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Inverse determination of thermal conductivity using semi-discretization method

Chang, C. -. and Chang, M.
2009
Applied Mathematical Modelling, 33 (3), pp. 1644-1655


Chang, C. -. and Chang, M., (2009), "Inverse determination of thermal conductivity using semi-discretization method", Applied Mathematical Modelling, 33 (3), pp. 1644-1655.
Abstract:
Scopus

EXPORT DATE: 1 August 2012

Chang, C.-L , Chang, M

Inverse determination of thermal conductivity using semi-discretization method

(2009) Applied Mathematical Modelling, 33 (3), pp. 1644-1655. Cited 2 times.

Http://www.scopus.com/inward/record.url?eid=2-s2.0-55749083513&partnerID=40&md5=e13aa25b352c1df2cde1f2d817da695d

In this work a semi-discretization method is presented for the inverse determination of spatially- and temperature-dependent thermal conductivity in a one-dimensional heat conduction domain without internal temperature measurements. The temperature distribution is approximated as a polynomial function of position using boundary data. The derivatives of temperature in the differential heat conduction equation are taken derivative of the approximated temperature function, and the derivative of thermal conductivity is obtained by finite difference technique. The heat conduction equation is then converted into a system of discretized linear equations. The unknown thermal conductivity is estimated by directly solving the linear equations. The numerical procedures do not require prior information of functional form of thermal conductivity. The close agreement between estimated results and exact solutions of the illustrated examples shows the applicability of the proposed method in estimating spatially- and temperature-dependent thermal conductivity in inverse heat conduction problem. ? 2008 Elsevier Inc. All rights reserved.

AUTHOR KEYWORDS: Inverse heat conduction problem; Semi-discretization method; Thermal conductivity

DOCUMENT TYPE: Article

SOURCE: Scopus


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