论文著作:
[1]Yujian Li, Yuanwei Lu*, Jiwei Jia, Yancheng Ma, Yuting Wu, Yonglin Su. Numerical research on flow and heat transfer characteristics of molten salt/ supercritical carbon dioxide in airfoil fin printed circuit heat exchanger. Applied Thermal Engineering 284 (2026) 129038
[2]Reshalaiti Hailil*, Xu Lu, Zongmian Wang, Yuting Wu, Detlef W. Bahnemann. Exploring the potential of BiOCl Photocatalysts in sustainable chemistry. Coordination Chemistry Reviews 544 (2025) 216964
[3]Hai-Xiao Wang, Biao Lei* , Jia-Yuan Cao, Wei Luo, Yu-Ting Wu, Yan-Jun Du, Ye-Qiang Zhang**, Hai-Jie Liu. Multi-objective optimization of a multiple heat sources small-scale organic Rankine cycle with quasi two stage single screw expander using machine learning techniques. Energy339(2025)139083
[4]WANG Wei*, WANG Longyu, LI Zhe, WU Yuting, MA Chongfang. Thermodynamic Analysis of Supercritical Organic Fluid Brayton Cycles for Middle and Low Temperature Power Generation. Journal of Thermal Science Vol.35, No.1 (2026) 151~167
[5]Xudong Ma, Yanjun Du*, Bingqi Li, Xiaoqiong Li, Cancan Zhang, Yuting Wu. Decarbonization planning framework: high-temperature heat pump integration for steam-based industrial parks. Applied Thermal Engineering 283 (2026) 128984
[6]Xudong Ma, Yanjun Du*, Bingqi Li, Yuting Wu, Cancan Zhang, Yuanwei Lu. Optimization design of multi-sources significant temperature lift steam generating heat pump using renewable heat sources. Renewable Energy 256 (2026) 124607
[7]Yinlian Yan, Fubin Yang* , Hongguang Zhang*, Nanqiao Wang, Yonghong Xu, Zhong Ge, Yuting Wu. Study on an advanced transcritical heat pump for ultra-high-temperature applications. Applied Thermal Engineering 281 (2025) 128681.
[8]Rui Ma*, Zhien Ren, Jiamin Guo, Yuting Wu. Numerical investigation of heat transfer and flow behavior in a 3D void phase change capsule model with nanoparticle-enhanced modified solar salt. Applied Thermal Engineering 281 (2025) 128647.
[9]Xudong Ma, Yanjun Du, Yuting Wu*, Bingqi Li, Cancan Zhang. Enhanced thermal output from air-source cascade heat pumps configuration for steam generation. Case Studies in Thermal Engineering 75 (2025) 107112
[10]Yuting Wu, Lingran Meng, Cancan Zhang*, Yanjun Du , Guang Bao, Yanyu Gong. Effect of added SiO2 nanoparticles on the specific heat capacity of ternary nitrate-carbonate mixed molten salt. Applied Thermal Engineering 280 (2025) 128312
[11]Ying Xie , Xia Chen *, Yuting Wu , Cancan Zhang , Chongfang Ma. Experimental study on the stress corrosion behavior of Q345R and 20# carbon steels in low-temperature ternary salts. Journal of Energy Storage 135 (2025) 118404
[12]Yi Zhang, Yuting Wu, Cancan Zhang , Yongjie Lin, Yuanwei Lu, Yanjun Du. Compact design of high-voltage molten salt electric heater terminals:insulation optimization under dynamic thermal-pressure conditions. Applied Thermal Engineering 280 (2025) 128158
[13]Di Qi, Xu Feng, Yanjun Du*, Yuting Wu, Bingqi Li. Thermodynamic analysis and optimization of pumped thermal electricity storage system of molten salt based on carbon dioxide Brayton cycle. Applied Thermal Engineering 279 (2025) 127773
[14]Jiwei Jia, Yancheng Ma, Yuanwei Lu*, Shengnan Lv, Yujian Li, Yuting Wu. Numerical analysis on temperature distribution and heat loss in the large-scale molten salt storage tank of CSP plant. Energy 335 (2025) 137873
[15]Ji Huang, Lixia Sang*, Qifan Yang , Yuting Wu. Molecular dynamics simulation of the effects of nitrite/nitrate equilibrium on the structure and properties of KNO2-KNO3-K2CO3 molten salt systems. Journal of Energy Storage 132 (2025) 117898
[16]Yuanyuan Wang, Yuanwei Lu*, Yuting Wu, Cancan Zhang. Phase diagram analysis and thermophysical properties investigation of mixed molten salts with low liquid operating temperature for thermal energy storage. Energy 333 (2025) 137386
[17]Meichao Yin, Yaxuan Xiong*, Aitonglu Zhang, Xiang Li, Yuting Wu, Cancan Zhang, Yanqi Zhao and Yulong Ding. Non-Ferrous Metal Smelting Slags for Thermal Energy Storage: A Mini Review. Buildings 2025, 15, 2376
[18]Lingran Meng, Cancan Zhang*, Yuting Wu, Guang Bao, Yuanwei Lu, Yanyu Gong. Study on thermophysical properties improvement of ternary nitrate-carbonate molten salt by adding SiO2 nanoparticles for large-scale thermal energy storage. Solar Energy Materials & Solar Cells 292 (2025) 113819
[19]Ruolin Zhang, Yuting Wu*, Cancan Zhang, Biao Lei, Yuanwei Lu. Simulation of corrosion behavior of 316L stainless steel in Hitec ternary nitrate solution: A cellular automaton approach. Journal of Energy Storage 130 (2025) 117468
[20]Xinyu Wang, Chao Zhang, Cancan Zhang*, Hexin Sun, Yuting Wu. A comprehensive updated research progress of key technologies of linear concentrated solar power from material to application. Solar Energy Materials & Solar Cells 285 (2025) 113492
[21]Heya Na , Cancan Zhang , Yuting Wu *, Guoqiang Wang , Guang Bao , Yuanwei Lu. Effect of purity on thermophysical properties, thermal stability and corrosivity of ternary mixed salts. Solar Energy Materials & Solar Cells 292 (2025) 113785
[22]Jinqi Liu , Xia Chen *, Jidong Shen , Yuting Wu. Performance study and multi-objective optimization of two-stage compression single-screw air-source heat pump system. International Journal of Refrigeration 177 (2025) 40–53
[23]Junjie Chen, Ziye Ling, Xiaoming Fang, Yuting Wu, Zhengguo Zhang. Numerical simulation on the flow and heat transfer characteristics of molten salt nanofluid in the shell-side of helical baffle heat exchangers with elliptic tubes and circular tubes. Solar Energy Materials & Solar Cells 290 (2025) 113733
[24]LI Chuan, HAN Li, LI Qi*, DU Yanping, WU Yuting. Preparation and Densification Behaviour of Magnesia-Nitrate Salt Composite Phase Change Material Fabricated by Cold Sintering Technology for Low and Medium Temperature Thermal Energy Storage. Journal of Thermal Science Vol.34, No.3 (2025) 970~981
[25]Aitonglu Zhang, Yaxuan Xiong*, Yuting Wu, Chaoyu Song, Xiaohui She, Jing Ren, Yang Yang, Yulong Ding. Investigation on enhancing heat transfer and storage efficiency of KNO3/ sewage sludge incinerated slag composites for mid-temperature thermal energy storage. Journal of Energy Storage 121 (2025) 116627
[26]Chuan Li , Zhanyun Tang , Hedu Guo , Zhengyang Li , Maobing Liang , Qi Li *, Yuting Wu. Investigation of melting performance enhancement in phase change material based shell and tube thermal energy storage device by using innovative hub-shaped longitudinal fins. Journal of Energy Storage 121 (2025) 116522
[27]Songtao Han, Jialong Liu, Cancan Zhang, Yuting Wu. Investigation on metal quenching by molten salt nanofluids jet impingement based on multi-physics field coupling method. Journal of Thermal Analysis and Calorimetry (2025) 150:6447–6460
[28]Hai-Xiao Wang, Biao Lei* , Yu-Ting Wu, Ye-Qiang Zhang, Yan-Jun Du,Xiao-Ming Zhang, Pei-Hong Yang. Performance improvement and multi-objective optimization of energy, economic, and environmental factors in organic Rankine cycle using machine learning-driven quasi-two-stage single screw expander. Energy 324 (2025) 135965
[29]Ruolin Zhang , Yanjun Du , Yuting Wu *, Cancan Zhang , Biao Lei , Yuanwei Lu. Dynamic/static corrosion behavior of 347H stainless steel in quaternary molten salt: A cellular automaton modeling study. Solar Energy Materials & Solar Cells 296 (2026) 114051.
[30]Yuanyuan Wang , Zixuan Wang , Yuanwei Lu *, Yuting Wu , Cancan Zhan. Phase diagram calculation and neural network prediction of nitrate/nitrite molten salts with wide working temperature range for thermal storage system. Energy 322 (2025) 135638
发明专利:
[1]万明忠,鹿院卫,李俊,吴玉庭,张春琳,王元媛,陈永安,张灿灿.一种低熔点三元混合熔盐传热蓄热材料与制备方法. CN202310195312.1,申请日:2023.03.03,授权公告日:2025.12.16
[2]吴玉庭,张翼,张灿灿,鹿院卫.一种固体氧化铝填充的高电压熔盐电加热器. CN202210627137.4,申请日:2022.06.01,授权公告日:2025.11.25
[3]娜荷芽,吴玉庭,张灿灿.一种低熔点三元混合熔盐传热蓄热介质. CN202410641512.X,申请日:2024.05.22,授权公告日:2025-11-11
[4]李传,许荣玉,李琦,刘志刚,陈文,梁崇淦,吴玉庭.一种硅藻土基定型复合相变储热材料及其制备方法. CN202410381571.8,申请日:2024.03.29,授权公告日:2025-11-04
[5]吴玉庭,魏雯珍,孟令然,智瑞平,李传,李琦.阵列式蒸汽-熔盐蓄换热系统温度动态响应数值计算方法.CN202411794567.0,申请日:2024.12.06,授权公告日:2025-10-10
[6]鹿院卫,王元媛,王玥,吴玉庭,张灿灿.一种低熔点宽温域的混合熔盐传热蓄热材料与制备方法. CN202311208850.6,申请日:2023.09.19,授权公告日:2025.07.22
[7]鹿院卫,王元媛,吴玉庭,张灿灿.低熔点五元混合熔盐传热蓄热材料与制备方法. CN202310209528.9,申请日:2023.03.07,授权公告日:2025.07.22
[8]吴玉庭,封旭,雷标,鹿院卫.可调节的单螺杆压缩机回热式复叠低温制冷系统的监测及控制方法. CN202310199385.8,申请日:2023.03.03,授权公告日:2025.05.06
[9]王伟,马重芳,吴玉庭.一种应用于固体蓄热的复合蓄热结构. 201711327186.1,申请日:2017.12.13,公开日:2018.0629,授权公告日:2024-12-10
[10]马重芳;吴玉庭;张晓明;杜春旭;李小丽;张永乐;鹿院卫.一种利用主蒸汽加热的火电厂蓄热调峰的熔盐蓄热系统. 201820379839.4,申请日:2018.03.20,授权公告日:2024.01.09专利权人:北京工业大学
[11]马重芳;吴玉庭;雷标;李福生;刘闪威.一种移动式单螺杆压缩机. 201810351010.8申请日:2018.4.18,授权公告日:2024.05.28专利权人:北京燕都碧城科技有限公司;北京工业大学
[12]马重芳;吴玉庭;雷标;李福生;李亚南一种单螺杆压缩机防液击装置201810351013.1申请日:2018.4.18,公开日:2018.08.10授权公告日:2024.05.28专利权人:北京燕都碧城科技有限公司;北京工业大学
[13]吴玉庭,张灿灿,孙保敬,鹿院卫,马重芳,杜春旭.一种压缩气体与熔盐泵耦合驱动的多罐熔盐蓄热系统. 201811339887.1申请日:2018.11.12,公开日:2019.02.26授权公告日:2024.03.26专利权人:北京工业大学
[14]马重芳;张灿灿;吴玉庭;鹿院卫;杜春旭;智瑞平.一种多罐式熔盐储能系统. 201811339889.0申请日:2018.11.12,公开日:2019.02.22授权公告日:2024.03.26专利权人:北京工业大学
[15]雷标;吴玉庭;王伟;马重芳.一种外加热式无泵自压缩有机朗肯循环系统. 202010688694.8,申请日:2020.07.16,公开日:2020.09.22授权公告日:2024.06.21
[16]鹿院卫,樊占胜,魏海姣,陈晓彤,吴玉庭,张灿灿。王博申.一种混合加热熔盐储热调峰系统. 202111482817.3申请日:2021.12.07,公开日:2022.03.22授权公告日:2024.02.06。专利权人:北京工业大学
[17]王景甫;刘广宇;雷标;吴玉庭;王伟;张新欣.一种基于单螺杆膨胀机的无储液罐撬装式有机朗肯循环发电系统. 201810016546.4申请日:2018.1.08,公开日:2018.05.18授权公告日:2023.12.22。专利权人:北京工业大学
[18]鹿院卫;魏海姣;张灿灿;吴玉庭;马重芳.一种火电厂深度调峰系统.申请号:201910313766.8;申请日:2019.04.18,授权日:2024.02.06
[19]鹿院卫;魏海姣;张灿灿;于强;张银和;吴玉庭;马重芳.一种低谷电储热户型供暖系统. 201910259447.3申请日:2019.04.02,公告日:2023.09.26
[20]吴玉庭;马重芳;李小丽;鹿院卫;陈夏;张晓明.一种移动式熔盐蓄、放热装置. 201710824253.4申请日:2017-9-13,授权日:2023.09.01