Information Journal Paper
APA:
Copy. (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, 78(-), 80-92. SID. https://sid.ir/paper/717062/en
Vancouver:
Copy. 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[Internet]. 2017;78(-):80-92. Available from: https://sid.ir/paper/717062/en
IEEE:
Copy, “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, no. -, pp. 80–92, 2017, [Online]. Available: https://sid.ir/paper/717062/en