论文著作:
1. Wenzhe Chen, Yuling Zhai *, Wenjie Guo, Xin Shen, Hua Wang. A molecular dynamic simulation of the influence of linear aggregations on heat flux direction on the thermal conductivity of nanofluids. Powder Technology, 413 (2023) 118052.
2. Yuling Zhai*, Peitao Yao, Xin Shen, Hua Wang, Thermodynamic evaluation and particle migration of hybrid nanofluids flowing through a complex microchannel with porous fins, International Communications in Heat and Mass Transfer, 135 (2022)106118.
3. Yanhua Li, Yuling Zhai*, Zihao Xuan, Wenjie Guo, Hua Wang. Establishment of thermal conductivity model and analysis of enhancement mechanism in nanofluids: A molecular dynamics study, Journal of Molecular Liquids, 354 (2022) 118877.
4. Fashe Li, Long Li, Guijiang Zhong, Yuling Zhai*, zhouhang Li*, Effect of ultrasonic time, size of aggregates and temperature on the stability and viscosity of Cu-ethylene glycol (EG) nanofluids, International Journal of Heat and Mass Transfer, 2019, 129: 278-286.
5. Jiang Wang, Yuling Zhai*, Peitao Yao, Mingyan Ma, Hua Wang, Established prediction models of thermal conductivity of hybrid nanofluids based on artificial neural network (ANN) models in waste heat system, International Communications in Heat and Mass Transfer, 2020, 110:104444.
发明专利:
1)翟玉玲. A TITANIUM DIOXIDE SURFACE MODIFICATION METHOD FOR ENHANCING STABILITY [P]. 国际发明专利, 申请日,2024.09.19,授权日2025.3.20,专利号:LU508300
2)翟玉玲,李彦桦,王华. 一种基于分子动力学的纳米流体团聚模型构建方法[P]. 发明专利, 申请日,2022.8.18,授权日2025.5.02,专利号:202210990635.5
3)李舟航,郭浩田,翟玉玲,郭希艳,潘悦,王华,李东方. 一种组合弯头式超临界U型管换热器及其设计方法[P]. 发明专利, 申请日,2024.5.22,授权日2025.4.15,专利号:202410640646.X
4)翟玉玲,轩梓灏,李舟航,王华. 一种新的混合纳米流体粒子组合的选择方法[P]. 发明专利, 申请日,2021.5.31,授权日2022.11.01,专利号:202110598420.4
科研项目:
1)混合纳米流体沸腾传热颗粒输运-团聚特性及气泡动力学行为研究,国家自然科学基金委员会,地区科学基金, 2023-01-01 至 2026-12-31,在研,主持.
2)低碳非化石液体燃料掺混燃烧污染物控制关键技术,云南省重大科技专项计划课题,主持,202302AG050011-4,2023-07-01至2026-06-30
3)纳米有机工质沸腾传热气泡动力学及传热机理研究,云南省“兴滇英才支持计划”项目, 2022-12-1至2027-12-31,在研,主持
4)歧管式微型散热器超临界传热特性研究,云南省科技厅,面上项目, 202401AT070380 2024-03-01至2027-02-28,在研,主持.
5)复杂结构微通道沸腾转变区流型识别及混沌传热行为机理, 国家自然科学基金委员会,青年科学基金,51806090,主持,2019.01.15~2021.12.15