A. S. DALKILIÇ And S. Wongwises, "Validation of void fraction models and correlations using a flow pattern transition mechanism model in relation to the identification of annular vertical downflow in-tube condensation of R134a," INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.37, no.7, pp.827-834, 2010
DALKILIÇ, A. S. And Wongwises, S. 2010. Validation of void fraction models and correlations using a flow pattern transition mechanism model in relation to the identification of annular vertical downflow in-tube condensation of R134a. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.37, no.7 , 827-834.
DALKILIÇ, A. S., & Wongwises, S., (2010). Validation of void fraction models and correlations using a flow pattern transition mechanism model in relation to the identification of annular vertical downflow in-tube condensation of R134a. INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.37, no.7, 827-834.
DALKILIÇ, Ahmet, And S. Wongwises. "Validation of void fraction models and correlations using a flow pattern transition mechanism model in relation to the identification of annular vertical downflow in-tube condensation of R134a," INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.37, no.7, 827-834, 2010
DALKILIÇ, Ahmet S. And Wongwises, S.. "Validation of void fraction models and correlations using a flow pattern transition mechanism model in relation to the identification of annular vertical downflow in-tube condensation of R134a." INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.37, no.7, pp.827-834, 2010
DALKILIÇ, A. S. And Wongwises, S. (2010) . "Validation of void fraction models and correlations using a flow pattern transition mechanism model in relation to the identification of annular vertical downflow in-tube condensation of R134a." INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER , vol.37, no.7, pp.827-834.
@article{article, author={Ahmet Selim DALKILIÇ And author={S. Wongwises}, title={Validation of void fraction models and correlations using a flow pattern transition mechanism model in relation to the identification of annular vertical downflow in-tube condensation of R134a}, journal={INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER}, year=2010, pages={827-834} }