能源与动力学院
通讯地址:江苏省镇江市丹徒区长晖路666号江苏科技大学
个人邮箱:lvning@just.edu.cn
邮政编码:
办公地点:能动楼333
传真:
吕宁(邮箱:lvning@just.edu.cn),男,江苏科技大学能源与动力学院讲师、硕士生导师。主要研究方向为传热传质与流动耦合机理,热泵抑、除霜技术,基于吸收式热泵技术的余热回收与应用,AI与物理双驱动的热力系统仿真与优化。主持省部级科研项目1项,省重点实验室开放基金项目1项,横向科研项目多项,入选省部级人才项目1项,获得江苏省能源研究会科学技术进步奖二等奖1项。
部分发表论文:
[1] Lyu N, Jing X, Li J, et al. Transient energetics of multi-droplet coalescence and its impact on condensate cluster evolution on superhydrophobic surfaces[J]. Applied Thermal Engineering, 2026, 291: 130259.
[2] Li J, Lyu N, Feng G, He H, et al. Effects of anisotropic sub-millimeter microstructures on condensation and frosting characteristics of superhydrophobic surfaces[J]. International Journal of Heat and Mass Transfer, 2026, 260: 128448(通讯作者,学生一作).
[3] Lyu N, Feng G, He H, et al. Impact of ambient temperature and humidity on the performance of a novel anti-frosting air source heat pump system[J]. Energy, 2025, 314: 134190.
[4] Lyu N, He H, Liu J, et al. Investigation on the performance coupling characteristics between a compound anti-frosting method and air source heat pump system[J]. Applied Thermal Engineering, 2023, 235: 121430.
[5] Lyu N, He H, Zhang J, et al. Investigation on the growth characteristics of condensed droplet clusters on superhydrophobic surface within humid air[J]. Energy and Buildings, 2022, 261: 111978.
[6] Lyu N, Shao Z, He H, et al. Performance study of an active-passive combined anti-frosting method for fin-tube heat exchanger[J]. Building and Environment, 2022, 222: 109365.
[7] Lyu N, He H, Wang F, et al. Droplet evaporation characteristics on heated superhydrophobic surface subjected to airflow[J]. International Journal of Heat and Mass Transfer, 2021, 181: 121874.
科研项目:
[1] 热泵-压缩复合式蒸汽余热回收系统关键技术研发,主持,2025;
[2] 主-被动协同式无霜空气源热泵系统关键技术研发,主持,2024;
[3] 耐久型超疏水抑冰霜涂层制备技术开发,主持,2023;
[4] 烟气余热回收吸收式热泵系统关键技术研发,主持,2023;
指导学生获奖:
[1] 第十九届中国制冷空调行业大学生科技竞赛特等奖(本科生组),2025;
[2] 第十八届中国制冷空调行业大学生科技竞赛二等奖(本科生组),2023,2024;
[3]“四洋杯”第六届全国大学生船舶能源与动力创新大赛二等奖,2023;
课程教学:
制冷空调设备的控制与调节(本科生)。
欢迎对课题相关方向感兴趣的本科、硕士同学加入课题组,一起成长!!
空气源热泵抑、除霜技术;疏水表面凝结蒸发传热传质机理;基于吸收式热泵技术的工业余热回收与利用。
国家自然科学基金面上项目:超疏水翅片结霜初期表面特性与热气流综合作用除霜机理研究 参与
“十三五”国家重点研发项目“基于溶液调湿的无霜空气源热泵关键技术与设备” 参与
Ning Lyu, Hui He, Feng Wang, Caihua Liang, Xiaosong Zhang; Droplet evaporation characteristics on heated superhydrophobic surface subjected to airflow; International Journal of Heat and Mass Transfer; 181,2021
Ning Lyu, Hui He, Jiachi Zhang,Feng Wang, Caihua Liang, Xiaosong Zhang; Investigation on the growth characteristics of condensed droplet clusters on superhydrophobic surface within humid air; Energy & Buildings; 261,2022.
1.Ning Lyu, Hui He, Zhibo Shao,Feng Wang, Caihua Liang, Xiaosong Zhang; Performance study of an active-passive combined anti-frosting method for fin-tube heat exchanger; Building and Environment; 222,2022.
国家自然科学基金面上项目:超疏水翅片结霜初期表面特性与热气流综合作用除霜机理研究 参与
“十三五”国家重点研发项目“基于溶液调湿的无霜空气源热泵关键技术与设备” 参与
Ning Lyu, Hui He, Feng Wang, Caihua Liang, Xiaosong Zhang; Droplet evaporation characteristics on heated superhydrophobic surface subjected to airflow; International Journal of Heat and Mass Transfer; 181,2021
Ning Lyu, Hui He, Jiachi Zhang,Feng Wang, Caihua Liang, Xiaosong Zhang; Investigation on the growth characteristics of condensed droplet clusters on superhydrophobic surface within humid air; Energy & Buildings; 261,2022.
1.Ning Lyu, Hui He, Zhibo Shao,Feng Wang, Caihua Liang, Xiaosong Zhang; Performance study of an active-passive combined anti-frosting method for fin-tube heat exchanger; Building and Environment; 222,2022.
国家自然科学基金面上项目:超疏水翅片结霜初期表面特性与热气流综合作用除霜机理研究 参与
“十三五”国家重点研发项目“基于溶液调湿的无霜空气源热泵关键技术与设备” 参与
Ning Lyu, Hui He, Feng Wang, Caihua Liang, Xiaosong Zhang; Droplet evaporation characteristics on heated superhydrophobic surface subjected to airflow; International Journal of Heat and Mass Transfer; 181,2021
Ning Lyu, Hui He, Jiachi Zhang,Feng Wang, Caihua Liang, Xiaosong Zhang; Investigation on the growth characteristics of condensed droplet clusters on superhydrophobic surface within humid air; Energy & Buildings; 261,2022.
1.Ning Lyu, Hui He, Zhibo Shao,Feng Wang, Caihua Liang, Xiaosong Zhang; Performance study of an active-passive combined anti-frosting method for fin-tube heat exchanger; Building and Environment; 222,2022.
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