M. Balcilar Et Al. , "Artificial neural network techniques for the determination of condensation heat transfer characteristics during downward annular flow of R134a inside a vertical smooth tube," INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.38, no.1, pp.75-84, 2011
Balcilar, M. Et Al. 2011. Artificial neural network techniques for the determination of condensation heat transfer characteristics during downward annular flow of R134a inside a vertical smooth tube. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.38, no.1 , 75-84.
Balcilar, M., DALKILIÇ, A. S., & WONGWISES, S., (2011). Artificial neural network techniques for the determination of condensation heat transfer characteristics during downward annular flow of R134a inside a vertical smooth tube. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.38, no.1, 75-84.
Balcilar, Muhammet, Ahmet Selim DALKILIÇ, And S. WONGWISES. "Artificial neural network techniques for the determination of condensation heat transfer characteristics during downward annular flow of R134a inside a vertical smooth tube," INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.38, no.1, 75-84, 2011
Balcilar, Muhammet Et Al. "Artificial neural network techniques for the determination of condensation heat transfer characteristics during downward annular flow of R134a inside a vertical smooth tube." INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.38, no.1, pp.75-84, 2011
Balcilar, M. DALKILIÇ, A. S. And WONGWISES, S. (2011) . "Artificial neural network techniques for the determination of condensation heat transfer characteristics during downward annular flow of R134a inside a vertical smooth tube." INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.38, no.1, pp.75-84.
@article{article, author={Muhammet BALCILAR Et Al. }, title={Artificial neural network techniques for the determination of condensation heat transfer characteristics during downward annular flow of R134a inside a vertical smooth tube}, journal={INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER}, year=2011, pages={75-84} }