教育及工作经历
2019.11-至今 浙大宁波理工学院材料副研究员
2017.11-2019.10 浙江大学宁波理工学院动力工程及工程热物理副研究员
2014.02 Odessa National Academy of Food Technologies (UKRAINE) 专业 博士
2003.12-2006.12 Odessa National Maritime University (UKRAINE) 研究生
2002.09-2003.06 Odessa State Academy of Refrigeration (UKRAINE) 专业 硕士
1998.09-2002.06 Odessa State Academy of Refrigeration (UKRAINE) 专业 本科
主要荣誉与奖励
"最佳发明家2015"大赛冠军, Odessa National Academy of Food Technologies (UKRAINE), 2015
研究方向
制冷与空调; 工程热力学; 喷射装置与引射器系统
代表性成果(过去三年)
Volovyk, O.; Hao, X.; Ierin, V.; Shestopalov, K.; Gao, N. Solar ejector cooling system: Optimal performance of the ejector under off-design conditions, Renewable Energy 2026, 256, 124618.
Sokolovska-Yefymenko, V.; Morozyuk, L.; Ierin, V.; Khliyeva, O.; Feshchuk, O.; Yefymenko, O. Evaluation of the ethane reliquefaction system integrated with the fuel gas supply system of the large ethane carrier, Energy 2025, 330, 136884.
Hao, X.; Ierin, V.; Volovyk, O. Thermodynamic modeling and analysis of a novel hybrid energy storage based on solar energy utilization, Energy Conversion and Management 2025, 326, 119461.
Shestopalov, K.; Khliyeva, O.; Ierin, V.; Konstantinov, O.; Khliiev, N.; Gao, N.; Kozminykh, M. Novel marine ejector-compression waste heat-driven refrigeration system: technical possibilities and environmental advantages, International Journal of Refrigeration 2024, 158, 202-215.
Ierin, V.; Chen, G.; Hao, X.; Volovyk, O. Thermodynamic analysis of hybrid two-stage СО2 mechanical compression–ejector cooling cycle, International Journal of Air-Conditioning and Refrigeration, 2023, 31(1), 17.
Sokolovska-Yefymenko, V.; Morozyuk, L.; Ierin, V.; Yefymenko. O. Thermodynamic analysis of an ethylene reliquefaction system using the entropy-cycle method, Energies 2023, 16(2), 920.
Khliyeva, O.; Shestopalov, K; Ierin, V.; Zhelezny, V.; Chen, G.; Gao, N. Environmental and energy comparative analysis of expediency of heat-driven and electrically-driven refrigerators for air conditioning application, Applied Thermal Engineering 2023, 219, Part B, 119533.
主要项目
1. 1143257G20200265 - 开发用于热驱动喷射器冷却系统的性能改进方法 (Development of performance improvement methods for thermally driven ejector cooling systems).