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Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity
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F. SELİMEFENDİGİL And H. F. Öztop, "Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity," International Journal of Heat and Mass Transfer , vol.183, 2022

SELİMEFENDİGİL, F. And Öztop, H. F. 2022. Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity. International Journal of Heat and Mass Transfer , vol.183 .

SELİMEFENDİGİL, F., & Öztop, H. F., (2022). Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity. International Journal of Heat and Mass Transfer , vol.183.

SELİMEFENDİGİL, FATİH, And Hakan F. Öztop. "Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity," International Journal of Heat and Mass Transfer , vol.183, 2022

SELİMEFENDİGİL, FATİH And Öztop, Hakan F. . "Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity." International Journal of Heat and Mass Transfer , vol.183, 2022

SELİMEFENDİGİL, F. And Öztop, H. F. (2022) . "Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity." International Journal of Heat and Mass Transfer , vol.183.

@article{article, author={FATİH SELİMEFENDİGİL And author={Hakan F. Öztop}, title={Thermal management and performance improvement by using coupled effects of magnetic field and phase change material for hybrid nanoliquid convection through a 3D vented cylindrical cavity}, journal={International Journal of Heat and Mass Transfer}, year=2022}