Boundary Control of Temperature Distribution in a Rectangular Functionally Graded Material Plate

Author:

Rastgoftar Hossein1,Eghtesad Mohammad2,Khayatian Alireza2

Affiliation:

1. Department of Mechanical Engineering, Shiraz University, Shiraz, Fars 71348-51154, Iran

2. Departments of Mechanical and Electrical Engineering, Shiraz University, Shiraz, Fars 71348-51154, Iran

Abstract

In this paper, an analytical method and a partial differential equation based solution to control temperature distribution for functionally graded (FG) plates is introduced. For the rectangular FG plate under consideration, it is assumed that the material properties such as thermal conductivity, density, and specific heat capacity vary in the width direction, and the governing heat conduction equation of the plate is a second-order partial differential equation. Using Lyapunov’s theorem, it is shown that by applying controlled heat flux through the boundary of the domain, the temperature distribution of the plate will approach a desired steady-state distribution. Numerical simulation is provided to verify the effectiveness of the proposed method such that by applying the boundary transient heat flux, in-domain distributed temperature converges to its desired steady-state temperature.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference23 articles.

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3. Inverse Heat Conduction Problem Solution via Second-Order Design Sensitivities and Newton’s Method;Scheuing;Inverse Probl. Sci. Eng.

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