殷英 | |
| 特任副教授,硕士生导师 | |
邮箱:yingyin@upc.edu.cn 办公地点:山能新能源大厦481 (古镇口校区) 招生方向:080700动力工程及工程热物理(学硕);085802动力工程(专硕) 每年招收硕士研究生1-2名,欢迎能动、新能源、储能等相关专业的同学积极联系! | |
教育经历 | |
2016-2021 | 西安交通大学,动力工程及工程热物理,博士 |
2018-2020 | 美国德克萨斯大学奥斯汀分校,博士联合培养 |
2014-2016 | 西安交通大学,工程热物理,硕士(硕博连读) |
2010-2014 | 太阳集团网站8722,热能与动力工程,学士 |
工作经历 | |
2025-至今 | 太阳集团网站8722,特任副教授 |
2023-2024 | 北京理工大学深圳汽车研究院,副研究员 |
2021-2023 | 华为技术有限公司,博士后/高级工程师 |
研究领域/招生方向 | |
团队重点关注多孔介质内多相能质传输问题,围绕多孔介质的重构与表征、多孔介质内多尺度多物理场耦合输运(传热/扩散/吸附/化学反应/流动耦合)等,开展了大量基础及应用基础研究,包括:
| |
学生培养 | |
团队硕博毕业生大多进入世界500强企业(如中石油、中石化、比亚迪,…….)、政府部门、科研院所,或赴海内外知名高校深造。此外,团队与国内外知名高校(如The University of Texas at Austin、西安交通大学、中国科学技术大学、北京理工大学、中山大学、天津大学、山东大学、中国海洋大学等)建立了良好的合作关系,优秀学生可被推荐进行联合培养或攻读博士学位! | |
主持项目 | |
| |
学术论文 | |
迄今,在Applied Energy,International Journal of Heat and Mass Transfer, Applied Thermal Engineering等国内外高水平期刊发表学术论文50余篇,其中SCI/EI期刊论文40余篇,代表性论文如下: [1]Y. Yin, H. An, L. Gong, et al., Enhancement of heat transfer and flow boiling stability in an interrupted coaxial pin-fin microchannel based on a dynamic correction method. International Journal of Thermal Sciences, 2026, 222: 110576. [2]Y. Yin, P. Sun, Z.M. Wang, et al. Multiphysics coupled analysis of interlayer microchannels with coaxial-like shielded TSV pin-fins in 3D integrated circuits. Applied Thermal Engineering, 2025, 281: 128759. [3]Y. Yin, H. Wang, H. Zuo, et al. An upscaling framework for predicting gas multiscale transport behavior in shale matrix-microfracture systems considering microscopic transport mechanisms. Physics of Fluids, 2025, 37:022002. [4]H. Wang#, M. Wang#, Y. Yin#, et al. A universal structure of neural network for predicting heat, flow and mass transport in various porous media. International Journal of Heat and Mass Transfer, 2025; 241:126688. (#共同一作) [5]Kai Yang, Wen-Ke Zhang, Ying Yin, Jinrui Nan, Wenwei Wang, Jiuchun Jiang, Xiao-Guang Yang*. A hierarchical electrochemical-thermal-mechanical coupled model capable of predicting non-uniform behaviors in large-format Li-ion cells. Journal of Power Sources, 2025, 629: 236049. [6]X.Y. Ma, W.K. Zhang, Y. Yin, K.L. Liu, X.G. Yang. Multi-objective optimization of lithium-ion battery designs considering the dilemma between energy density and rate capability. Energy and AI, 2024, 18: 100416 [7]H. Zuo, S.C. Deng, H.B. Li, Y. Yin*, et al. Upscaled permeability for gaseous microflows in porous media with arbitrary multiscale heterogeneities. Physics of Fluids, 2024, 36: 113108. (*通讯作者) [8]H. Zuo, Y. Yin*, Z.Q. Yang*, et al. High-order models for convection-diffusion-reaction transport in multiscale porous media. Chemical Engineering Science, 2024, 286:119663. (*通讯作者) [9]Y. Yin, Z.G. Qu, M. Prodanović, et al. Identifying the dominant transport mechanism in single nanoscale pores and 3D nanoporous media. Fundamental Research, 2023, 3(3): 409-421. [10]Y. Yin, Z.G. Qu, C.Y. Zhu, et al. Visualizing gas diffusion behaviors in three-dimensional nanoporous media. Energy & Fuel, 2021, 35(3): 2075-2086. [11]J.E. Santos, Y. Yin, H. Jo, W. Pan, Q.J. Kang, H.S. Viswanathan, M. Prodanović, M.J. Pyrcz, N. Lubbers. Computationally Efficient Multiscale Neural Networks Applied to Fluid Flow in Complex 3D Porous Media. Transport in Porous Media. 2021, 140: 241–272. [12]W.H. Song, Y. Yin, C.J. Landry, M. Prodanović, Z.G. Qu, J. Yao. A local-effective-viscosity multi-relaxation-time lattice Boltzmann pore-network coupling model for gas transport in complex nanoporous media. SPE Journal, 2021, 26(01): 461-81. [13]Y. Yin, Z.G. Qu, T. Zhang, J.F. Zhang, Q.Q. Wang. Three-dimensional pore-scale study of methane gas mass diffusion in shale with spatially heterogeneous and anisotropic features, Fuel, 2020, 273:117750. [14]Z.G. Qu, Y. Yin, H. Wang, J.F. Zhang. Pore-scale investigation on coupled diffusion mechanisms of free and adsorbed gases in nanoporous organic matter. Fuel, 2020, 260: 116423. [15]Y. Yin, Z.G. Qu, J.F. Zhang. Multiple diffusion mechanisms of shale gas in nanoporous organic matter predicted by the local diffusivity lattice Boltzmann model. International Journal of Heat and Mass Transfer, 2019, 143: 118571. [16]Y. Yin, Z.G. Qu, J.F. Zhang. Pore-scale prediction of the effective mass diffusivity of heterogeneous shale structure using the lattice Boltzmann method. International Journal of Heat and Mass Transfer, 2019, 133: 976-985. Y. Yin, Z.G. Qu, J.F. Zhang. An analytical model for shale gas transport in kerogen nanopores coupled with real gas effect and surface diffusion. Fuel, 2017, 210: 569-577. | |
发明专利 | |
[1]一种强制风冷散热系统的优化设计方法及其装置. 专利号:ZL 2024 1 0149965.0, 授权日期:2024.04.30 [2]一种锂离子电池及温度自适应集流体. 专利号:CN202310370472. 5,授权日期:2025.10.17 [3]一种非共沸纳米乳液微型脉动热管自适应控温装置及方法. 专利号:ZL 2025 1 0827652.0,授权日期:2026.02.24 [4]一种变截面阀芯与非均匀排布组合的特斯拉型微通道热沉. 专利号:ZL 2025 1 0948485.5,授权日期:2026.02.27 | |
起草标准 | |
[1]动力电池端-云协同场景的模型与算法技术要求,T/SZBIA 0010-2024 | |
获奖荣誉 | |
2024年 深圳市坪山区聚龙领军人才 2020年 西安交通大学优秀研究生 2019年 国家留学基金委(CSC)奖学金 2016年 陶文铨院士奖学金 2015年 山东省优秀学士学位论文 2014年 山东省优秀毕业生 | |
学术兼职 | |
| |


