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强化传热研究室

郭琳

郭琳

郭琳

教育与工作经历:

 2020-08 至今,山东省科学院能源研究所

 2013-09 至 2020-06,西安交通大学,动力工程及工程热物理,博士

2017-09 至 2019-03,美国佐治亚理工学院,机械工程,CSC 联合培养

 2009-09 至 2013-06,中国石油大学(华东),热能与动力工程,学士

科研基本情况:

 主持/为主参与的科研项目:

[1]国家自然科学基金委员会, 国家自然科学基金青年项目, 5220060755, 2023- 01 至 2025-12, 30 万元, 主持

[2] 山东省科学技术厅, 山东省自然科学青年基金, ZR2021QE078, 2022-01 至 2024-12, 15 万元, 主持

[3] 齐鲁工业大学(山东省科学院), 能源科学基础研究培育加强计划培优项目, 2023-06 至 2025-05, 30 万元, 主持

[4] 山东省生物质气化技术重点实验室开放课题, 2022-09 至 2023-08, 10 万元, 主 持

[5] 齐鲁工业大学(山东省科学院),能源科学基础研究培育加强计划项目, 2021- 01 至 2023-12, 6 万元, 结题, 主持

[6] 齐鲁工业大学(山东省科学院), 校级博士科研启动项目, 2021-03 至 2024-02, 30 万元, 主持

 [7] 山东省济南市科学技术局, 济南市“新高校 20 条”, 2021GXRC059 , 2022-01 至 2024-12, 160 万元, 为主参与

[8] 齐鲁工业大学(山东省科学院), 科教产融合创新试点工程国际合作, 2022-01 至 2023-12, 66 万元, 为主参与

[9] 山东能源研究院企业联合基金项目, 2024-01 至 2025-12, 100 万元, 立项, 为主参与

发表的学术论文:

[1] Guo L, Sheng Q, Kumar S, Liu ZG, Tang GH, Lubricant-induced tunability of self-driving nanodroplets on conical grooves, Journal of Molecular Liquids, 2023, 373: 121149. IF=6.633, Guo C, Wei W, Wang C, Liu ZG, Guo L*, Gao M, Investigation of audible sound waves on the heat transfer characteristics of air-to-air heat exchange systems, Physics of Fluids, 2023, 35: 035109. IF=4.980

[2] Wang C, Liu ZG, Guo L*, Comparative studies on the propagation of rotating stall in a liquefied natural gas cryogenic submerged pump-turbine in both pump and turbine mode, Physics of Fluids, 2023, 35: 055132. IF=4.980

[3] Guo C, Gao M, Wei W, Liu ZG, Guo L*, Influence of frequency and intensity of bilateral audible sound waves on heat transfer performance of air-to-air heat exchange systems, International Journal of Heat and Mass Transfer, 2023, 203: 123797. IF=5.431

[4] Guo C, Ji C, Kong YL, Liu ZG, Guo L*, Yang YW, The effect of liquid-solid interactions upon nucleate boiling on rough surfaces: Insights from molecular dynamics, Materials, 2023, 16: 1984. IF=3.748

[5] Kong YL, Liu ZG, Guo L*, Qiu Y, The self-actuating droplet that can turn: A molecular dynamics simulation, Energies, 2022, 15: 8468. IF=3.252

[6] Wang C, Guo L*, Liu ZG, Unsteady flow analysis regarding stall flow and rotating cavitation in the firststage of a multistage LNG cryogenic submerged pump, Cryogenics, 2023, 129: 103546. IF=2.134

[7] Guo L, Kumar S, Yang MY, Tang GH, Liu ZG. Role of the microridges on cactus spines. Nanoscale, 2022,14:525-533. IF=8.307

[8] Guo L, Shen WQ, Kumar S, Liu ZG, Tang GH. Lubricant-enhanced self-transport of condensed nanodroplets trapped in Wenzel state. Journal of Molecular Liquids, 2022, 348: 118206. IF=6.633

[9] Guo L, Tang GH, Kumar S. Dynamic wettability on the lubricant-impregnated surface: from nucleation to growth and coalescence. ACS Applied Materials & Interfaces, 2020, 12: 26555- 26565. IF=10.383

[10] Guo L, Tang GH, Kumar S. Droplet morphology and mobility on lubricant-impregnated surfaces: A molecular dynamic study. Langmuir, 2019, 35: 16377-16387. IF=4.331, Cover

[11] Guo L, Tang GH. Dropwise condensation on bioinspired hydrophilic-slippery surface. RSC Advances, 2018, 8: 39341-39351. IF=4.036

[12] Guo L, Tang GH, Experimental study on directional motion of a single droplet cactus spines. International Journal of Heat and Mass Transfer, 2015, 84: 198-202. IF=5.431

[13] Guo L, Xu HJ, Gong L. Influence of wall roughness models on fluid flow and heat transfer in microchannels. Applied Thermal Engineering, 2015, 84: 399-408. IF=6.465

[14] Yang YW, Feng HX, Que WX, Qiu Y, Li YQ, Guo L, Li Q, A diode-like scalable asymmetric solar evaporator with ultra-high salt resistance, Advanced Functional Materials, 2022, 2210972. IF=19.924

[15] Yang MY, Tang GH, Sheng Q, Guo L, Zhang H, Atomic-level sintering mechanism of silica aerogels at high temperatures: structure evolution and solid thermal conductivity, International Journal of Heat and Mass Transfer, 2022, 199:123456. IF=5.431

[16] Jiang J, Sheng Q, Tang GH, Yang MY, Guo L. Anti-icing propagation and icephobicity of slippery liquid-infused porous surface for condensation frosting. International Journal of Heat and Mass Transfer, 2022, 190: 122730. IF=5.431

[17] Yang MY, Sheng Q, Guo L, Zhang H, Tang GH. How gas-solid interaction matters in graphenedoped silica aerogels. Langmuir, 2022, 38: 2238-2247. IF=4.331

[18] Xu MP, Guo L, Zhang PF, Qiu Y, Li Q, Wang JK, Near-perfect spectrally-selective metasurface solar absorber based on tungsten octagonal prism array, RSC Advances, 2022, 12, 16823. IF=4.036

[19] Tang GH, Niu D, Guo L, Xu JL. Failure and recovery of droplet nucleation and growth on damaged nanostructures: A molecular dynamics study. Langmuir, 2020, 36: 13716-13724. IF=4.331

[20] Niu D, Guo L, Hu HW, Tang GH. Dropwise condensation heat transfer model considering the liquid-solid interfacial thermal resistance. International Journal of Heat and Mass Transfer, 2017, 112: 333-342. IF=5.431

 授权的发明专利:

[1]郭琳, 王聪, 刘志刚, 李卓良, 孔亚龙, 一种错位交叉储热吸附床及海水淡化余热储热系 统, 2023-04-14, 发明专利, ZL 202310000648.8

[2]王聪, 郭琳, 黄崇亮, 李卓良, 孔亚龙, 刘志刚, 吕明明, 一种海洋 LNG 冷能回收泵空化 可视化实验系统, 2023-06-02, 发明专利, ZL 202310016802.0

[3] 唐桂华 , 郭 琳 , 牛 东 , 一种在紫铜表面上加工亲滑界面的方法 , 2020-08-14, ZL108393253

联系方式:

Email:linguo@sderi.cn

业务科:0531-82605584   人事科:0531-82605876   办公室:0531-82605557

能源研究所地址:山东省济南市历下区科院路19号

能动学院地址:山东省济南市长清区大学路3501号

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