王伟

发布时间:2013-07-25


王伟,1978年生,安徽合肥人,博士、教授、博士生导师,江苏省“青蓝工程”中青年学术带头人,江苏省“六大人才高峰”,中国知网高被引学者TOP1%。博士毕业于法国蒙彼利埃第二大学,法国国家科研中心里尔力学实验室(CNRS, UMR 8107)博士后,加拿大多伦多大学滑铁卢大学国家公派访问学者法国里尔大学和法国里尔中央理工大学访问学者。现任江苏省岩土力学与环境国际合作联合实验室副主任。

获省部级科技奖10项,主持国家自然科学基金3项(面上2项,青年1项),国家重点研发计划项目专题1项,承担“973项目”子课题1项,参与自然科学基金重点基金项目1项,面上项目3项,科技支撑计划项目1项,江苏省“双创”团队项目1项,主持和参加10多项重大横向课题,主持教改项目5项,其中省级项目1项。发表论文200余篇,其中SCI论文86篇,EI论文52篇,第一或通讯作者SCI论文45篇(其中中科院1区和2区论文23篇),授权专利30项,软件著作权13项。

学术兼职
  中国岩石力学与工程学会地下工程分会常务理事、岩土多场耦合专业委员会委员、岩石工程设计方法分会理事、中国岩石力学学会青委会委员、岩体物理数学模拟专业委员会委员、国际岩石力学与岩石工程学会会员

研究方向

岩土类材料多场耦合力学、岩体流变损伤力学、滑坡风险评估和预警、边坡与地下岩石工程

主讲课程
  本科:岩石力学、土力学、工程导论;研究生:高等岩石力学、非饱和岩土力学;留学生:Advanced Rock Mechanics, Soil Mechanics

主要成果
负责或参与的主要纵向科研项目

  1. 国家重点研发计划项目课题,“水动力型特大滑坡灾害风险防控技术与工程应用示范,编号2017YFC1501106。(专题负责)。

  2. 国家自然科学基金面上项目,“水化学作用对脆性岩石渗流应力耦合及流变力学特性影响的试验研究,编号12072102”

  3. 国家自然科学基金面上项目,“低渗透岩石渗流-应力-流变耦合力学特性及渗透演化规律的试验研究,编号11672343”

  4. 国家自然科学基金青年项目,“水力耦合作用下岩石流变力学特性与渗透性试验研究,编号51109069”

  5. 国家“973项目”课题,“复杂环境下工程边坡岩体时效力学特性,编号2011CB013504”。(子课题负责)

  6. 国家自然科学基金重点项目,“高坝大库水动力型滑坡致灾机理研究,编号51939004。(主要研究人员)

  7. 国家科技支撑项目课题,“石油储备地下水封洞库工程安全技术,编号2012BAK03B04”。(主要研究人员)

  8. 教育部留学回国人员科研启动基金,“岩石流变损伤变形机理的试验与模型研究,编号51103312”

  9. 教育部博士点基金,“化学腐蚀下岩石流变力学特性的试验研究,编号20090094120016)”。

  10. 国家自然科学基金和法国国家科研署联合基金项目,“各向异性岩石力学研究, 编号50911130366)。(主要研究人员)

  11. 国家自然科学基金面上项目,“粘土岩细-宏观水-力耦合机理及围岩稳定性分析,编号11272114”。(主要研究人员)

  12. 国家自然科学基金面上项目,“准脆性岩石各向异性水力耦合时效损伤多尺度本构模型研究,编号11272114”。(主要研究人员)


代表性论文或论著

  1. 岩土工程测试技术,冶金工业出版社,沈扬,张文慧,王伟,15万字,2013.

  2. Zhang KuanWangWei(王伟),CaoYajunLiuShifanDuanXuelei. Brittleness evaluation and damage evolution of sandstone under hydromechanical coupling, International Journal of Damage Mechanics, 2025, 34(1), 81-115.

  3. Shifan Liu, Wei Wang(王伟), Y Jia, Hanbin Bian, Wanqing Shen. Modeling of hydro-mechanical coupled fracture propagation in quasi-brittle rocks using a variational phase-field methodRock Mechanics and Rock Engineering, 2024(54):7079-7101.

  4. Rong Haoyu, Wang Wei(王伟), Li Guichen,  Liang Dongxu, Jiahui Xu.Macroscopic and mesoscopic mechanism of hydration instability of the rock-grout coupled structure, Geomechanics and Geophysics for Geo-Energy and Geo-Resources, 2024(10): 99

  5. Yuhang Jiang, Wei Wang(王伟), Lifang Zou, Yajun Cao, Wei-Chau Xie. Investigating landslide data balancing for susceptibility mapping using generative and machine learning models. Landslides2024 https://doi.org/10.1007/s10346-024-02352-3

  6. Kuan Zhang, Wei Wang(王伟), Yajun Cao, Xuelei Duan, Shifan Liu, Dawei HuQuantitative evaluation methodology of rock brittleness based on complete stress-strain curve and energy damage evolution analysis, Journal of Rock Mechanics and Geotechnical Engineering2025.

  7. Kuan Zhang, Wei Wang(王伟), Yajun Cao, Xuelei Duan, Zhi Zheng, Qizhi Zhu. Experimental investigations of the rock brittleness evaluation under different loading conditionsRock Mechanics and Rock Engineering. 2025(58), 1473–1502. 10.1007/s00603-024-04265-y.

  8. Chao Chen, Wei Wang(王伟), Yajun Cao, Shifan Liu, Wanqing Shen, Qizhi Zhu, Effect of hydro-chemical corrosion on mechanical properties of red sandstone under uniaxial and triaxial compression, International Journal of Rock Mechanics and Mining Sciences, 2025, 185105967.

  9. Wenfeng Shen, Wei Wang(王伟), Xuelei Duan, Shifan Liu, Hao Wang, Qizhi Zhu. Mechanical behavior of granite under cyclic loading after a seawater cyclic thermal shock, Journal of Rock Mechanics and Geotechnical Engineering, 2025.

  10. Xuelei Duan, Wei Wang(王伟), Shifan Liu, Rubin Wang, Yajun Cao, Qizhi Zhu, Kuan Zhang. Experimental investigation and fractional elastoplastic damage constitutive modelling of gray sandstone under loading disturbance, Bulletin of Engineering Geology and the Environment, 2024, 83:495. 10.1007/s10064-024-03996-0.

  11. Sun Shiwei, Wang Wei(王伟), Shi-fan Liu, Qiang Zhang, Jun Wu, Qi-zhi Zhu. A Statistical Damage Model for Quasi-brittle Rocks Based on the Modified Hoek-Brown criterion and Lognormal Distribution, Bulletin of Engineering Geology and the Environment,2025,84:139. (online)

  12. Xuelei Duan, Wei Wang(王伟), Yajun Cao, Qiang Zhang, Qizhi ZhuRubin Wang. Effects of pore pressure on physio-mechanical behavior of Xiyu conglomerate subjected to loading-unloading cycles with varied amplitude, Journal of Rock Mechanics and Geotechnical Engineering, 2025. (online)

  13. Wang Wei(王伟), Chen Chao-wei, Cao Yajun, JIA Yun, LIU Shi-fan, SHEN Wan-qing. Mechanical properties and permeability evolution of sandstone subjected to the coupling effects of chemical-seepage-stress, Journal of Central South University, 2025. (online).

  14. Wei Wang(王伟), Wenfeng Shen*, Yajun Cao, Hao Wang, Jia He, Shiwei Sun. Uniaxial compression behaviour and energy evolution of joint rock repaired and reinforced with biocementation method, Rock Mechanics and Rock Engineering, 2025, 10.1007/s00603-024-04309-3.

  15. Wei Wang(王伟), Ping Le, Shi-fan Liu, Ya-jun Cao, Zhi-ping Mei, Qi-zhi Zhu. Experimental study on mechanical properties and brittleness of sandstone-concrete combined body under triaxial seepage-stress coupling, Construction and Building Materials, 2025, 465:140016online

  16. Yajun Cao, Xuelei Duan, Wei Wang(王伟), Qizhi Zhu, Dengfeng Zhao, Long Jiang, Qiang Zhang. Experimental investigation on the macro-mechanical behavior and micromechanical damage model of Xiyu conglomerate with pores and inclusions under triaxial compression, International Journal of Mining Science and Technology, 2024, 10.1016/j.ijmst.2024.10.006.

  17. Haoyu Rong, Wei Wang(王伟), Guichen Li, Guangming Zhao, Dongxu Liang, Jiahui Xu. Mechanical behaviour and acoustic emission characteristics of the reinforced soft muddy rock under various moisture content levels, International Journal of Coal Science & Technology, 2024(11):84.

  18. Yajun Cao, Wei Wang(王伟), Wanqing Shen, Xiaoyan Cui, Jianfu Shao. A new hybrid phase-field model for modeling mixed-mode cracking process in anisotropic plastic rock-like materials, International Journal of Plasticity, 2022, 157(103395). (SCI)

  19. Shi-Fan Liu, Wei Wang(王伟), Ya-Jun Cao, Hai-Feng Li, Jian-Fu Shao. Numerical study of the influence of loading rate on fracture mechanism in elastoplastic rock-like materials with a modified phase-field model, International Journal of Rock Mechanics and Mining Sciences, 2023, 162(2): 105309. (SCI)

  20. Wei Wang(王伟), Xuelei Duan, Yun Jia, Hanbin Bian, Liang CHEN, Qizhi Zhu, Yajun CAO. Damage evolution of sandstone based on acoustic emission under different seepage conditions, European Journal of Environmental and Civil Engineering, 2022, 26(11). (SCI)

  21. Wei Wang(王伟), Xuelei Duan, Jia Yun, Yajun Cao, Qizhi Zhu, Shifan Liu. Deformation characteristics, gas permeability and energy evolution of low-permeability sandstone under cyclic loading and unloading path, Bulletin of Engineering Geology and the Environment, 2022, 81:369. (SCI)

  22. Wei Wang(王伟), Shengyao Mei, Yajun Cao, Rubin Wang, Qizhi Zhu, Experimental Study on Property Modification of Jointed Rocks Subjected to Chemical Corrosion. European Journal of Environmental and Civil Engineering, 2020, 10.1080/19648189.2020.1752808. (SCI)

  23. Gong CG, Wang W(王伟), Shao JF, Wang RB, Feng XW, Effect of water chemical corrosion on mechanical properties and failure modes of pre-fissured sandstone under uniaxial compression, Acta Geotechnica, 2021(16):1083–1099. (SCI)

  24. Wei Wang(王伟), Shifan Liu, Chong Shi, Shanxi Zheng and Qizhi Zhu. Experimental study on the Mechanical Properties and Seepage Characteristics of Red Sandstone with a Single Persistent Joint under Triaxial Compression, Geofluids, 2021, Article ID 3884605, 13 pages. (SCI)

  25. Xi Chen, Wei Wang(王伟), Yajun Cao, Qizhi Zhu, Weiya Xu and Huaining Ruan. Experimental study of stress-seepage coupling properties of sandstone under different loading paths, Geofluids, 2021, Article ID 495501, 21 pages. (SCI)

  26. Haifeng Li, Wei Wang(王伟), Yajun Cao and Shifan Liu. Phase-field modeling fracture in anisotropic materials, Advances in civil engineering, 2021, Article ID 4313755. (SCI)

  27. Wang Wei(王伟), Liu JianAgostini Franck, et al. On the durability of a Ultra High Performance Concrete. Cement and Concrete Research, 2014, 55(1): 1-13. (SCI)

  28. Wang Wei(王伟), Liu Taogen, and Shao Jianfu. Effects of Acid Solution on the Mechanical Behavior of Sandstone. J. Mater. Civ. Eng., 2016, 28(1): 04015089. (SCI)

  29. Wang Wei(王伟), Shao Jianfu, Zhu Qizhi & Xu Weiya. A discrete viscoplastic damage model for time dependent behaviour of quasi brittle rocks, International Journal of Damage Mechanics, 2015, 24(1): 21-40. (SCI)

  30. Wang Wei(王伟), Cao Yajun, Zhu Qizhi et al.. Experimental Investigation and Constitutive Modelling of Creep-damage Behaviors in Monzogranite. European Journal of Environmental and Civil Engineering. 2015, 19: 54-69. (SCI)

  31. Wang Wei(王伟), Liu Hai-Xu, Zhu Qi-Zhi, Shao Jian-Fu. A micromechanics-based creep damage model for brittle rocks. European Journal of Environmental and Civil Engineering. 2015, 19: 1-14. (SCI)

  32. Wang Wei(王伟), Xie Shouyi, XU Weiya, Shao Jianfu. Experimental study and numerical modelling of thermo-mechanical behaviour of Tournemire argillite. European Journal of Environmental and Civil Engineering, 2013, 17: 174-186. (SCI)

  33. Wang Wei(王伟), Li Liangquan, Xu Weiya, Meng Qingxiang, Lv Jun. Creep failure mode and failure criterion of Xiangjiaba sandstone. Journal of Central South University of Technology, 2012, 19(12): 3572-3581.  (SCI)

  34. Wang Wei(王伟), Corn S., Ienny P. Characterization of mechanical properties of geomaterials by microindentation test : calibration and applications[J]. European Journal of Environmental and Civil Engineering, 200913(3): 305-328. (SCI)

  35. X.W. Feng, W. Wang(王伟), S.S. Yuan, R.B. Wang, Q.Z. Zhu & J. Yu. A coupled elastoplastic damage model for sandstone considering chemical corrosion, European Journal of Environmental and Civil Engineering, 2018, 22(s2):302-315. (SCI)

  36. TG Liu, Wei Wang(王伟), T Zeng. A numerical study of chemical degradation effects on elasticplastic behaviour of sandstone. European Journal of Environmental and Civil Engineering, 2020, 24(11): 1840-1854. (SCI)

  37. Meng Qing Xiang, Wang Wei(王伟). A Novel Closed-form Solution for Circular Openings in Generalized Hoek-Brown Media. Mathematical Problems in Engineering, vol. 2014, Article ID 870835, 7 pages, 2014.SCI

  38. Susheng Wang, Weiya Xu, Wei Wang*(王伟),Chaojun Jia. Experimental and numerical investigations on the mechanical behavior of fine-grained sandstone. International Journal of Geomechanics, 2018, 18(2): 04017150. SCI

  39. Zhinan Lin, Weiya Xu, Wei Wang*(王伟), Huanling Wang, Rubin Wang, Hua Ji, Jiuchang Zhang. Determination of strength and deformation properties of columnar jointed rock mass using physical model tests, KSCE Journal of Civil Engineering. 2018, 22(9): 3302–3311. SCI

  40. Zheng Zhi, Li Ronghua, Pan Pengzhi, Wang Wei(王伟). Excavation disturbance response of deep-buried tunnel with novel dynamic anisotropic mechanical model and failure degree index. Tunnelling and Underground Space Technology, 2025158, 102469.

  41. Zheng Zhi, Deng Bin, Liu Hong, Wang Wei(王伟), Huang Shuling, Li Shaojun. Microdynamic mechanical properties and fracture evolution mechanism of monzogabbro with a true triaxial multilevel disturbance method. International Journal of Mining Science and Technology, 2024, 34(3), 385-411.

  42. Zheng Zhi, Xu Hongyu, Wang Wei(王伟), Mei Guoxiong, Cai Wuqiang, Tang Zhi, Cai Zhiyang. Fatigue damage evolution behaviors and fractional fatigue mechanical model of monzogabbro under true triaxial disturbance test. International Journal of Rock Mechanics and Mining Sciences, 2024, 182, 105881.

  43. Zheng Zhi, Su Hao, Wang Wei(王伟), Wang Zhechao, Liu Zaobao, He Benguo, Mei Guoxiong. A new hydro-mechanical coupling constitutive model for brittle rocks considering initial compaction, hardening and softening behaviors under complex stress states. Geomechanics and Geophysics for Geo-Energy and Geo-Resources, 2023, 9(1), 68.

  44. Zheng Zhi, Su Hao, Mei Guoxiong, Wang Wei(王伟), Liu Hong, Zhang Qiang, Wang Yujie. A thermodynamic damage model for 3D stress-induced mechanical characteristics and brittle–ductile transition of rock. International Journal of Damage Mechanics, 2023, 32(4), 623-648.

  45. Zheng Zhi, Xu Hongyu, Wang Wei(王伟), Mei Guoxiong, Liu Zaobao, Zheng Hong and Huang Shuling. Hydro-mechanical coupling characteristics and damage constitutive model of low-permeability granite under triaxial compression. International Journal of Damage Mechanics, 2023, 32(2), 235-261.

  46. Zheng Zhi, Xu Hongyu, Wang Wei(王伟), Zhang Qiang, Wang Yujie, Sun Qiancheng, Tao Honghui, Han Xiaofeng. Seepage-stress combined experiment and damage model of rock in different loading and unloading paths. International Journal of Damage Mechanics, 2024, 33(1), 3-38.

  47. Zhinan Lin, Weiya Xu, Wei Wang(王伟)et al. Experimental Study on Hydraulic and Macro-Mechanical Property of a Mortar under Heating and Cooling Treatment. Journal of Advanced Concrete Technology, 2016, 14, 261-270. (SCI)

  48. Ni Haijiang, Xu Weiya, Wang Wein(王伟)et al.. Statistical analysis of scale effect on equivalent elastic modulus of jointed rock masses. Arabian Journal of Geosciences, 2016, 9(3):1-12. (SCI).17(s1):174-186. (SCI)

  49. L. Liu, W.Y. Xu, H.L. Wang, W. Wang(王伟), R.B. Wang. Permeability Evolution of Granite Gneiss During Triaxial Creep Tests. Rock mechanics and rock engineering. 2016, 49(9):3455-3462. (SCI)

  50. Z.L. ZhangW.Y. XuW. Wang(王伟),R.B. Wang. Triaxial creep tests of rock from the compressive zone of dam foundation in Xiangjiaba Hydropower Station[J], International Journal of Rock Mechanics & Mining Sciences, 2012, 50(2)133-139. (SCI)

  51. Hongjie Chen, Weiya Xu, Wei Wang(王伟), Rubin Wang, Chong Shi. A Nonlinear Viscoelastic-Plastic Rheological Model For Rocks Based On Fractional Derivative Theory[J]. International Journal of Modern Physics B, 201327(25): 13501491-16. (SCI)

  52. Rubin Wang, Weiya Xu, Wei Wang(王伟), Jiuchang Zhang. A nonlinear creep damage model for brittle rocks based on time-dependent damage European Journal of Environmental and Civil Engineering. (SCI)

  53. W. Y. Xu, J. C. Zhang, W. Wang(王伟), R. B. Wang. Investigation on in situ stress fields in the asymmetric V-shaped river valley at the Wudongde dam site, southwest China, Bulletin of Engineering Geology and the Environment, 2013. (SCI)

  54. XU Wei-ya, WANG Ru-bin, WANG Wei(王伟), ZHANG Zhi-liang, ZHANG Jiu-chang, WANG Wen-yuan. Creep properties and permeability evolution in triaxial rheological tests of hard rock in dam foundation. Journal of Central South University of Technology,2012,19(1):252-261. (SCI)

  55. Susheng Wang, Weiya Xu, Chaojun Jia, Wei Wang(王伟). Mechanical behaviour of fine-grained sandstone in triaxial compression and elastoplastic modeling by return mapping algorithms. Bulletin of engineering geology and the environment. 2018(77)1689-1699. (SCI)

  56. Jia Chaojun, Xu weiya, Wang Rubin, Wang Wei(王伟), Zhang Jiuchang, Characterization of the deformation behavior of fine-grained sandstone by triaxial cyclic loading, Construction & Building Materials, 2018 , 162 :113-123. (SCI)

  57. Susheng Wang, Weiya Xu, Mengcheng Sun,Wei Wang(王伟). Experimental investigation of the mechanical properties of fine-grained sandstone in the triaxial cyclic loading test. Environmental Earth Sciences, 2019(78):416. (SCI)

  58. Susheng Wang, Weiya Xu, Wei Wang(王伟). Experimental and numerical investigations on hydro-mechanical properties of saturated fine-grained sandstone, International Journal of Rock Mechanics and Mining Sciences, 2020, 127, 104222. (SCI)

  59. Cao Yajun, W.Q. Shen, Jianfu Shao, Wei Wang(王伟). Numerical homogenization of elastic properties and plastic yield stress of rock-like materials with voids and inclusions at same scaleEuropean Journal of Mechanics - A/Solids2020, 81: 103958. (SCI)

  60. Rubin Wang, Kun Zhang, Wei Wang(王伟), Yongdong Meng, Lanlan Yang and Haifeng Huang. Hydrodynamic landslide displacement prediction using combined extreme learning machine and random search support vector regression model. European Journal of Environmental and Civil Engineering, 2020,  10.1080/19648189.2020.1754298. (SCI)

  61. Cao Yajun,Wanqing Shen, Jianfu Shao,Wei Wang(王伟). A novel FFT-based phase field model for damage and cracking behavior of heterogeneous materials, International Journal of Plasticity, 2020, 133, 102786. (SCI)

  62. Yajun Cao, W.Q. Shen, Jianfu Shao, Wei Wang(王伟). A multi-scale model of plasticity and damage for rock-like materials with pores and inclusionsInternational Journal of Rock Mechanics and Mining Sciences2021138104579. (SCI)

  63. Cao Yajun, W.Q. Shen, Jianfu Shao, Wei Wang(王伟). Numerical homogenization of elastic properties and plastic yield stress of rock-like materials with voids and inclusions at same scaleEuropean Journal of Mechanics - A/Solids2020, 81: 103958. (SCI)

  64. Wang Wei(王伟), Lv Jun, Wang Haicheng. A creep-damage constitutive model for sandstone, Applied Mechanics and Materials, 2012, vol.170-173: 289-294. (EI)

  65. W. Wang(王伟), J.F. Shao, Q.Z. Zhu & W.Y. Xu. Time-dependent behaviour modeling of geomaterials using a discrete thermodynamic approach, Geotechnical Safety and Risk IV, Proceedings of 4th International Symposium on geotechnical safety and risk, 2013, 403-408. (EI)

  66. Cao Y J. Wang W(王伟).  Lü J. Liu T G. Zheng Z.Experimental study on creep behavior of sandstone with pore water pressure and its constitutive modeling. Rock Characterisation, Modelling and Engineering Design Methods - Proceedings of the 3rd ISRM SINOROCK 2013 Symposium.June18-21, 2013, Shanghai,China,p137-142. (EI)

  67. Zheng Z. Wang W(王伟). Cao Y J. Lü J. A statistical damage constitutive model with damage threshold based on Mogi-Coulomb criterion.Rock Characterisation, Rock Characterisation, Modelling and Engineering Design Methods - Proceedings of the 3rd ISRM SINOROCK 2013 Symposium.June18-21, 2013, Shanghai,China,p339-344. (EI)

  68. Liu Shifan, Wang Wei(王伟), Gong Chuangen, and Li Haifeng. Numerical simulation on Time-dependent Behavior and Long-term Safety Analysis of Soft Rock Tunnel under Seepage Condition[J]. IOP Conference Series: Earth and Environmental Science, 2020, 570(5):052027. (EI)

  69. 王伟,陈超维,刘世藩,曹亚军,段雪雷,聂文俊. 各向异性层状千枚岩渗透率及有效孔隙率的试验研究,岩土工程学报,2024, 46(2):445-451. (EI)

  70. 王伟, 罗霄, 陈超, 刘世藩, 段雪雷, 朱其志. 层状岩石不排气三轴压缩力学特性试验研究,岩土力学,20242024 (5): 1334-1342. (EI)

  71. 段雪雷, 张强, 曹亚军, 赵登峰, 王伟, 朱其志, 刘世藩. 复杂水环境–应力状态下西域砾岩水敏效应与力学损伤特性研究[J].岩石力学与工程学报, 2024, 43 (12): 2992-3004. (EI)

  72. 王伟, 张宽, 曹亚军, 陈超,朱其志. 层状千枚岩各向异性力学特性与脆性评价研究[J]. 岩土力学, 2023, 44(4): 975-989. (EI)

  73. 荣浩宇;王伟;李桂臣;许嘉徽;梁东旭. 岩石-锚固剂结构水化失稳微观力学特性, 岩土力学,202344(3):784-798. (EI)

  74. 刘世藩,王伟,曹亚军等.基于相场方法的岩石弹塑性损伤模型研究及其数值实现[J].岩石力学与工程学报,2023, 1-10. (EI)

  75. 姜宇航, 王伟, 邹丽芳, 王如宾, 刘世藩, 段雪雷. 基于PSO-VMDNARXGRU的滑坡位移动态预测模型研究[J]. 岩土力学, 2022(s1):1-12. (EI)

  76. 王伟,袁雯宇,邹丽芳,陈鸿杰,程汝帅, 徐卫亚. 基于滑坡敏感性评价的库区水动力型滑坡区域综合预警研究,岩石力学与工程学报,2022, 41. (EI)

  77. 王伟,汪涛,熊德发,陈亮,张海洋,朱其志. 三轴循环加卸载下砂岩声发射分形特征试验研究,工程科学与技术,2022,54(2):90-100. (EI)

  78. 刘之喜, 王伟, 罗吉安, 缪广红. 岩石单轴压缩试验中能量演化分析方法的研究, 煤炭学报2020,45(9):3131-3139. (EI)

  79. 冯晓伟, 王伟, 王如宾, 袁双双, 朱其志. 考虑水化学损伤的砂岩流变损伤本构模型研究. 岩土力学201839 (9): 3340-3346. (EI)

  80. 王 伟,龚传根,朱鹏辉,朱其志,徐卫亚. 大理岩干湿循环力学特性试验研究[J]. 水利学报,2017,48(10):1175-1184. (EI)

  81. 王伟,李雪浩,朱其志, 石崇,徐卫亚. 水化学腐蚀对砂板岩力学性能影响的试验研究[J]. 岩土力学,2017389. (EI)

  82. 王伟, 李雪浩, 胡大伟, 曹亚军. 脆性岩石三轴压缩渐裂过程中的渗透性演化规律研究[J], 岩土力学,2016, 37(10): 2761-2768. (EI)

  83. 王伟, 郑志, 王如宾, 王环玲, 徐卫亚. 不同应力路径下花岗片麻岩渗透特性的试验研究[J], 岩石力学与工程学报, 2016 , 35 (2):260-267. (EI)

  84. 王伟, 陈曦, 田振元, 朱其志, 徐卫亚. 不同排水条件下砂岩应力渗流耦合试验研究[J]. 岩石力学与工程学报,201635(s2):3540-3551. (EI)

  85. 王伟, 刘桃根, 李雪浩,王如宾, 徐卫亚. 化学腐蚀下花岗岩三轴压缩力学特性试验研究[J]. 中南大学学报,201546(10):3801-3807. (EI)

  86. 王伟, 田振元, 朱其志, 李雪浩, 徐卫亚. 考虑孔隙水压力的岩石统计损伤本构模型研究, 岩石力学与工程学报,2015, 34(s2):3676-3682. (EI)

  87. 王伟,徐卫亚,王如宾,曹亚军,王环玲,冯树荣. 低渗透岩石三轴压缩过程中的渗透性研究[J],岩石力学与工程学报,201534(1): 40-47. (EI)

  88. 王伟, 吕军, 王海成,孙少锐. 砂岩流变损伤模型研究及其应用[J],岩石力学与工程学报,201231s2):3650-3658.EI

  89. 王伟,刘桃根,吕军,王如宾,徐卫亚,翦波. 水岩化学作用对砂岩力学特性影响的试验研究[J]. 岩石力学与工程学报,201231s2):3607-3617. EI

  90. 王伟,徐卫亚. 一个新的岩石力学测定方法[J]. 岩土力学,200829(supp.)538-544. EI

  91. 冯晓伟, 王伟, 王如宾, 袁双双, 朱其志. 考虑水化学损伤的砂岩流变损伤本构模型研究[J]. 岩土力学, 2018,39 (9): 3340-3346. (EI)

  92. 李良权,张春生,王伟.一种改进的各向异性Hoek-Brown强度准则[J].岩石力学与工程学报,2018, 37(S1):3239-3246.(EI)

  93. 梅胜尧,王伟,秦志军,朱其志,王豫宛,周倩瑶. 考虑裂隙塑性的岩石非线性分数阶蠕变模型研究[J].,河海大学学报(自然科学版),201947(6):548-554.

  94. 王伟, 邹丽芳, 姜宇航, 周倩瑶, 陈鸿杰, 徐卫亚.大华滑坡位移预测模型研究[J].,长江科学院院报, 2022, 39(9):56-64.  

  95. 王伟,张宽,梅胜尧,曹亚军,朱其志. 不排气气渗条件下低渗透岩石力学特性试验研究[J].,河海大学学报(自然科学版),2022, 50(3):110-117.

  96. 陈超,王伟,许高杰,褚卫江,汪涛,朱其志.考虑不同节理倾角和贯通率的类岩材料单轴压缩试验[J].河海大学学报(自然科学版),2022,50(5):124-130+146.

  97. 王伟,邹艺璇,李 尧,邹丽芳,姜宇航,陈鸿杰,基于GISScoops3D的水动力型滑坡区域稳定性分析,防灾减灾学报,2024, 44(2):79-89. (EI)

  98. 李均奕,王伟,曹亚军,陈超维,朱其志. 考虑水-力耦合和不同应力路径的砂岩卸荷力学特性试验研究,河海大学学报,202351(3): 135-142.

  99. 王伟,丁聪,刘世藩,姜宇航,陈超.基于移动最小二乘法的阶跃型滑坡预警曲面模型[J].河海大学学报(自然科学版),2025, 120 (1): 95-102.


发明专利

  1. 渗流-应力耦合作用下岩石材料渗透系数的测量装置及方法,专利号:ZL201010259774.8

  2. 一种新型树根形结构桩及其施工工艺,专利号:ZL201010580559.8

  3. 一种新型的岩石试样制作方法,专利号:ZL201110002099.5

  4. 新型防波堤及其设计方法,专利号201110098720

  5. 一种确定边坡最大风险面的方法,专利号201210590881

  6. 孔隙介质材料的温度-湿度-应力-化学耦合试验平台, 专利号:201210451572.2

  7. 一种岩石气体渗透测定装置及测定方法, 专利号: ZL201210590766.0

  8. 组独有边界单元面的无厚度3节点衬砌单元智能构建方法,专利号:201310305706.4

  9. 边坡稳定评价的改进双强度折减法,专利号:ZL201310191419.5

  10. 用于原位修复重金属污染土和地下水的装置,专利号:ZL201210389389.4

  11. 一种基于卡萨格兰德法的岩石长期强度参数确定方法,专利号:ZL201710165973.4

  12. 任意形状凸多面体骨料的颗粒簇离散元模型构建方法, 专利号:ZL201610234983.4

  13. 一种地下盾构隧道衬砌管片的接缝拼接结构及防水方法,专利号:ZL201510491656.2

  14. 一种低渗透岩石流变渗透率与体积应变关系的确定方法,专利号:ZL201610060682.4

  15. 岩石渗流-应力-温度-化学耦合流变测试装置及其方法,专利号:ZL201610061212.X

  16. 一种基于稳态流变速率交点的岩石长期强度参数确定方法,专利号:ZL201510369199.X

  17. 一种基于稳态流变速率切线的岩石长期强度参数确定方法,专利号:ZL201510369198.5

  18. 一种岩石渗流-应力耦合剪切流变试验盒,专利号:ZL201610061213.4

  19. 实验室制作哑铃型岩石试样的加工装置, 专利号:202010771578.2

  20. 一种基于长期损伤度的岩体长期稳定安全分析方法,专利号: ZL201910976731.2

  21. 一种空心圆柱岩石试样模拟有压隧道渗流变形的试验方法,专利号:ZL202010836699.0

  22. 一种测量挤压应力装置,专利号:ZL202110467487.4

  23. 柱状节理试样贴片装置,专利号:ZL202010510232.7


软件著作权

  1. AutocadFlac3D复杂桩锚模型生成软件 V1.0,软件著作权登记号:2013SR121426

  2. 基于FLAC3D的复杂桩锚模型生成软件 V1.0,软件著作权登记号:2013R11L115569  

  3. 基于AutoCADFLAC3D复杂锚杆单元生成软件V1.0,软件著作权登记号:2013SR122688

  4. AutocadFlac3D复杂桩锚模型生成软件V1.0,软件著作权登记号: 2013SR121426

  5. 基于AUTOCADPFC复杂数值模型转换软件V1.0,软件著作权登记号:2014SR027524

  6. 基于积分算法的FLAC3D的节点水压力生成软件V1.0,软件著作权登记号:2014SR027428

  7. 基于MIDASFLAC3D结构单元生成软件V1.0软件著作权登记号:2014SR002419

  8. 基于HYPERMESHFLAC3D结构单元生成软件V1.0,软件著作权登记号:2014SR002188

  9. 基于AUTOCADPFC含节理数值模型生成软件V1.0,软件著作权登记号:2014SR027179

  10. 基于ANSYSFLAC3D节点水压力生成软件V1.0,软件著作权登记号:2014SR027153

  11. 三维离散元模型自动生成软件V1.0,软件著作权登记号:2014SR094246

  12. 快速施加水压力V1.0, 软件著作权登记号:2015SR260651

  13. 滑坡风险指标因子评估系统V1.0,软件著作权登记号:2020SR0823820


获奖情况

  1. 王伟(5/10),复杂赋存环境下地下工程锚固岩体时效劣化机制与预测防控技术,中国产学研合作创新成果奖,一等奖,2024

  2. 王伟(6/10),蚀变环境下大型工程锚固岩体劣化机理与长效调控技术,广西省科技进步奖,二等奖,2024

  3. 王伟(1/5),脆性岩石损伤破坏机理及裂隙扩展计算方法研究,江苏省高等学校科学技术研究成果奖(自然科学奖),二等奖,2023

  4. 王伟(2/9),乌东德水电站复杂地质特大洞丼群安全高效施工技术,辽宁省科学技术进步奖,二等奖,2022

  5. 王伟(1/9,脆性岩石水力耦合时效力学特性研究与多尺度模拟,江苏省力学学会科学技术一等奖,2021

  6. 王伟(4/15,岩石渗流-应力-流变耦合理论研究与工程应用, 水力发电科学技术奖, 一等奖,  2016

  7. 王伟(7/11, 工程岩石渗流力学关键技术及应用,江苏省科学技术奖,二等奖,2018

  8. 王伟(4/7,多场耦合多尺度岩石力学研究, 江苏省科技厅, 江苏省科学技术奖, 二等奖, 2013

  9. 王伟(6/15,岩石流变力学研究及其在水电工程中的应用, 水力发电科学技术奖, 一等奖, 2012

  10. 王伟(10/15,水利水电工程大型堆积体特性及失稳防控研究, 水力发电科学技术奖, 特等奖, 2013

  11. 王伟(12/15),水电工程大型地下洞室群反馈优化及长期稳定性研究与工程应用,水力发电科学技术奖, 三等奖,2011

  12. 河海大学优秀主讲教师2022,校教学督导2024-2027

  13. 第三届江苏省“十佳研究生导师团队”主要成员,2022

  14. 河海大学首届优秀研究生导师团队主要成员,2020


联系方式
  办公室:科学馆623
  手机:15951879536

邮箱:wwang@hhu.edu.cn

地址:南京市西康路1号河海大学土木与交通学院岩土所210098

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