A counter-flow double-pipe heat exchanger is to heat water from 20°C to80°C at a rate of 1.2 kg/s. The heating is to be accomplishedby geothermal water available at 160°C at a mass flow rate of 2 kg/s. Theinner tube is thin-walled and has a diameter of 1.5 cm. The overall heat transfercoefficient of the heat exchanger is 640 W/m2?K. Using the effectiveness–NTUmethod, determine the length of the heat exchanger required to achieve thedesired heating.

College Physics
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Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter11: Energy In Thermal Processes
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Problem 40P: The thermal conductivities of human tissues vary greatly. Fat and skin have conductivities of about...
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A counter-flow double-pipe heat exchanger is to heat water from 20°C to
80°C at a rate of 1.2 kg/s. The heating is to be accomplished
by geothermal water available at 160°C at a mass flow rate of 2 kg/s. The
inner tube is thin-walled and has a diameter of 1.5 cm. The overall heat transfer
coefficient of the heat exchanger is 640 W/m2?K. Using the effectiveness–NTU
method, determine the length of the heat exchanger required to achieve the
desired heating.

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