[1]吴宇颂,田博宇,李辉,许兆峰,霍雨佳,符泰然.半球向全发射率测量实验教学系统设计与开发[J].实验技术与管理,2024,41(01):165-170.
[2]朱赤,刘志颖,幸文婷,叶晓明,李辉,符泰然,许兆峰.饱和蒸汽温压特性及超临界现象实验教学设备研发与应用[J].实验技术与管理,2023,40(12):149-155.
[3]高琪瑞,刘培,王哲,李辉,许兆峰,李政,张缦,王淑娟,王东泽.基于视觉计算和云端建设多功能能源动力虚拟仿真实验平台[J].高等工程教育研究,2023,(S1):163-167.
[4]王哲,高琪瑞,李辉,许兆峰,刘培.1000 MW超超临界火电机组燃烧系统虚拟仿真教学实验系统建设[J].中国现代教育装备,2022,(07):4-6.
[5]杨锐明,李辉,王哲.以燃烧机理为切入点设计煤的发热量测定教学实验[J].实验室研究与探索,2021,40(11):215-218.
[6]金玉龙,盛峰,盛璐腾,王硕,冯乐军,刘志颖,李辉,安雪晖.水平壳管式相变蓄能单元传热机理研究[J].暖通空调,2021,51(11):99-104+94.
[7]盛峰,吴得卿,周宇翔,朱昱东,李辉,安雪晖.基于天然工质的串联式复叠制冷系统集成优化[J].制冷技术,2021,41(04):41-47.
[8]许澍,李辉,钟衍程,陆规,祝天宇,戴晓业,朱娟.医用大型蒸汽灭菌器蒸汽“冷点”分布特性研究[J].计量与测试技术,2021,48(07):1-4+8.
[9] Zhiying Liu, Ruixia Li, Dongze Wang, Hui Li, Lin Shi. Multilayer quasi-three-dimensional model for the heat transfer inside the borehole wall of a vertical ground heat exchanger. Geothermics, 2020, 83: 101711
[10]盛峰,周宇翔,王硕,金玉龙,刘志颖,李辉,安雪晖.印染废气余热回收复合型热泵系统性能优化分析[J].节能,2020,39(08):91-95.
[11]宋关羽,袁浩,王智颖,李鹏,许兆峰,李辉.小型风/光/储微电网实验平台[J].实验技术与管理,2020,37(05):85-88.
[12]许兆峰,李辉,罗锐,王东泽,王哲,刘培.竖直管内气液两相流流量测量系统设计[J].实验室研究与探索,2020,39(04):75-77+112.
[13] Ran Tian, Dabiao Wang, Yue Zhang, Yuezheng Ma, Hui Li, Lin Shi. Experimental study of the heat transfer characteristics of supercritical pressure R134a in a horizontal tube. Experimental Thermal and Fluid Science. 2019, 100, 49-61.
[14] Dabiao Wang, Ran Tian, Yue Zhang, LanLan Li, Yuezheng Ma, Lin Shi, Hui Li. Heat transfer investigation of supercritical R134a for trans-critical organic Rankine cycle system. Energy, 2019, 169: 542-57.
[15]辛喆,何志祝,李淑艳,魏青,江秋博,刘志颖,王东泽,李辉.气体定压比热容测量实验教学系统开发[J].实验技术与管理,2019,36(10):89-91+110.
[16]许兆峰,李辉,刘志颖,王东泽,刘培,姜培学.平面热源法导热系数和热扩散率虚实结合实验教学平台[J].实验技术与管理,2019,36(02):235-237+251.
[17] Ran Tian, Yue Zhang, Yuezheng Ma, Hui Li, Lin Shi. Experimental study of buoyancy effect and its criteria for heat transfer of supercritical R134a in horizontal tubes. International Journal of Heat and Mass Transfer, 2018, 127: 555-567.
[18] Yue Zhang, Ran Tian, Xiaoye Dai, Dabiao Wang, Yuezheng Ma, Hui Li, Lin Shi. Experimental study of R134a flow boiling in a horizontal tube for evaporator design under typical Organic Rankine Cycle pressures. International Journal of Heat Fluid Flow. 2018, 710181: 210-219.
[19] Yue Zhang, Ran Tian, Xiaoye Dai, Yuezheng Ma, Hui Li, Lin Shi. Experimental study on sharp increase of wall temperature in vapor generator for Organic Rankine Cycle. Proceedings of the 7th International Conference on Informatics, Environment, Energy and Application (IEEA), Beijing, March, 2018 (EI收录)
[20] Ran Tian, Dabiao Wang, Yue Zhang, Yuezheng Ma, Hui Li, Lin Shi. Tube diameter size effects on heat transfer of supercritical R134a in horizontal tubes for vapor generator design in Organic Rankine Cycles. The 7th International Conference on Informatics, Environment, Energy and Application (IEEA), Beijing, March, 2018 (EI收录)
[21]李辉,刘志颖,许兆峰,王东泽,史琳.平面热源法导热系数及热扩散率虚拟仿真实验开发[J].实验技术与管理,2017,34(05):5-7+10.
[22]陈铁军,祝宝山,王正伟,罗先武,李辉.水力机械综合试验台水力循环系统模块化设计[J].实验技术与管理,2017,34(04):89-93+98.
[23]周媛媛,江海峰,李辉,刘志颖,王琥,田冉,史琳.含水砂土导热系数实验研究[J].工程热物理学报,2015,36(02):265-268.
[24]昝成,江海峰,张强,李辉,许强辉,史琳.油基纳米流体的电导率[J].中国粉体技术,2014, 20(04):28-32.
[25]雷俊勇,李辉,李俊明.通风外窗气流和声波特性研究[J].暖通空调,2012,42(04):104-107.
[26]张有为,李辉,姜培学,KIMINOBU Hojo,MAYUMI Ochi,KOICHI Tanimoto.采用共轭梯度法的管内壁温度导热反问题求解[J].工程热物理学报,2009,30(07):1188-1190.
[27]吴晓敏,莫少嘉,李辉,吴越,王维城.水平管内流动蒸发数值模拟及可视化研究[J].工程热物理学报,2009,30(02):312-314.
[28]吴晓敏,李鹏,李辉,王维城.添加有TiO2纳米颗粒的R11池沸腾换热研究[J].工程热物理学报,2008,(01):124-126.
[29]吴晓敏,汤英杰,李辉,王维城.多孔细径微肋管内CO2流动蒸发换热特性的研究[J].工程热物理学报,2007,(S2):9-12.
[30]吴晓敏,李辉,龚鹏,王维城,李瑞霞.水平微肋管内蒸发及冷凝换热性能研究[J].工程热物理学报,2006,(03):460-462.
[31]郑宏飞,杨英俊,陈子乾,何开岩,李辉.横管降膜蒸发内系统自平衡多效回热式太阳能海水淡化装置模拟[J].太阳能学报,2006,(05):478-483.