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Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels
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F. SELİMEFENDİGİL Et Al. , "Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels," Renewable Energy , vol.234, 2024

SELİMEFENDİGİL, F. Et Al. 2024. Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels. Renewable Energy , vol.234 .

SELİMEFENDİGİL, F., Okulu, D., & Oztop, H. F., (2024). Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels. Renewable Energy , vol.234.

SELİMEFENDİGİL, FATİH, Damla Okulu, And Hakan F. Oztop. "Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels," Renewable Energy , vol.234, 2024

SELİMEFENDİGİL, FATİH Et Al. "Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels." Renewable Energy , vol.234, 2024

SELİMEFENDİGİL, F. Okulu, D. And Oztop, H. F. (2024) . "Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels." Renewable Energy , vol.234.

@article{article, author={FATİH SELİMEFENDİGİL Et Al. }, title={Energy and exergy performance improvement of coupled PV–TEG module by using different shaped nano-enhanced cooling channels}, journal={Renewable Energy}, year=2024}