:A one-shell pass and 4-tube passes heat exchanger is used to heat glycerin (C, = 2.48 kJ/kg °C), flowing through the shell-side, from 15°C to 55° C. The hot fluid is 5 kg/s water (C, = 4.195 kJ/kg °C) which enters the tube-side at 100°C and exits at 55°C. The %3D tube-side consists of 5 thin-walled tubes per pass, each tube is 1.5 cm in diameter and 1.0 m long. Determine the mass flow rate of glycerin m', and the overall heat transfer coefficient of the heat exchanger.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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:A one-shell pass and 4-tube passes heat exchanger is used to heat glycerin
(C, = 2.48 kJ/kg °C), flowing through the shell-side, from 15°C to 55° C. The hot fluid is
5 kg/s water (C, = 4.195 kJ/kg °C) which enters the tube-side at 100°C and exits at 55°C. The
3D
tube-side consists of 5 thin-walled tubes per pass, each tube is 1.5 cm in diameter and 1.0 m
long. Determine the mass flow rate of glycerin m', and the overall heat transfer coefficient of
the heat exchanger.
Transcribed Image Text::A one-shell pass and 4-tube passes heat exchanger is used to heat glycerin (C, = 2.48 kJ/kg °C), flowing through the shell-side, from 15°C to 55° C. The hot fluid is 5 kg/s water (C, = 4.195 kJ/kg °C) which enters the tube-side at 100°C and exits at 55°C. The 3D tube-side consists of 5 thin-walled tubes per pass, each tube is 1.5 cm in diameter and 1.0 m long. Determine the mass flow rate of glycerin m', and the overall heat transfer coefficient of the heat exchanger.
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