A. D. Tuncer Et Al. , "Upgrading the performance of shell and helically coiled heat exchangers with new flow path by using TiO2/water and CuO-TiO2/water nanofluids," INTERNATIONAL JOURNAL OF THERMAL SCIENCES , vol.183, 2023
Tuncer, A. D. Et Al. 2023. Upgrading the performance of shell and helically coiled heat exchangers with new flow path by using TiO2/water and CuO-TiO2/water nanofluids. INTERNATIONAL JOURNAL OF THERMAL SCIENCES , vol.183 .
Tuncer, A. D., Khanlari, A., SÖZEN, A., Gurbuz, E. Y., & VARİYENLİ, H. İ., (2023). Upgrading the performance of shell and helically coiled heat exchangers with new flow path by using TiO2/water and CuO-TiO2/water nanofluids. INTERNATIONAL JOURNAL OF THERMAL SCIENCES , vol.183.
Tuncer, Azim Et Al. "Upgrading the performance of shell and helically coiled heat exchangers with new flow path by using TiO2/water and CuO-TiO2/water nanofluids," INTERNATIONAL JOURNAL OF THERMAL SCIENCES , vol.183, 2023
Tuncer, Azim D. Et Al. "Upgrading the performance of shell and helically coiled heat exchangers with new flow path by using TiO2/water and CuO-TiO2/water nanofluids." INTERNATIONAL JOURNAL OF THERMAL SCIENCES , vol.183, 2023
Tuncer, A. D. Et Al. (2023) . "Upgrading the performance of shell and helically coiled heat exchangers with new flow path by using TiO2/water and CuO-TiO2/water nanofluids." INTERNATIONAL JOURNAL OF THERMAL SCIENCES , vol.183.
@article{article, author={Azim Dogus Tuncer Et Al. }, title={Upgrading the performance of shell and helically coiled heat exchangers with new flow path by using TiO2/water and CuO-TiO2/water nanofluids}, journal={INTERNATIONAL JOURNAL OF THERMAL SCIENCES}, year=2023}