发布时间:2024-03-29

姓 名:程 壮
性 别:男
出生年月:1988年10月
职 称:副教授/硕士生导师
学 历:博士研究生
学 位:工学博士学位
邮 箱:zhuangcheng@whut.edu.cn
教育与工作经历:
2025.02 至今, 武汉理工大学,特设教授
2021.12至今, 武汉理工大学,副教授,硕士生导师
2018.09~2021.04 香港城市大学,历任博士后、助理研究员、副研究员
2014.09~2018.06 香港城市大学,博士 (岩土工程)
2013.07~2014.06 浙江大学, 科研助理
2006.09~2013.06 三峡大学, 学士(土木工程)、硕士(岩土工程)
主要研究方向:
(1) 岛礁岩土工程
(2) 岩土材料宏微观力学行为测试与数值仿真
(3) 土与结构相互作用
(4) 机器学习在岩土工程中的应用
代表性科研项目:
(1) 国家自然科学基金面上项目, 2026.01-2029.12,主持
(2) 国家自然科学基金青年项目, 2023.01-2025.12,主持
(3) 湖北省**计划创新人才项目,2024-2029,主持
(4) “武汉英才”优秀青年人才项目,2023-2025,主持
(5) 中央高校基本科研业务费专项资金,2022.01-2023.10,主持
(6) 国家自然科学基金资助项目, 2018.01-2022.12,参与 (项目负责人:王剑锋教授)
(7) 香港研资局资助项目:Micromechanical Investigation of Sands Using Machine Learning Methods, 2021.01-2023.12, 参与 (项目负责人:王剑锋教授)
(8) 香港研资局资助项目:Tackling Particle Morphology in the Micromechanical Study of Crushable Sands: A Combined Experimental, Theoretical and Numerical Approach, 2017.01-2020.12, 参与 (项目负责人:王剑锋教授)
主要成果简述:
程壮,特设教授,湖北省高层次人才,武汉英才,武汉理工大学15551青年拔尖人才(第二层次)。主要从事海洋岩土工程、岩土材料破坏机制试验与数值仿真研究。在岩土材料宏微观力学行为测试、材料变形的非接触测量方法和离散介质材料破坏数值仿真等领域取得了一系列研究成果。近年来主持/参与国家自然科学基金、国家重点研发计划课题、香港研资局项目和中央高校基本科研业务费专项资金项目等课题10余项,在Géotechnique, Engineering Geology, International Journal for Numerical and Analytical Methods in Geomechanics, Computers and Geotechnics, Acta Geotechnica和Soils and Foundations等岩土领域国际/国内知名SCI/EI期刊上发表学术论文30余篇,授权国家发明专利5项,获英国土木工程师学会“Early Career Award”(2023)、中国分析测试协会“CAIA奖科学技术一等奖”(2023)和香港工程师学会“Ringo Yu Prize for Best PhD Thesis in Geotechnical Studies”(2019)等学术奖励。现为SCI期刊Deep Underground Science and Engineering (JCR Q1), Rock Mechanics Bulletin (JCR Q1)青年编委,Applied Sciences 特邀编辑,教育部学位论文评审专家和Acta Geotechnica, Computers and Geotechnics, Soils and Foundations, Géotechnique Letters, Powder Technology, Granular Matter, Journal of Rock Mechanics and Geotechnical Engineering, Experimental Mechanics,Transportation Geotechnics等20余个SCI期刊论文评审专家。
代表性论文:
[1] Cheng Z., Wang JJ, Xu DS. & Fan XC. (2026). Impact of loading platen rotation and initial specimen tilting on drained triaxial compression of granular soils: DEM insights. Acta Geotechnica, DOI: 10.1007/s11440-026-02965-z. (In Press)
[2] Cheng Z., Wang JF., Xu DS. & Fan XC. (2025). Fracturing Behavior of Fine-Grained Soil Mixtures under Uniaxial Compression Studied Using X-Ray Microtomography. International Journal of Geomechanics, ASCE, 25 (4), 04025031.
[3] Cheng Z., Wang JF. & Xiong W. (2024). A machine learning-based strategy for experimentally estimating force chains of granular materials using X-ray micro-tomography. Géotechnique, 74(12):1291-1303.
[4] Cheng Z. & Wang, JF. (2021) An investigation of the breakage behaviour of a pre-crushed carbonate sand under shear using X-ray micro-tomography. Engineering Geology, 293, 106286
[5] Zhou B., Ku Q., Li C., Wang H., Dong Y. & Cheng, Z*. (2022). Single-particle crushing behaviour of carbonate sands studied by X-ray microtomography and a combined finite–discrete element method. Acta Geotechnica, 17 (8), 3195-3209.
[6] Cheng Z., Wang JF., Zhou B. & Xiong W. (2023). The micromechanical behaviour of sand-rubber mixtures under shear: A numerical study based on X-ray micro-tomography. Computers and Geotechnics, 163, 105714.
[7] Cheng Z., Li W. & Wang JF. (2020). The micromechanical behavior of sand-rubber mixtures under shear: An experimental study based on X-ray micro-tomography. Soils and Foundations. 60(5), 1251-1268
[8] Cheng Z., Wang JJ., Xu DS. & Fan XC. (2024). DEM study on the micromechanical behaviour of sand-clay mixtures. Powder Technology, 435, 119400.
[9]. Cheng Z, He B, Xu DS, Fan XC. & Shen H. (2026). A CFD-DEM study on seepage erosion and pore-structure evolution in gap-graded soils with irregular grain shapes. Powder Technology, 471, 122073.
[10] Cheng Z. & Wang JF. (2018) Quantification of particle crushing in consideration of grading evolution of granular soils in biaxial shearing: A probability-based model. International Journal for Numerical and Analytical Methods in Geomechanics. 42, 488-515.
[11]. Cheng Z. & Wang JF. (2018) A particle-tracking method for experimental investigation of kinematics of sand particles under triaxial compression. Powder Technology, 328, 436-451
[12]. Cheng Z. & Wang JF. (2018) Experimental investigation of inter-particle contact evolution of granular materials using X-ray micro-tomography. Soils and Foundations. 58(6), 1492-1510.
[13]. Cheng Z, Li JY, Wang JJ, Xu DS, Fan XC.(2025). Microstructural evolution and fabric anisotropy in carbonate sand: A DEM study. Powder Technology, 465, 121323.
[14] Cheng Z. & Wang JF. (2022) Estimation of contact forces of granular materials under uniaxial compression based on a machine learning model. Granular Matter, 24 (1), 17.
[15] Wu MM, Wang JF, Russell A, Cheng Z. (2021) DEM modelling of mini-triaxial test based on one-to-one mapping of sand particles. Géotechnique 71 (8), 714-727.
科研奖励:
1. “Early Career Award”,英国土木工程师学会,2023,(1/1)
2. “Ringo Yu Prize for Best PhD Thesis in Geotechnical Studies”,香港工程师学会,2019,(1/1)
3. “CAIA奖科学技术一等奖”,中国分析测试协会,2023,(3/4)
学术兼职:
1. Deep Underground Science and Engineering, 青年编委
2. Rock Mechanics Bulletin,青年编委
3. Applied Sciences,特邀编辑
4. 本科院校专任教师正高级职称函评专家
5. 教育部学位论文评审专家
6. 长期担任如下期刊论文评审专家:
《Acta Geotechnica》, SCI
《Computers and Geotechnics》, SCI
《Powder Technology》, SCI
《Journal of Rock Mechanics and Geotechnical Engineering》, SCI
《Soils and Foundations》, SCI
《Géotechnique Letters》, SCI
《Granular Matter》, SCI
《Experimental Mechanics》, SCI
《Advanced Powder Technology》, SCI
《Marine Georesources & Geotechnology》, SCI
《Soil dynamics and Earthquake Engineering》, SCI
《Transportation Geotechnics》, SCI
《Expert Systems With Applications》, SCI
《Measurement》, SCI
《Particuology》, SCI
《Petroleum Science and Technology》, SCI
《Scientific Report》, SCI
《Precision Engineering》, SCI
《Results in Engineering》, SCI
《Case Studies in Construction Materials》, SCI
《Rock Mechanics Bulletin》, ESCI
《Deep Underground Science and Engineering》,ESCI
对研究生的期待:
1. 热爱生活,乐观积极,有上进心
2. 对科研有浓厚的兴趣,善于思考
3. 求真务实,有责任心,有毅力
可接收武汉理工大学本部学硕(专硕)/海南专项/襄阳专项的研究生,热忱欢迎对岛礁岩土工程、岩土工程数值模拟和试验方法有兴趣的同学联系!
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