简介
浙江台州人,2017年东北大学博士毕业。2017年10月参加工作,现为浙江理工大学机械与自动控制学院副教授。在国内外期刊上累计发表学术论文40余篇,其中以第一作者发表论文被SCI收录18篇(包括流体力学顶级期刊Physics of Fluds等),EI收录3篇。申请国家发明专利7项。主持国家自然科学基金1项,中国博士后科学基金一等资助1项(已结题),省基金2项(已结题1项)。
学术主页:https://www.researchgate.net/profile/Linmin_Li2
教育及工作经历
2019.12 –:浙江理工大学 | 机械与自动控制学院 | 副教授/硕导
2017.12 –2020.06:河海大学 | 水利水电学院 | 博士后
2017.10 –2019.12:河海大学 | 能源与电气学院 | 讲师
2013.09 – 2017.10:东北大学 | 工程热物理 | 博士(直博)
2009.09 – 2013.07:东北大学 | 热能与动力工程 | 学士
研究领域
主要研究方向为:多相流数值计算方法、多尺度相界面及流动结构仿真技术。
https://space.bilibili.com/477178270
代表性论文有:
[1] Li Linmin, Wang Zhengdong, Li Xiaojun, Zhu Zuchao, Multiscale modeling of tip-leakage cavitating flows by a combined volume of fluid and discrete bubble model, Physics of Fluids, 2021, 33, 062104. (SCI)
[2] Li Linmin, Wang Zhengdong, Li Xiaojun, Zhu Zuchao, Very Large Eddy Simulation of Cavitation from Inception to Sheet/Cloud Regimes by A Multiscale Model, China Ocean Engineering, 2021, 35, 361-371.
[3] Li Linmin, Li Xiaojun, Zhu Zuchao, Li Baokuan, Numerical modeling of multiphase flow in gas stirred ladles: from a multiscale point of view,Powder Technology, 2020, 373: 14-25. (SCI)
[4] Li Linmin, Hu Daiqing, Liu Yucheng, et al., Large Eddy Simulation of Cavitating Flows with Dynamic Adaptive Mesh Refinement using OpenFOAM, Journal of Hydrodynamics, 2020, 32, 398–409. (SCI)
[5] Li Linmin, Ding Wenyang, Xue Feifei, Xu Chang, Li Baokuan, Multiscale Mathematical Model with Discrete-Continuum Transition for Gas-Liquid-Slag Three-Phase Flow in Gas-Stirred Ladles, JOM, 2018, 70: 2900-2908. (SCI)
[6] Li Linmin, Li Baokuan, Implementation and validation of a volume-of-fluid and discrete-element-method combined solver in OpenFOAM,Particuology, 2018, 39: 109-115. (SCI)
[7] Li Linmin, Li Baokuan, Liu Zhongqiu, Modeling of spout-fluidized beds and investigation of drag closures using OpenFOAM, Powder Technology, 2017, 305: 364-376. (SCI)
[8] Li Linmin, Li Baokuan, Hu Zhiqiang, Lin Yang, Cheung Sherman C.P., Large eddy simulation of unsteady shedding behavior in cavitating flows with time-average validation, Ocean Engineering, 2016, 125: 1-11. (SCI)