一、个人简介 付建,博士,讲师,硕导,1989年1月出生于甘肃省兰州市,2021年1月博士毕业于北京航空航天大学工程热物理专业,2021年2月—2022年5月就职于中国航天科技集团510所,2022年6月入职于兰州理工大学能源与动力工程学院。为本科生主讲《热工基础》、《多能互补系统理论与设计》等课程。 二、主持和参与的部分科研项目: [1] 甘肃省青年科技基金项目“超临界CO2套管内冷却对流传热机理研究”(23JRRA827),主持,2023-2025,在研。 [2] 横向项目“DK-AF704S-P汽车空气流量计开发”,主持,2022-2024,在研。 [3] 横向项目“超临界压力工质流动换热数值模拟及验证研究”,主持,2023,在研。 [4] 航天三院横向合作课题“新型换热结构及热管试制加工与换热性能试验技术”,主要参与人,2020-2021,结题。 [5] 国家自然科学基金青年项目“超界压力有机工质管内对流传热及脉动流动机理研究”(51806007),主要参与人,2019-2021,结题。 三、代表性成果 [1] Guoqiang Xu, Guanglong Zhao, Yongkai Quan, Runzi Liang, Tingting Li, Bensi Dong, Jian Fu(共同通讯). Design and optimization of a radial-axial two-stage coaxial turbine for high-temperature supercritical organic Rankine cycle. Applied Thermal Engineering, 2023 (227): 120365.(SCI) [2] Guoqiang Xu, Yinchao Ju, Wei Gao, Jian Fu(通讯), Bensi Dong. Experimental and numerical investigation of the effects of buoyancy and flow acceleration on the heat transfer of hexamethyldisiloxane (MM) at supercritical pressures. International Journal of Heat and Mass Transfer, 2022 (187): 122581.(SCI) [3] Guoqiang Xu, Jian Fu, Yongkai Quan, Jie Wen, Bensi Dong. Experimental analysis on heat transfer characteristics of hexamethyldisiloxane (mm) at supercritical pressures for medium/high temperature ORC applications. International Journal of Heat and Mass Transfer, 2020 (156): 119852.(SCI) [4] Guoqiang Xu, Jian Fu, Bensi Dong, Yongkai Quan, Gu Song. A novel method to measure thermal conductivity of nanofluids, International Journal of Heat and Mass Transfer, 2019 (130): 978-988.(SCI) [5] Lijing Zhai, Guoqiang Xu, Jie Wen, Yongkai Quan, Jian Fu, Hongwei Wu, Tingting Li. An improved modeling for low-grade organic Rankine cycle coupled with optimization design of radial-inflow turbine[J]. Energy Conversion and Management, 2017 (153): 60-70.(SCI) [6] Jian Fu, Guoqiang Xu, Yongkai Quan, Yanchen Fu, Bensi Dong. Numerical Analysis of Heat Transfer Characteristics of Hexamethyldisiloxane (MM) at Supercritical Pressures, ASME EXPO. 2018 (51043).(EI) [7] 付建, 全永凯,董苯思. 超临界压力硅油MM竖直管内对流传热实验研究. 工程热物理学报, 2020 (41): 2922-2929.(EI) [8] 李广超, 付建, 张魏,寇志海. 双向扩张孔出口宽度对气膜冷却特性影响. 推进技术, 2016, 37 (11):2088-2096.(EI)
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