代表性教学科研项目: 1.国家自然科学基金面上项目,52078257,海水-土壤双源热泵系统热过程协同机理及设计与节能运行方法重构研究,2021.01-2024.12,58.0万元,结题,主持; 2.青岛市科技惠民项目,18-6-1-105-nsh,海洋低品位热能资源化利用技术研究及应用,2019.01-2020.12,100.0万元,结题,主持; 3.滨海人居环境学术创新中心开放基金资助项目,第二代海水源热泵系统热渗耦合传热机理及产业化研究,2019.12-2022.12,10.0万元,结题,主持; 4.主持山东省高等学校科技计划项目,J15LG05,基于粗糙集-神经网络理论的地铁空间空气品质综合评价研究,2015-2017,5.5万元,结题,主持; 5.青岛市计划项目,青岛地区太阳能绿色建筑一体化技术的模拟优化研究,2008.12-2010.12,5.0万元,结题,主持; 6.青岛市科技惠民项目,青岛数据中心余热综合利用关键技术研究与示范,2025-2027,120万元,在研,参与; 7.青岛海信日立空调系统有限公司横向项目,基于健康提升的睡眠舒适性模型及控制策略研究,2024-2025,60.0万元,结题,参与。 代表性论文: 1. Yu H, et al. Thermal resistance capacity model for transient simulation of capillary-box heat exchangers[J].Case Studies in Thermal Engineering, 2024, 63(000).DOI:10.1016/j.csite.2024.105321. 2. Yu H, et al. Numerical investigation on operational performance of seawater-source heat pump system coupled with capillary-box heat exchangers[J].Case Studies in Thermal Engineering, 52: 103724,2023 3. Yu H, et al. Nature-resembled nanostructures for energy storage/conversion applications[J]. Journal of Industrial and Engineering Chemistry, 2023.8. 4. Yu H, Wang J, Liu J,et al. Performance of capillary box heat exchangers buried in seabed for seawater-source heat pumps[J].Applied thermal engineering: Design, processes, equipment, economics, 2022(Pt.2):213. 5. Tong Z , Wang W , Wang P ,e Yu H et al.Effect of valve regulation on the operating state of a CO2 two-phase thermosyphon loop[J].Case Studies in Thermal Engineering, 2025, 69(000).DOI:10.1016/j.csite.2025.106055. 6. Yu H, et al. Experimental study of the effects of siestas on the nocturnal sleep quality and thermal comfort levels under thermoneutral environment in summer[J]. Energy and Built Environment,2025,06. 7. Li X, Gong M, Dong J, Yu H et al. Forecasting regional in-situ thermal conductivity of soil based on tree-based ensemble learning[J].International Communications in Heat and Mass Transfer,2024(Dec. Pt.A):159.DOI:10.1016/j.icheatmasstransfer.2024.107996. 8. A, J. D., A, X. L, B, B. H., A, R. T., & A, H. Y. (2021). A regional study of in-situ thermal conductivity of soil based on artificial neural network model. 9. Huili Yu et al, Circular Radiation Heat Shields with Temperature Dependent Emissivities: Transient and Steady-state Analyses,Thermophysics and Aeromechanics,2016,23(2):271~280. 10. Huili Yu*,Analytical Research of Temperature Distribution and Thermal stresses within Circular Micro-hotplate,Journal of Donghua University, English Edition,2016,33(6):997~1006. 11. 王敬博,于慧俐,刘明辉,等.基于TRNSYS的土壤-海水双源热泵系统运行特性分析[J].可再生能源, 2021(012):039. 12. 于慧俐, 陈安, 李绪泉. 基于体感热舒适性的地铁车辆空调模糊控制仿真[J]. 城市轨道交通研究, 2018(1):91-94. 代表性著作: 参编中国地热能产业发展报告(2021) 代表性专利: 1. 于慧俐等.一种闭式海水源热泵系统干地施工方法:201811564359[P]. 2. 于慧俐等.利用海底地铁隧道渗流海水能和废热能的能源系统和方法:202210240306[P]. 3. 于慧俐等.构建海水源热泵系统机组设计选型方法及系统:202110308421[P]. 4. 于慧俐等Procédé et système de conception et de sélection d'unités pour construire un systèmede pompe à chaleur à source d'eau de mer,BE1028109[P]. |