A straight fin of uniform cross section is fabricatedfrom | StudySoup

Textbook Solutions for Fundamentals of Heat and Mass Transfer

Chapter 4 Problem 4.87

Question

A straight fin of uniform cross section is fabricatedfrom a material of thermal conductivity k?5W/m?K,thickness w?20 mm, and length L?200 mm. The finis very long in the direction normal to the page. Thebase of the fin is maintained at Tb?200C, and the tipcondition allows for convection (case A of Table 3.4),with h?500 W/m2?K and T??25C.(a) Assuming one-dimensional heat transfer in the fin,calculate the fin heat rate, , and the tiptemperature TL. Calculate the Biot number for thefin to determine whether the one-dimensionalassumption is valid.(b) Using the finite-element method of FEHT, perform atwo-dimensional analysis on the fin to determine thefin heat rate and tip temperature. Compare yourresults with those from the one-dimensional, analyti-cal solution of part (a). Use the View/TemperatureContoursoption to display isotherms, and discusskey features of the corresponding temperature fieldand heat flow pattern. Hint: In drawing the outline ofthe fin, take advantage of symmetry. Use a fine meshnear the base and a coarser mesh near the tip. Why?(c) Validate your FEHTmodel by comparing predic-tions with the analytical solution for a fin withthermal conductivities of k?50 W/m?K and500 W/m?K. Is the one-dimensional heat transferassumption valid for these conditions?

Solution

Step 1 of 4)

The first step in solving 4 problem number 87 trying to solve the problem we have to refer to the textbook question: A straight fin of uniform cross section is fabricatedfrom a material of thermal conductivity k?5W/m?K,thickness w?20 mm, and length L?200 mm. The finis very long in the direction normal to the page. Thebase of the fin is maintained at Tb?200C, and the tipcondition allows for convection (case A of Table 3.4),with h?500 W/m2?K and T??25C.(a) Assuming one-dimensional heat transfer in the fin,calculate the fin heat rate, , and the tiptemperature TL. Calculate the Biot number for thefin to determine whether the one-dimensionalassumption is valid.(b) Using the finite-element method of FEHT, perform atwo-dimensional analysis on the fin to determine thefin heat rate and tip temperature. Compare yourresults with those from the one-dimensional, analyti-cal solution of part (a). Use the View/TemperatureContoursoption to display isotherms, and discusskey features of the corresponding temperature fieldand heat flow pattern. Hint: In drawing the outline ofthe fin, take advantage of symmetry. Use a fine meshnear the base and a coarser mesh near the tip. Why?(c) Validate your FEHTmodel by comparing predic-tions with the analytical solution for a fin withthermal conductivities of k?50 W/m?K and500 W/m?K. Is the one-dimensional heat transferassumption valid for these conditions?
From the textbook chapter Two-Dimensional, Steady-State Conduction you will find a few key concepts needed to solve this.

Step 2 of 7)

Visible to paid subscribers only

Step 3 of 7)

Visible to paid subscribers only

Subscribe to view the
full solution

Title Fundamentals of Heat and Mass Transfer 7 
Author Theodore L. Bergman; Adrienne S. Lavine; Frank P. Incropera; David P. DeWitt
ISBN 9780470501979

A straight fin of uniform cross section is fabricatedfrom

Chapter 4 textbook questions

×

Login

Organize all study tools for free

Or continue with
×

Register

Sign up for access to all content on our site!

Or continue with

Or login if you already have an account

×

Reset password

If you have an active account we’ll send you an e-mail for password recovery

Or login if you have your password back