Browse > Article

Object-oriented Development of Computer Code for Inverse Heat Conduction Problem  

Kim, Sun-Kyoung (College of Engineering, Seoul National University of Technology)
Publication Information
Abstract
This paper suggests a method for developing computer code that can solve inverse heat conduction problem, The concept of the object-oriented development is employed to implement the computer code in an efficient and flexible fashion. The software design is conducted based on the unified modeling language. Furthermore, this paper also explains how to implement the deliverable computer code using the existing software development tools.
Keywords
Inverse heat conduction problem(IHCP); Object-oriented development (OOP); Unified modeling language (UML);
Citations & Related Records

Times Cited By Web Of Science : 3  (Related Records In Web of Science)
연도 인용수 순위
  • Reference
1 Visual Numerics, 'FORTRAN subroutines for mathematical applications,' Houston, Texas, Visual Numerics, 1994
2 Alifanov, M., 'Inverse Heat Transfer Problem,' Springer-Verlag, 1994
3 Booch, G., Rumbaugh, J. and Jacobson, I., 'The Unified Modeling Language User Guide,' 1st Ed., Addison-Wesley, 1998
4 Quatrani, T., 'Visual Modeling with Rational Rose 2002 and UML,' Addison-Wesley, 2002
5 Arora, J. S., 'Introduction to Optimum Design,' McGraw-Hill, 1989
6 Hsieh, C. K. and Kassab, A. J., 'A general mothod for the solution of inverse heat conduction problems with partially unkown geometries,' International Journal of. Heat Mass Transfer, Vol. 29, No.1, pp. 47-58, 1986   DOI   ScienceOn
7 Kim, S. K. and Lee, W. I., 'Implementation of inverse method for estimating undetermined boundary in a two-dimensional slab based on temperature measurement,' Numerical Heat Transfer, Part A, Vol. 46, pp. 515-523, 2004   DOI   ScienceOn
8 Gamma, E., Helm, R., Johnson, R. and Vlissides, J., 'Design Patterns,' 1st Ed., Addison-Wesley, 1995
9 Kim, S. K. and Daniel, I. M., 'Solution to inverse heat conduction problem in nanoscale using sequential method,' Numerical Heat Transfer, Part B, Vol. 44, pp. 439-456, 2003   DOI   ScienceOn
10 Folwer, M., 'UML Distilled: A Brief Guide to the Standard Object Modeling Language,' 3rd Ed.,. Addison-Wesley, 2003
11 Ozisik, M. N. and Orlande, H. R. B., 'Inverse Heat Transfer: Fundamentals and Applications,' Taylor & Francis, 2000
12 Lawrence, C., Zhou, Z. L. and Tits, A. L., 'User's Guide for CFSQP Version 2.5,' University of Maryland, 1997
13 Beck, J. V., Blackwell, B. and St. Clair Jr., C. R., 'Inverse Heat Conduction,' Wiley, 1985
14 Kurpisz, K. and Nowak, A. J., 'Inverse Thermal Problems,' Computational Mechanics Publications, 1995
15 Kim, S. K. and Lee, W. I., 'Inverse estimation of steady-state surface temperature on a three-dimensional body,' International Journal of Numerical Methods for Heat & Fluid Flow, Vol. 12, No. 8, pp. 1032-1050, 2002   DOI   ScienceOn
16 Flach, G. P. and Ozişik, M. N.,'Inverse heat conduction problem of simultaneously estimating spatially varying thermal conductivity and heat capacity per unit volume,' Numerical Heat Transfer, Part A, Vol. 16, pp. 249-266, 1989   DOI
17 Coad, P. and Nicola, J., 'Object-Oriented Programming,' Pearson Education, 1993