M. S. Yesilyurt Et Al. , "Co-simulation-based conventional exergy evaluation of a hybrid energy generation-vanadium redox flow battery-air source heat pump system," Energy , vol.281, 2023
Yesilyurt, M. S. Et Al. 2023. Co-simulation-based conventional exergy evaluation of a hybrid energy generation-vanadium redox flow battery-air source heat pump system. Energy , vol.281 .
Yesilyurt, M. S., Ozcan, H. G., & YAVAŞOĞLU, H. A., (2023). Co-simulation-based conventional exergy evaluation of a hybrid energy generation-vanadium redox flow battery-air source heat pump system. Energy , vol.281.
Yesilyurt, Muhammed, Huseyin Gunhan Ozcan, And Hüseyin Ayhan YAVAŞOĞLU. "Co-simulation-based conventional exergy evaluation of a hybrid energy generation-vanadium redox flow battery-air source heat pump system," Energy , vol.281, 2023
Yesilyurt, Muhammed S. Et Al. "Co-simulation-based conventional exergy evaluation of a hybrid energy generation-vanadium redox flow battery-air source heat pump system." Energy , vol.281, 2023
Yesilyurt, M. S. Ozcan, H. G. And YAVAŞOĞLU, H. A. (2023) . "Co-simulation-based conventional exergy evaluation of a hybrid energy generation-vanadium redox flow battery-air source heat pump system." Energy , vol.281.
@article{article, author={Muhammed Samil Yesilyurt Et Al. }, title={Co-simulation-based conventional exergy evaluation of a hybrid energy generation-vanadium redox flow battery-air source heat pump system}, journal={Energy}, year=2023}