姓名:孟涛
职称:副教授,硕士研究生导师
职务:油气储运工程系主任,原位环境力学与地下储能实验室主任,院党委委员,教工党
支部书记。兼任弗莱贝格工业大学联合培养博士生导师,国家自然科学基金和省部级项目/奖项评审专家。
办公地址:山西省太原市万柏林区窊流路66号
电子邮件:mengtao@tyust.edu.cn
学术荣誉
1) 山西省优博论文,18th Edition of International Academic Awards:最佳研究者奖。
2) 油气储运学科评审专家,研究生教育评估检测专家,国家自然科学基金函评专家、山东省自然科学基金评审专家,省部级/行业协会奖项评审专家。
3) International Journal of Rock Mechanics and Mining Engineering、Engineering Fracture Mechanics、Acta Geotechnica、Journal of Energy Storage、Theoretical and Applied Fracture Mechanics等70余个SCI期刊常驻审稿人。
4) 中国矿业大学学报、武汉大学学报、东北石油大学学报、石油科学通报、International Journal of Coal Science & Technology、Deep Underground Science and Engineering等期刊青年编委。
5) Shock and Vibration,Mathematical Problems in Engineering期刊客座主编。
教育背景
2013.09--2016.12,太原理工大学 矿业工程专业,博士
2010.09--2013.07,太原理工大学 矿业工程专业,硕士
2006.09--2010.07,辽宁石油化工大学 油气储运工程专业,本科
工作履历
2017.10--今,williamhill英国威廉希尔,副教授
教学工作
1)任教课程
本科生课程:输油管道设计与管理、专业英语、LNG技术、泵与压缩机、储运油料学、油气集输技术、石油工程概论、油罐及管道强度设计课程设计、泵与压缩机课程设计、创新创业实践、生产实习、毕业设计、毕业实习、认识实习。
研究生课程:物理储能原理及技术、工程流体力学与空气动力学理论及其应用。
科研工作
1)研究领域
盐岩油气/二氧化碳/氢气地下储库建造与运营;岩石地质储层高温高压断裂力学;固流热耦合裂隙岩体渗流机理。
2)承担项目
① 含强弱交界面盐岩-硬石膏静态断裂与蠕变断裂机理研究 国家自然科学青年基金(主持)
② 盐-膏组合体协同断裂机理及其断裂特征研究 山西省高等学校创新项目(主持)
③ 含强弱交界面混凝土-岩石组合体静态断裂机理研究 山西省青年面上项目(主持)
④ 石膏夹层I±II混合型断裂机理研究 岩土力学与工程国家重点实验室开放基金(主持)
⑤ 石膏夹层混合型蠕变断裂与冲击断裂机理研究 教育部重点实验室基金(主持)
⑥ 解决“卡脖子”关键技术和未来战略需求的紧缺人才培养机制探索与实践 山西省教育厅研究生教改课题 (主持)
⑦ CCUS关键技术和未来战略需求的紧缺人才培养机制探索与实践 山西省教育厅本科教改课题(主持)
3)代表性成果
论文:
[1] Meng Tao*, Zhang Z, Taherdangkoo R, et al. Temperature dependent evolution of permeability and pore structure of marble under a high temperature thermo-hydro-mechanical coupling environment. Acta Geotechnica, 2024.(SCI,IF=5.7,第一作者,中科院一区TOP)
[2] Meng Tao, Wang Tongtao*, Guo K, et al. Study of mode II fracture characteristics and roughness in salt rock after treatment coupled thermo-hydro-mechanical environment. Engineering Fracture Mechanics, 2023, 291: 109572.(SCI,IF=5.4,第一作者,中科院二区TOP)
[3] Meng Tao, Jianliang Pei*, Feng Gan, et al. Permeability and porosity in damaged salt interlayers under coupled THMC conditions. Journal of Petroleum Science and Engineering, 2022: 211, 110218.(SCI,IF=4.4,第一作者,中科院二区TOP)
[4] Meng Tao, Lifeng M*, Fengbiao W, et al. Experimental study on permeability evolution and nonlinear seepage characteristics of fractured rock in coupled thermo-hydraulic-mechanical environment: a case study of the sedimentary rock in Xishan area. Engineering Geology, 2021: 294, 106339.(SCI,IF=7.4,第一作者,中科院一区TOP)
[5] Meng Tao*, Yongbing X, Ma, J, et al. Evolution of permeability and microscopic pore structure of sandstone and its weakening mechanism under coupled thermo-hydro-mechanical environment subjected to real-time high temperature. Engineering Geology, 2021: 280, 105955.(SCI,IF=7.4,第一作者,中科院一区TOP)
[6] Meng Tao, Li Erbing*, Xue Y, et al. Experimental study on permeability and porosity evolution of host rock with varying damage degrees in excavation damaged area under real-time ultra-high temperature and triaxial stress/seepage pressure condition. Bulletin of Engineering Geology and the Environment, 2021: 80(10), 8075-8097.(SCI,IF=4.2,第一作者,中科院二区)
[7] Meng Tao*, Yue Y, Ma J, et al. Use of DC voltage fluctuation method to investigate real-time Mode I and Mode II subcritical crack growth behavior in gypsum rock. Engineering Fracture Mechanics, 2020: 107104.(SCI,IF=5.4,第一作者,中科院二区TOP)
[8] Meng Tao*, Guangwu X, Jiwei M, et al. Mixed mode fracture tests and inversion of FPZ at crack tip of overlying strata in underground coal gasification combustion cavity under real-time high temperature condition. Engineering Fracture Mechanics, 2020, 239: 107298. (SCI,IF=5.4,第一作者,中科院二区TOP)
[9] Meng Tao*, Jl X, Xm L, et al. Experimental study on the evolutional trend of pore structures and fractal dimension of low-rank clay rich coal subjected to a coupled thermo-hydro-mechanical-chemical environment. Energy, 2020: 117838. (SCI,IF=9,第一作者,中科院一区TOP)
[10] Meng Tao, Liu R, Meng X, et al. Evolution of the permeability and pore structure of transversely isotropic calcareous sediments subjected to triaxial pressure and high temperature[J]. Engineering Geology, 2019, 253: 27-35. (SCI,IF=7.4,第一作者,中科院一区)
[11] Meng Tao, et al. Using micro-computed tomography and scanning electron microscopy to assess the morphological evolution and fractal dimension of a salt-gypsum rock subjected to a coupled thermal-hydrological-chemical environment[J]. Marine and Petroleum Geology, 2018, 98: 316-334. (SCI,IF=4.2,第一作者,中科院二区)
[12] Meng Tao*, Zhang D H, Hu Y, et al. Study of the deformation characteristics and fracture criterion of the mixed mode fracture toughness of gypsum interlayers from Yunying salt cavern under a confining pressure[J]. Journal of Natural Gas Science and Engineering, 2018, 58: 1-14. (SCI,IF=5.3,第一作者,中科院二区)
[13] Meng Tao*, Bao X, Zhao J, et al. Study of mixed mode fracture toughness and fracture characteristic in gypsum rock under brine saturation[J]. Environmental earth sciences, 2018, 77: 1-25. (SCI,IF=2.8,第一作者,中科院四区)
[14] Meng Tao*, Yechao Y, Jie C, et al. Investigation on the permeability evolution of gypsum interlayer under high temperature and triaxial pressure[J]. Rock Mechanics and Rock Engineering, 2017, 50: 2059-2069. (SCI,IF=6.2,第一作者,中科院二区)
[15] Meng Tao, Hu Y, Fang R, et al. Weakening mechanisms of gypsum interlayers from Yunying salt cavern subjected to a coupled thermo-hydro-chemical environment[J]. Journal of Natural Gas Science and Engineering, 2016, 30: 77-89. (SCI,IF=5.3,第一作者,中科院二区)
[16] Meng Tao, Hu Y, Fang R, et al. Study of fracture toughness and weakening mechanisms in gypsum interlayers in corrosive environments[J]. Journal of Natural Gas Science and Engineering, 2015, 26: 356-366. (SCI,IF=5.3,第一作者,中科院二区)
[17] Meng Tao, Liang W G, Chen Y D, et al. Theoretical analysis of periodic fracture for gypsum interlayer during construction of bedded salt cavern[J]. Chinese Journal of Rock Mechanics and Engineering, 2015, 34: 3267-3273. (EI,IF=3.7,第一作者)
[18] Liang X, Meng Tao*, Feng G, et al. Evolution of permeability and pore structure of salt rock and its self-healing mechanism under coupled thermo-hydro-mechanical environment. Journal of Energy Storage, 2023, 66: 107476. (SCI,IF=9.4,通讯作者,中科院二区TOP)
[19] Zhang Z, Meng Tao*, Feng G, et al. Study on the periodic collapse of suspended sandstone interlayer under coupled thermo-hydro-mechanical environment. International Journal of Geomechanics, 2023, 23(8): 04023113.(SCI,IF=3.7,通讯作者,中科院二区)
[20] Wang G, Meng Tao*, Feng G, et al. Influence of bedding strength and angle on fracture characteristics of sandstone under three-point bending conditions[J]. Applied Sciences-Basel, 2023, 13(14): 8216. (SCI,IF=2.7,通讯作者,中科院四区)
[21] Zhang Dengke,Meng Tao*,Taherdangkoo R., Feng G., Wen L., Butscher C. Evolution trend and weakening mechanism of type-I fracture characteristics of granite under coupled thermo-hydro-mechanical and thermal treatments. Engineering Fracture Mechanics, 2022,108794.(SCI,IF=5.4,通讯作者,中科院二区TOP)
[22] Kou B, Zhang D, Meng Tao*, et al. Micro and macro evaluation of tensile characteristics of anisotropic rock mass after high temperatures treatment-a case study of Lingshi Gneiss[J]. Geothermics, 2022, 102: 102409. (SCI,IF=3.9,通讯作者,中科院二区)
[23] Wu F, Zhang D, Ma L, Meng Tao*, et al. Thermo-hydro-mechanical (THM) evolution law and development of permeability and pore structure of enhanced geothermal systems at ultra-high temperatures. Geothermics, 2021:97, 102253. (SCI,IF=3.9,通讯作者,中科院二区)
[24] Li C, Hu Y, Meng Tao*, et al. Mode-I fracture toughness and mechanisms of Salt-Rock gypsum interlayers under real-time high-temperature conditions. Engineering Fracture Mechanics, 2020, 240: 107357. (SCI,IF=5.4,通讯作者,中科院二区TOP)
[25] Xiankai B, Meng Tao*, Jinchang Z. Study of mixed mode fracture toughness and fracture trajectories in gypsum interlayers in corrosive environment[J]. Royal Society open science, 2018, 5 (1), 171374. (SCI,IF=3.5,通讯作者,中科院三区)
专利:
1) 孟涛;梁徐峰;张治疆;张登科;杨翼嶂;贺逸;吴晓梦;高浩然. 一种测量岩石三轴渗流特性的密封夹持装置, CN116718462A, 2023-09, 第一发明人(已公开);
2) Meng Tao; Liang XuFeng; Zhang Dengke; Zhao Guanghui. Uniform application device for measuring total strain of rock under high-temperature and high-pressure condition. 2023/02304, 2023-06. 第一发明人(已授权);
3) Xie Jianlin; Meng Tao; Liang Xufeng; Zhang Dengke; Zhao Guanghui. Solid Pressure Transmission and Computer Tomography Cooperative Displacement System.2023/02229,2023-02.第二发明人(已授权);
4) 孟涛;马纪伟.一种油气储运自降温运输装置,CN208666078U,2019-03,第一发明人(已授权);
5) 孟涛;王同涛;梁徐峰;杨翼嶂;贺逸;吴晓梦;高浩然. 水力压裂参数试验优化系统 V1.0,2023SR0875945, 2023-05, 第一著作权人(已授权);
6) 孟涛;王同涛;梁徐峰;杨翼嶂;贺逸;吴晓梦;高浩然.煤矿工程围岩安全监测分析系统 V1.0,2023SR1771709,2023-10,第一著作权人(已授权);
7) 孟涛;王同涛;梁徐峰;杨翼嶂;贺逸;吴晓梦;高浩然. 管道水力压裂实时监测系统 V1.0, 2023SR0875946, 2023-08, 第一著作权人(已授权);
8) 孟涛;王同涛;梁徐峰;杨翼嶂;贺逸;吴晓梦;高浩然.岩体应力变形分析软件 V1.0, 2023SR0875944, 2023-08, 第一著作权人(已授权);
9) 孟涛;王同涛;梁徐峰;杨翼嶂;贺逸;吴晓梦;高浩然.岩石分类识别数据查询系统 V1.0,2023SR1786736,2023-05,第一著作权人(已授权);
10) 孟涛;冯淦;张登科;张治疆;梁徐峰.深部软硬煤层煤层气涌出参数预测分析软件V1.0,2023SR0441625,2022-01,第一著作权人(已授权);
11) 冯淦;孟涛;孟庆祥;尹乾;朱淳.深部非连续岩体破断稳定性评价系统V1.0,2022SR0299281,2022-10,第二著作权人(已授权);
12) 冯淦;孟涛;孟庆祥;尹乾;朱淳.损伤-裂隙非均匀岩体渗流行为虚拟仿真系统V1.0,2022SR0304844,2022-01,第二著作权人(已授权);
13) 冯淦;孟涛;孟庆祥;卫云波;朱淳.层状裂隙岩体高温三轴压力破坏力学响应虚拟仿真系统V1.0,2022SR0303012,2022-01,第二著作权人(已授权);
14) 刘津瑞;孟涛;张登科.油气开采地层压力监测预警系统V1.0,2021SR1887353,2021-10,第二著作权人(已授权)。
获奖:
2017年获山西省优秀博士论文
2019年获绿色矿山开采科学技术奖一等奖 (排4)
2021年获绿色矿山开采科学技术奖一等奖 (排2)
2022年获冶金矿山科学技术奖一等奖 (排2)
2019年获校青年教学基本功大赛优秀奖
2023年获校优秀班主任
2023年获校优秀青年教师
2023年获山西省自然科学二等奖 (排4)
2024年获校青年五四奖章