F. SELİMEFENDİGİL And H. F. Öztop, "Combined effects of bifurcation and magnetic field on the performance of phase change material installed cylinder with small inlet temperature perturbations during nanofluid convection," International Journal of Heat and Mass Transfer , vol.188, 2022
SELİMEFENDİGİL, F. And Öztop, H. F. 2022. Combined effects of bifurcation and magnetic field on the performance of phase change material installed cylinder with small inlet temperature perturbations during nanofluid convection. International Journal of Heat and Mass Transfer , vol.188 .
SELİMEFENDİGİL, F., & Öztop, H. F., (2022). Combined effects of bifurcation and magnetic field on the performance of phase change material installed cylinder with small inlet temperature perturbations during nanofluid convection. International Journal of Heat and Mass Transfer , vol.188.
SELİMEFENDİGİL, FATİH, And Hakan F. Öztop. "Combined effects of bifurcation and magnetic field on the performance of phase change material installed cylinder with small inlet temperature perturbations during nanofluid convection," International Journal of Heat and Mass Transfer , vol.188, 2022
SELİMEFENDİGİL, FATİH And Öztop, Hakan F. . "Combined effects of bifurcation and magnetic field on the performance of phase change material installed cylinder with small inlet temperature perturbations during nanofluid convection." International Journal of Heat and Mass Transfer , vol.188, 2022
SELİMEFENDİGİL, F. And Öztop, H. F. (2022) . "Combined effects of bifurcation and magnetic field on the performance of phase change material installed cylinder with small inlet temperature perturbations during nanofluid convection." International Journal of Heat and Mass Transfer , vol.188.
@article{article, author={FATİH SELİMEFENDİGİL And author={Hakan F. Öztop}, title={Combined effects of bifurcation and magnetic field on the performance of phase change material installed cylinder with small inlet temperature perturbations during nanofluid convection}, journal={International Journal of Heat and Mass Transfer}, year=2022}