| 供稿: 孙伟 | 时间: 2023-10-17 | 次数: |

【个人基本情况简介】
孙伟,男,1987年生,中共党员,博士(后),内聘副教授,硕士生导师(矿业工程、资源与环境、交通运输),从事采矿工程领域人才培养、科学研究,主持中国博士后特别资助、中国博士后面上项目、河南省科技攻关、河南省自然科学基金面上项目等纵向课题7项,企业横向课题4项。近五年以第一作者或通讯作者在《Tunnelling and Underground Space Technology》、《Computers and Geotechnics》等知名期刊发表学术论文14篇,其中SCI二区及以上10篇,获授权发明专利7项;担任《Geohazard Mechanics》和《安全与可持续(英文)》青年编委,《Theoretical and Applied Fracture Mechanics》、《Physics of Fluids》期刊审稿人。获山西省科技进步二等奖、河南省煤炭科学技术一等奖等省部级及行业奖励6项。
E-mail:sunwei@hpu.edu.cn
【教育与工作经历】
2010-2014年,辽宁工程技术大学,采矿工程专业,获采矿工程学士学位。
2016-2017年,北京科技大学,采矿工程专业,硕士阶段(硕博连读)。
2018-2022年,北京科技大学,采矿工程专业,获工学博士学位。
2022年-至今,就职于河南理工大学能源学院采矿工程系,专职教师。
【课程教学】
本科课程:
(1)岩体力学与工程,主讲(2022年至今)
(2)采矿数值分析方法及应用,主讲(2022年至今)
研究生课程:
(1)现代测试技术,主讲(2022年至今)
(2)数值模拟方法及应用,主讲(2022年至今)
【代表性期刊文章】
(1)Wei Sun, Chenxi Zhang , Shunchuan Wu, Hao Sun*. Quantitative analysis of the spalling mechanism of CJPL-II by step excavation under in situ stress using the flat–joint model and moment tensor. Tunnelling and Underground Space Technology, 2025, 163:106771.(中科院SCI 1区,IF=6.7, Top期刊)
(2)Hao Sun, Shenggui Zhou, Junze Jia, Lishan Zhao, Lichang Wei, Xueqian Wang, Shigen Fu, Xuan Qin, Wei Sun*. A complex network approach to identifying and characterizing vital voids in the particle packing of caved ore and rock. Chaos, Solitons and Fractals, 2025, 192: 115996. (SCI, 中科院1区, IF=5.3)
(3)Jianling Zang, Wei Sun*, Zhenkai Yang, et al. Experimental study on thermokinetic characteristics of multiple coal seams in Xinjiang open pit mine using thermogravimetric-Fourier transform infrared spectroscopy and thermogravimetric-mass spectrometry. Thermochimica Acta, 2025,747: 179973. (SCI, 中科院2区, IF=3.1)
(4)Wei Sun, Long Chen*, Wenbing Guo, Shunchuan Wu, Shuchi Meng. Modeling of spalling failure of in-situ rock mass for quantification of the source mechanics with flat-joint model and moment tensor. Computers and Geotechnics,2024,169:106261. (SCI,中科院1区,IF=5.3,Top期刊)
(5)Wei Sun, Jinsheng Zhao*,Shunchuan Wu, et al. The relationships between tensile strength, mode I and mode II fracture toughness of rock: An empirical and microcracking perspective. Heliyou, 2024, 10:e37438. (SCI, 中科院3区,IF=3.4)
(6)Jinsheng Zhao, Wei Sun*, Hao Luo, et al. Effect of thermal treatment on microcracking characteristics of granite under tensile condition based on bondedparticle model and moment tensor. Scientific Reports, 2024,14:8806. (SCI,中科院2区,IF=3.8)
(7)Wei Sun*, Shunchuan Wu*, Wenbing Guo*. Study on the semi-circular bend method for characterizing the mixed mode I/II fracture toughness of sandstone: A micro-perspective. Theoretical and Applied Fracture Mechanics, 2023, 127:104064. (SCI,中科院2区,IF=5.3)
(8)Shunchuan Wu, Wei Sun*, Xueliang Xu. Study on mode I fracture toughness of rocks using flat-joint model and moment tensor, Theoretical and Applied Fracture Mechanics. 2022, 120:103403. (SCI,中科院2区,IF=5.3)
(9)Wei Sun, Shunchuan Wu*, Xueliang Xu. Mechanical behaviour of Lac du Bonnet granite after high-temperature treatment using bonded-particle model and moment tensor. Computers and Geotechnics, 2021, 135:104132. (SCI,中科院1区,IF=5.3,Top期刊)
(10)Wei Sun, Shunchuan Wu*. A study of crack initiation and source mechanism in the Brazilian test based on moment tensor. Engineering Fracture Mechanics, 2021, 246(4):107622. (SCI,中科院1区,IF=5.4,Top期刊)
(11)Wei Sun, Shunchuan Wu*, Yu Zhou, et al. Comparison of crack processes in single-flawed rock-like material using two bonded-particle models under compression. Arabian Journal of Geosciences, 2019, 12: 156.(SCI)
(12)Wei Sun, Shunchuan Wu*, Ziqiao Cheng, et al. Interaction effects and an optimization study of the microparameters of the flat-joint model using the Plackett-Burman design and response surface methodology. Arabian Journal of Geosciences, 2020,13: 53.(SCI)
(13)吴顺川,孙伟*,成子桥. 不同荷载条件下低孔隙率砂岩巴西劈裂试验的声发射特性. 工程科学学报,2020,42(8):988-998.(EI)
(14)吴顺川,孙伟*,刘洋等. I型断裂韧度模拟方法及细观影响因素研究. 岩土力学,2020,41(08):2536-2546.(EI)
【代表性教学、科研项目与获奖】
(1)中国博士后特别资助:脆性岩石热-水-力耦合本构模型及高放废物处置库围岩板裂化机制(2024T170239),2022.12-2025.05,主持;
(2)中国博士后面上项目:高放废物处置库围岩开挖强卸荷-温度耦合损伤量化和形成机理研究(2022M721034),2022.12-2024.11,主持;
(3)河南省科技攻关:岩石水压致裂细观分析方法及表征关键技术研究(242102320373),2023.12-2025.11,主持;
(4)横向项目:高速公路高陡路堑边坡稳定性分析方法及智能监测管理平台研究,78万,2017-2022;
(4)横向项目:露天矿高效开采及煤层自燃防治关键技术研究与应用,197.5万,2023-2025;
(5)获奖:山西省科技进步二等奖、中国职业安全健康协会科技进步三等奖、中国煤炭工业协会科技进步三等奖、河南省教育厅科技成果二等奖等6项。