Fundamentals of Heat and Mass Transfer
Fundamentals of Heat and Mass Transfer
7th Edition
ISBN: 9780470501979
Author: Frank P. Incropera, David P. DeWitt, Theodore L. Bergman, Adrienne S. Lavine
Publisher: Wiley, John & Sons, Incorporated
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Chapter 4, Problem 4.29P

Hot water is transported from a cogeneration power station to commercial and industrial users through steel pipes of diameter D = 150 mm, with each pipe centered in concrete ( k = 1.4 W/m K ) of square cross section ( w = 300 mm ) . The outer surfaces of the concrete are exposed to ambient air for which T = 0 ° C and h = 25 W/m 2 K .

Chapter 4, Problem 4.29P, Hot water is transported from a cogeneration power station to commercial and industrial users

  1. If the inlet temperature of water flowing through the pipe is T i = 90 ° C, what is the heat loss per unit length of pipe in proximity to the inlet? The temperature of the pipe T 1 may be assumed to be that of the inlet water.
  2. If the difference between the inlet and outlet temperatures of water flowing through a 100-m-long pipe is not to exceed 5°C, estimate the minimum allowable flow rate m . . A value of c = 4207 J/kg K may be used for the specific heat of the water.

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Procedure:1- Cartesian system, 2D3D,type of support2- Free body diagram3 - Find the support reactions4- If you find a negativenumber then flip the force5- Find the internal force3D∑Fx=0∑Fy=0∑Fz=0∑Mx=0∑My=0\Sigma Mz=02D\Sigma Fx=0\Sigma Fy=0\Sigma Mz=05- Use method of sectionand cut the elementwhere you want to findthe internal force andkeep either side of the
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Chapter 4 Solutions

Fundamentals of Heat and Mass Transfer

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