- [1] Zhiyang Wang,Mengyi Li.Mengli Li,Fengshou Zhang,Yingwei Li.Hierarchical element integration technique in discrete element simulation of rock failure.Computers and Structures
- [2] Mengyi Li.Zhijun Wu,Lei Weng,Yuan Zhou,You Wu.Cross-scale analysis for the thermo-hydro-mechanical (THM) effects on the mechanical behaviors of fractured rock: Integrating mesostructure-based DEM modeling and machine learning.Engineering Fracture Mechanics
- [3] Mengyi Li.Zhijun Wu,Fengshou Zhang,Zhiyang Wang.Characterizing thermo-hydro-mechanical behavior of rock using a grain interface-based discrete element model (GIB-DEM).Engineering Analysis with Boundary Elements
- [4] Mengyi Li.Lei Weng,Quansheng Liu,Zhaofei Chu.Modelling Thermo-hydro-mechanical (THM) Effect on the Hydro-mechanical Properties of Granite in Disposal System Using an Improved Meso-structure-Based DEM Model.Rock Mechanics and Rock Engineering
- [5] Zhiyang Wang.Ruifeng Zhao,Mengyi Li,Xiangyu Xu,Yingwei Li.Estimating the macro strength of rock based on the determined mechanical properties of grains and grain-to-grain interfaces.Journal of Mechanics and Physics of Solids
- [6] Mengyi Li.Lei Weng,You Wu,Zhiyang Wang,Quansheng Liu.Tensile strength degradations of mineral grain interfaces (MGIs) of granite after thermo-hydro-mechanical (THM) treatment.International Journal of Rock Mechanics and Mining Sciences
- [7] Mengyi Li.Lei Weng,Yuan Zhou,Quansheng Liu.Evaluating the pore characteristics of granite in disposal system under thermo-hydro-mechanical (T-H-M) coupling.International Journal of Rock Mechanics and Mining Sciences
- [8] Mengyi Li.Lei Weng,Quansheng Liu,Zhaofei Chu.Quantitative relationships between the mineral composition and macro mechanical behaviors of granite under different temperatures: Insights from mesostructure-based DEM investigations.Computers and Geotechnics
- [9] Mengyi Li.Lei Weng,Jian Ji,Quansheng Liu.Numerical Investigation of Coupled Effects of Temperature and Confining Pressure on Rock Mechanical Properties in Fractured Rock Mass Using Thermal-Stress-Aperture Coupled Model.International Journal of Geomechanics
- [10] Mengyi Li,Zhijun Wu.Thermal-Stress-Aperture Coupled Model for Analyzing the Thermal Failure of Fractured Rock Mass.International Journal of Geomechanics
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李孟熠
职务:特聘副研究员
主要任职:
个人信息
硕士生导师- 教师拼音名称:Li Mengyi
- 出生日期:1997-05-10
- 电子邮箱:
- 入职时间:2024-12-07
- 所在单位:土木建筑工程学院
- 职务:特聘副研究员
- 学历:博士研究生毕业
- 办公地点:武汉大学工学部土木建筑工程学院第十教学楼南303
- 性别:女
- 在职信息:报到中
- 毕业院校:武汉大学
- 学科:岩土工程
曾获荣誉:
- 2025ISRM Rocha Medal Runner-Up(全球每年2-3名,2026年度唯一获奖中国人)
- 2024ISRM罗哈奖提名奖(原中国岩石力学与工程学会优秀博士学位论文奖,以第1名获奖)
- 2023腾讯首届“碳寻奖”(专题负责人)
- 2025《Rock Mechanics Bulletin》优秀审稿专家
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