transfer 3. Mass flow rate of oil
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