M. H. Ahmadi Et Al. , "Exergetic sustainability evaluation and multi-objective optimization of performance of an irreversible nanoscale Stirling refrigeration cycle operating with Maxwell–Boltzmann gas," Renewable and Sustainable Energy Reviews , vol.78, pp.80-92, 2017
Ahmadi, M. H. Et Al. 2017. Exergetic sustainability evaluation and multi-objective optimization of performance of an irreversible nanoscale Stirling refrigeration cycle operating with Maxwell–Boltzmann gas. Renewable and Sustainable Energy Reviews , vol.78 , 80-92.
Ahmadi, M. H., Ahmadi, M., Maleki, A., Pourfayaz, F., Bidi, M., & AÇIKKALP, E., (2017). Exergetic sustainability evaluation and multi-objective optimization of performance of an irreversible nanoscale Stirling refrigeration cycle operating with Maxwell–Boltzmann gas. Renewable and Sustainable Energy Reviews , vol.78, 80-92.
Ahmadi, Mohammad Et Al. "Exergetic sustainability evaluation and multi-objective optimization of performance of an irreversible nanoscale Stirling refrigeration cycle operating with Maxwell–Boltzmann gas," Renewable and Sustainable Energy Reviews , vol.78, 80-92, 2017
Ahmadi, Mohammad H. Et Al. "Exergetic sustainability evaluation and multi-objective optimization of performance of an irreversible nanoscale Stirling refrigeration cycle operating with Maxwell–Boltzmann gas." Renewable and Sustainable Energy Reviews , vol.78, pp.80-92, 2017
Ahmadi, M. H. Et Al. (2017) . "Exergetic sustainability evaluation and multi-objective optimization of performance of an irreversible nanoscale Stirling refrigeration cycle operating with Maxwell–Boltzmann gas." Renewable and Sustainable Energy Reviews , vol.78, pp.80-92.
@article{article, author={Mohammad H. Ahmadi Et Al. }, title={Exergetic sustainability evaluation and multi-objective optimization of performance of an irreversible nanoscale Stirling refrigeration cycle operating with Maxwell–Boltzmann gas}, journal={Renewable and Sustainable Energy Reviews}, year=2017, pages={80-92} }