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Yong Li

2023-06-07Editor:王剑秋


 

Name/姓名



Yong Li/李勇

Gender/性别

Male/

Position/职称

Professor/教授

Address/通信地址

12550 Erhuan East Road, Room B206, High-speed   Building, Xinglongshan Campus, Shandong University, Jinan, Shandong Province,   250002, P.R. China

Tel/办公电话

+86-531-8839-9320

E-mail/邮箱

yongli@sdu.edu.cn  

Education/教育背景

Degree, Time(YYYY), Major, University

学位,时间,专业,学校,

Oct 2007 – Oct 2008 University of Kansas

Visiting Ph.D. student,   Geotechnical Engineering

Lawrence, Kansas, United States

Sep 2006 – Dec 2009 Shandong University

PhD, Engineering Mechanics

Jinan, Shandong Sheng, China

Sep 2003 – Jun 2006 Shandong University

Master of Engineering,   Geotechnical Engineering

Jinan, Shandong Sheng, China

Sep 1999 – Jun 2003 Shandong University

Bachelor of Engineering, Civil   Engineering

Jinan, Shandong Sheng, China

Working Experience/工作经历

Time(MM/YYYY-MM/YYYY), Position, Organization, Country/City

时间,岗位,机构,国家/城市

Jan 2010-now

School of   Qilu Transportation, Shandong University

Geotechnical   & Structural Engineering Research Center, Shandong University

Aug 2017 Aug 2018 Visiting   scholar

University of   Minnesota Twin Cities, Department of Civil, Environmental and   Geo-Engineering, United States

Invited by   Prof. Joseph Labuz

Jan 2017 Feb 2017 Visiting   scholar

Sungkyunkwan   University, Suwon, South Korea

Sep 2016 Oct 2016 Visiting   scholar

University of   Tokyo, Geotechnical Testing Laboratory

Tokyo, Japan

Jul 2015 Aug 2016 Visiting   scholar

University of   Oklahoma, Department of Engineering

Norman,   Oklahoma, United States

Feb 2014 Mar 2014 Visiting   scholar

Durham   University, School of Engineering and Computing Sciences

Durham,   England, United Kingdom

Jan 2011 Feb 2011 Visiting   scholar

Waseda   University, Department of Civil and Environmental Engineering

Tokyo, Japan

Research Interests/研究方向

1. Physical and numerical modelling in geotechnical   engineering

2. Surrounding rock mass stability and excavation   optimization analysis in underground projects

3. Mechanical behaviors of jointed rock mass

4. Hydraulic fracturing in fractured rock mass

5. Crack propagation mechanism of brittle or   quasi-brittle materials

 

Selected Projects/科研项目

1. Investigations   on the mechanism of hydraulic fracturing and its geomechanical response to   original faults in complex shale gas formations, Natural Science   Foundation of China, 2019 – 2022, Principal investigator.

2. Discontinuous deformation analysis on   hydraulic fracturing rock mass considering the influence of non-Darcy flow, a   free exploration funding from School of Qilu Transportation, Shandong   University, 2019 – 2021, Principal investigator.

Professional Affiliations/学术兼职

1. A member of Chinese Society for Rock Mechanics   & Engineering (CSRME);

2. A member of International Society for Rock   Mechanics & Rock Engineering (ISRM);

3. A member of American Rock Mechanics Association   (ARMA);

4. A member of American Society of Civil Engineers   (ASCE)

Honors and Awards/奖励与荣誉

1. A nomination award of excellent doctoral thesis   of CSRME in 2011

2. The third prize of young teachers' teaching   competition of Shandong University in 2016

3. The first science and technology progress award   of CSRME in 2018

4. The second technical invention award of CSRME in   2019

5. A nomination award of International Tunnelling   and Underground Space Association (ITA) in 2018

6. A nomination award of International Tunnelling   and Underground Space Association (ITA) in 2019

Selected Publications

[1] Chen Wang, Yong Li*, Feng Dai, Guannan Wu, Futong Yin, Kunpeng Li, Kai, Wang. Experimental   investigation on mechanical properties and failure mechanism of rock-like   specimens containing an arc-shaped ice-filled flaw under uniaxial   compression. Theoretical and Applied Fracture Mechanics, 06/2022; DOI:   10.1016/j.tafmec.2022.103368 (SCI, EI收录)

[2] Weibing Cai, Yong Li*, Kai Wang. Crack propagation mechanism of rock-like specimens   containing non-parallel flaws subjected to internal hydraulic pressure and   shear loading. Theoretical and Applied Fracture Mechanics, 06/2022; DOI:   10.1016/j.tafmec.2022.103350 (SCI, EI收录)

[3] Weibing Cai, Yong Li*,Ke Gao, Kai Wang. Crack propagation mechanism in rock-like   specimens containing intermittent flaws under shear loading. Theoretical   and Applied Fracture Mechanics, 02/2022; DOI: 10.1016/j.tafmec.2021.103187 (SCI, EI收录)

[4] Weiqiu Kong, Yong Li*, Lichao Nie, Zhenxing Dong, Weibing Cai, Zhiheng Wang, Kai Wang. Experimental   and numerical investigations on crack propagation characteristics of   rock-like specimens with preexisting flaws subjected to combined actions of   internal hydraulic pressure and shear force. Archive of Applied   Mechanics, 09/2021; DOI: 10.1007/s00419-021-02052-7 (SCI, EI收录)

[5] Zhiheng Wang, Yong Li*, Weibing Cai*, Weishen Zhu, Weiqiu Kong, Feng Dai, Chen Wang, Kai   Wang. Crack propagation process and acoustic emission characteristics of   rock-like specimens with double parallel flaws under uniaxial compression.   Theoretical and Applied Fracture Mechanics, 08/2021; DOI: 10.1016/j.tafmec.2021.102983   (SCI, EI收录)

[6] Bangxiang Li, Song Yu*, Weishen Zhu, Lei Yang, Weibing Cai, Yiguo Xue, Yong   Li*. The crack coalescence mode and physical   field evolutionary characteristics of a brittle material containing two 3-D   parallel embedded flaws. Theoretical and Applied Fracture Mechanics, 12/2020;   110: 102836.; DOI: 10.1016/j.tafmec.2020.102836 (SCI, EI收录)

[7] Bangxiang Li, Song   Yu*, Weishen Zhu, Weibing   Cai, Lei Yang, Yiguo Xue, Yong Li*. The Microscopic   Mechanism of Crack Evolution in Brittle Material Containing 3-D Embedded Flaw. Rock Mechanics and   Rock Engineering, 2020(53): 5239-5255. (SCI, EI收录)

[8]   李勇*, 蔡卫兵,朱维申,董振兴,吴冠男,李晓静,王汉鹏. 水力耦合作用下裂纹扩展演化机理的试验和颗粒流分析[J]. 工程科学与技术, 2020, 52(3): 21-31. (EI收录)

[9] Chao Wei, Yong Li*, Weishen Zhu, Shucai   Li, Shugang Wang, Hanpeng Wang. Experimental   observation and numerical investigation on propagation and coalescence   process of multiple flaws in rock-like materials subjected to hydraulic   pressure and far-field stress. Theoretical and Applied Fracture   Mechanics, 08/2020; 108: 102603.; DOI: 10.1016/j.tafmec.2020.102603 (SCI, EI收录,IF=4.017)

[10] Yong Li, Hanpeng Wang*,   Weibing Cai*, Shucai Li, Qiangyong   Zhang. Stability monitoring of   surrounding rock mass on a forked tunnel using both strain   gauges and FBG sensors. Measurement   03/2020; 153: 107449.; DOI:10.1016/j.measurement.2019.107449 (SCI, EI收录)

[11] 董振兴, 李勇*, 朱维申, 蔡卫兵, 徐翔. 水压作用含贯穿裂隙类岩石试件力学性能研究[J]. 地下空间与工程学报, 2020, 16(1), 64-72.

[12] 李勇*, 蔡卫兵, 朱维申, 董振兴, 张强勇. 单轴压缩条件下平行双裂隙演化机理的颗粒流分析[J]. 中南大学学报(自然科学版) , 2019, 50(12):   3035-3045. (EI收录)

[13] 王知深, 李勇*, 朱维申, 薛翊国, 虞松, 王旌, 董振兴. 高地应力地区围岩劈裂破坏现场监测和能量耗散模型及应用[J]. 工程科学与技术, 2018, 50(2): 50-59. (EI收录)

[14] Yong Li*, Hao Zhou, Zhenxing Dong, Weishen Zhu, Shucai Li,   Shugang Wang: Numerical investigations   on stability evaluation of a jointed rock slope during excavation using an optimized   DDARF method. Geomechanics and Engineering 02/2018; 14(3).,   DOI:10.12989/gae.2018.14.3.271 (SCI,   EI收录)

[15] Zhishen Wang, Yong   Li*, Weishen Zhu, Yiguo Xue, Bei Jiang, Yanbo Sun: Field monitoring of splitting failure for surrounding rock masses and   applications of energy dissipation model. Geomechanics and Engineering   04/2017; 12(4):595-609., DOI:10.12989/gae.2017.12.4.595 (SCI, EI收录)

[16] Shucai Li, Hanpeng   Wang, Yong Li*, Qingchuan Li, Bing   Zhang, Hangyang Zhu: A new mini-grating   absolute displacement measuring system for static and dynamic geomechanical   model tests. Measurement 04/2017; 105(C):25-33.,   DOI:10.1016/j.measurement.2017.04.002 (SCI, EI收录)

[17] Qi Wang, Bei   Jiang, Yong Li*, Xing Shao, Fuqi   Wang, Shucai Li, Shiguo Zhang, Guoqiang Ruan: Mechanical behaviors analysis on a square-steel-confined-concrete   arch centering and its engineering application in a mining project.   European Journal of Environmental and Civil Engineering 03/2017;   21(4):389-411., DOI:10.1080/19648189.2015.1124809 (SCI, EI收录)

[18] Yong Li*, Chao Li, Lei Zhang, Weishen Zhu, Shucai Li, Jian   Liu: An experimental investigation on   mechanical property and anchorage effect of bolted jointed rock mass.   Geosciences Journal 02/2017; 21(2)., DOI:10.1007/s12303-016-0043-8 (SCI, EI收录)

[19] Yong Li*, Hao Zhou, Lei Zhang, Weishen Zhu, Shucai Li, Jian   Liu: Experimental and numerical   investigations on mechanical property and reinforcement effect of bolted   jointed rock mass. Construction and Building Materials 10/2016; 126.   DOI:10.1016/j.conbuildmat.2016.09.100 (SCI,   EI收录)

[20] Hanpeng Wang, Yong   Li*, Shucai Li, Qingsong Zhang, Jian Liu: An elasto-plastic damage constitutive model for jointed rock mass   with an application. Geomechanics and Engineering 06/2016; 11(1).   DOI:10.12989/gae.2016.11.1.077 (SCI,   EI收录)

[21] Yong Li*, Hao Zhou, Weishen Zhu, Shucai Li, Jian Liu: Experimental and numerical investigations   on the shear behavior of a jointed rock mass. Geosciences Journal   05/2016; 20(3). DOI:10.1007/s12303-015-0052-z (SCI, EI收录)

[22] Yong Li*, Weishen Zhu, Jinwei Fu, Yunhua Guo, Yinping Qi: A damage rheology model applied to   analysis of splitting failure in underground caverns of Jinping I hydropower   station. International Journal of Rock Mechanics and Mining Sciences   10/2014; 71. DOI:10.1016/j.ijrmms.2014.04.027 (SCI, EI收录)

[23] Wei-shen Zhu, Yun-juan Chen, Shu-cai Li, Fu-qiang   Yin, Song Yu, Yong Li: Rock failure and its jointed surrounding   rocks: A multi-scale grid meshing method for DDARF. Tunnelling and   Underground Space Technology 07/2014; 43. DOI:10.1016/j.tust.2014.05.015 (SCI, EI收录)

[24] Zhu Weishen, Yong   Li*, Li Shucai, Wang Shugang, Zhang Qianbing: Quasi-three-dimensional physical model tests on a cavern complex   under high in-situ stresses. International Journal of Rock Mechanics and   Mining Sciences 02/2011; 48(2). DOI:10.1016/j.ijrmms.2010.11.008 (SCI, EI收录)

[25] W. S. Zhu, Q. B. Zhang, H. H. Zhu, Y. Li, J.-H. Yin, S. C. Li, L. F.   Sun, L. Zhang: Large-scale   geomechanical model testing of an underground cavern group in a true   three-dimensional (3-D) stress state. Canadian Geotechnical Journal   09/2010; 47(9). DOI:10.1139/T10-006 (SCI,   EI收录)