An Inverse Problem Solution for Thermal Conductivity Reconstruction
Author:
Affiliation:
1. Department of Natural Sciences Southern University at New Orleans 6400 Press Drive, New Orleans, LA 70126, USA
2. Department of Mathematical and Physical Sciences Concordia University of Edmonton 7128 Ada Blvd, Edmonton, AB, T5B 4E4, CANADA
Abstract
Publisher
World Scientific and Engineering Academy and Society (WSEAS)
Subject
Computer Science Applications,Control and Systems Engineering
Reference21 articles.
1. Brociek R., Słota D., Wituła R., Reconstruction of the Thermal Conductivity Coefficient in the Time Fractional Diffusion Equation. In: Latawiec K., Łukaniszyn M., Stanisławski R. (eds) Advances in Modelling and Control of Noninteger-Order Systems. Lecture Notes in Electrical Engineering, Springer, Cham 320, (2015), pp. 239–247
2. Brociek R., Słota D., Reconstruction of the thermal conductivity coefficient in the space fractional heat conduction equation, Thermal Science 21 (1 Part A), (2017), pp. 81–88
3. Christov C. I., Marinov T. T., Identification of Heat-conduction Coefficient via Method of Variational Imbedding, Mathematical and Computer Modelling, 27 (3) (1998), pp. 109–116
4. Engl H.W., Zou J., A new approach to convergence rate analysis of Tikhonov regularization for parameter identification in heat conduction, Inverse Problems, 16 (2000), pp. 1907–1923
5. Hadała B., Malinowski Z., Szajding A., Solution strategy for the inverse determination of the specially varying heat transfer coefficient, International Journal of Heat and Mass Transfer, 104 (2017), pp. 993–1007
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