页面标题
团队教师
团队教师

【姓名】聂家岩

【职称】特聘副研究员

【地址】武汉大学工学部十教508

【邮箱】njiayan@mail.tsinghua.edu.cn

【研究方向】砂土多尺度力学行为、土体内部侵蚀机制、岩屑流防治、月壤原位物理力学行为、岩土工程可靠度分析

  • 教育与工作背景
  • 发表论文
  • 获奖成就

学习经历
2011.09-2015.06,学士,山东大学

2018.10-2019.10 ,访问学者,香港科技大学,导师:赵吉东教授

2015.09-2020.08,博士,武汉大学,导师:Kok-Kwang Phoon (方国光) 教授、李典庆教授


任职经历

2023.01至今,特聘副研究员,武汉大学,土木建筑工程学院

2020.10-2022.12,博士后/教学助理,清华大学,水利系

2020.08-2020.09,研究助理,武汉大学,水利水电学院 

期刊论文
[1]. Nie J.Y., Cui, Y.F.*, Senetakis, K., Guo, D., Wang, Y., Wang, G.D., Feng, P., He, H.Y.,  Zhang, X.H., Zhang, X.P., Li, C.H., Zheng, H., Hu, W., Niu, F.J., Liu, Q.X., Li, A.Y. (2023). Predicting residual friction angle of lunar regolith based on Chang’E-5 lunar samples. Science Bulletin. (Accept). (JCR: Q1, 影响因子: 20.577). 

[2]. Wang, Y., Nie, J.Y.*, Zhao, S.W., Wang, H. (2023) A coupled FEM-DEM study on mechanical behaviors of granular soils considering particle breakage. Computers and  Geotechnics. (1st round review, major revision).

[3]. Zhang, L, Nie, J.Y.*, Shi, B., Han, H.M., Wu, J.H., Cui, Y.F. (2023). Calculation the  opening of neighboring surface cracks in concrete structure based on OFDR technology.  Constructions and Building Materials. (2nd round review, minor revision). 

[4]. Nie J. Y., Shi X. S., Yang, Z. Y., & Cui, Y. F. (2022). Numerical evaluation of particle shape’s  effect on small strain properties of granular soils. Engineering Geology. 303,106652.(JCR:  Q1, 影响因子: 6.755). DOI: 10.1016/j.enggeo.2022.106652. 

[5]. Yang, Z. Y., Liu, Y. D., Nie, J. Y.* , & Li, X. Y. (2022). Efficient estimation of cumulative  distribution functions of multiple failure modes using advanced generalized subset  simulation. International Journal for Numerical and Analytical Methods in Geomechanics.  Accept. (JCR: Q1, 影响因子: 4.264). DOI: 10.1002/nag.3337. 

[6]. Nie, J. Y., Cui, Y. F., Yang, Z. Y., Yin, Y. Z., Cao, Z. J., & Li, D. Q. (2022). Effect of  heterogeneity of particle properties on variability of laboratory sandy soil properties: A  random discrete element perspective. Computers and Geotechnics. 141, 104497. (JCR: Q1,  影响因子: 4.956) DOI: 10.1016/j.compgeo.2021.104497. 

[7]. Nie, J. Y., Zhao, S. W., Cui, Y. F., & Wang, Y. (2022). Coupled effects of particle regularity  and sliding friction on the shear behavior of uniformly graded dense sands. Journal of rock  mechanics and geotechnical engineering. Accept. (JCR: Q1, 影响因子: 4.338) 

[8]. Nie, J. Y., Zhao, J. D., Cui, Y. F., & Li, D. Q. (2022). Correlation between grain shape and  critical state characteristics of uniformly graded sands: A 3D DEM study. Acta Geotechnica. 1-16. (JCR: Q1, 影响因子: 5.942) DOI: 10.1007/s11440-021-01362-y. 

[9]. Nie, J. Y., Cao, Z. J., Li, D. Q., & Cui, Y. F. (2021). 3D DEM insights into the effect of  particle overall regularity on macro and micro mechanical behaviours of dense sands. Computers and Geotechnics. 132, 103965. (JCR: Q1, 影响因子: 4.956) DOI: 10.1016/j.compgeo.2020.103965. 

[10].Nie, J. Y., Li, D. Q., Cao, Z. J., Zhou, B., & Zhang, A. J. (2020). Probabilistic  characterization and simulation of realistic particle shape based on sphere harmonic  representation and Nataf transformation. Powder Technology. 360, 209-220. (JCR: Q1, 影 响因子: 5.134) DOI: 10.1016/j.powtec.2019.10.007

会议论文
[1]. Nie, J. Y., Yang, Z. Y., Li, D. Q., Cao, Z. J. & Tang, X. S. (2018). Meta-Modelling of Particle  Breakage Characteristics in Dem Simulation. In Proceedings of the 6th International  Symposium on Reliability Engineering and Risk Management. 31 May - 1 June 2018,  Singapore. 

[2]. Nie, J. Y., Yin, Y. Z., & Cui, Y. F. (2022). Effect of Micro Pore Structure on the Suffusion  of Wide-grading Loose Soils. In Proceedings of the 7th International Young Geotechnical  Engineers Conference. 29 April - 1 May 2022, Sydney, Australia.
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2. 国家自然科学基金委专项项目:月壤多尺度力学特性与工程资源利用技术,主要参与人,负责月球样品颗粒几何、摩擦和力学属性指标测定,2023.01-2026.12. 

3. 清华大学自主科研计划青年教师创新课题:月壤原位物理力学行为研究,主要参与人,协助项目负责人成功申请嫦娥“5”号返回月球样品 3 份,并负责开展月壤颗粒基本物理力学属性测试及考虑复杂颗粒间作用力的离散元仿真模拟工作,2021.11- 2023.04 

4. 国家自然科学基金委重大专项子课题:川藏铁路重大灾害风险识别与预测,主要参与人,承担岩屑流灾害风险识别与预测工作,2020.01-2023.12 

5. 国家自然科学基金委面上项目:降雨作用下宽级配土内部细颗粒运移及其灾变机理,主要参与人,承担考虑真实颗粒形态的计算流体动力学-离散元耦合分析,2020.10- 2023.10 

6. 深圳市技术攻关重点项目子课题:基于岩土边坡渐进破坏机理的高性能离散元仿真分析软件关键技术研发,主要参与人,协助项目负责人成功申请该项目,并承担岩土体渐进破坏多尺度分析工作,撰写项目结题报告,2019.09-2020.12