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王国营
时间: 2026-09-08 次数:

【个人基本情况】

王国营,男,博士(后),副教授,硕士研究生导师。2020年入职,现为煤炭安全生产与清洁高效利用省部共建协同创新中心成员、《煤矿安全》青年专家学术委员会委员、中国煤炭学会会员。长期致力于高温岩石力学、多孔介质多场耦合理论及原位改性采矿技术等领域的基础理论研究与工程应用探索,围绕深部非常规地质资源安全高效开发、复杂地质环境下岩体响应机制及能源资源绿色低碳利用等关键科学问题开展系统研究。近年来,主持和参与国家及省部级科研项目5项,围绕深部煤岩力学行为、多场耦合机制及绿色智能采矿技术取得了一系列研究成果。在国内外学术期刊发表SCI、EI收录论文40余篇。

【教育与工作经历】

2007-2011年,太原理工大学,资源环境与城乡规划专业,获工学学士学位

2019年,太原理工大学,矿业工程专业,获工学博士学位

2020年,就职于河南理工大学能源学院采矿工程系,专职教师

2025年-今, 河南理工大学能源学院采矿工程系,副教授

【课程教学】

    本科课程:

(1) 岩石力学与工程,主讲(2020年至今)

    研究生课程:

(1) 矿山岩石力学,主讲(2022年至今)

(2) 数值模拟方法及应用,主讲(2022年-今)

【代表性期刊文章】

[1] Wang G, Xie L, Jia H*, et al. Numerical Investigation of Hydraulic Injection and Water Cooling Induced Slip in Deep Hot Dry Rock Fracture Systems[J]. Geoenergy Science and Engineering, 2026: 214706. (SCI 二区)

[2] Wang G, Yin Q, Kang Z*, et al. Quantitative study on anisotropic pore-fracture networks and its influence on seepage-heat flow pathway of fractured oil shale during in-situ pyrolysis[J]. Applied Thermal Engineering, 2026: 132110. (SCI 二区)

[3] Zhou F, Wang G*, Jia H, et al. Effect of real-time high temperature on Mode I fracture characteristics of granite after heating and liquid nitrogen cooling cycling[J]. Engineering Fracture Mechanics, 2026, 345: 112412. (SCI 二区)

[4] Liu X, Wang G*, Du J, et al. Heat Transfer Performance of a Multi-Branch Well System for In-Situ Conversion of Steeply Dipping Oil Shale Reservoirs[J]. Energies, 2026, 19(15): 3473. (SCI 四区)

[5] Wang G, Yin Q, Jia H, et al. Experimental study on real-time seepage-heat transfer characteristics of fractured granite during the cyclic liquid nitrogen injecting the hot dry rock reservoir[J]. Case Studies in Thermal Engineering, 2025: 107424. (SCI 二区)

[6] Zhou F, Wang G*, Jia H, et al. Performance of heat extracting using a multi-layered radiation-type horizontal coaxial closed-loop horizontal well geothermal system[J]. Thermal Science and Engineering Progress, 2025: 104213. (SCI 二区)

[7] Wang G, Liu X, Jia H, et al. In-Situ Microwave Heating-Assisted Coalbed Methane Extraction Using Hybrid Photovoltaic-Wind Power: Performance Analysis and System Optimization[J]. Case Studies in Thermal Engineering, 2025: 107208. (SCI 二区)

[8] Zhou F, Wang G*, Jia H, et al. Investigating the effects of real-time high temperature and circulating liquid nitrogen cooling on the granite Brazilian splitting test specimens[J]. Engineering Fracture Mechanics, 2025: 111574. (SCI 二区)

[9] Wang G*, Yin Q, Jia H, et al. Experimental Study on Anisotropic Pore-Fracture and Real-Time Permeability Evolution of Fractured Oil Shale Under High Temperature and Triaxial Stress: A Case Study of Jimsar Oil Shale in Xinjiang, China[J]. Rock Mechanics and Rock Engineering, 2025: 1-23. (SCI 一区)

[10] Wang G*, Zhou F, Jia H*, et al. Heat extraction performance of multi-level, multi-branch, closed loop coaxial horizontal borehole heat exchanger geothermal system[J]. Applied Thermal Engineering, 2025: 126045. (SCI二区 top)

[11] Ma H, Wang G*, Feng G, et al. Experimental study on the mechanical properties of granite after circulating liquid nitrogen subjected to real time high temperature[J]. Geoenergy Science and Engineering, 2025, 246: 213624. (SCI二区 top)

[12] Wang G, Liu S*, Yang D, et al. Numerical study on the in-situ pyrolysis process of steeply dipping oil shale deposits by injecting superheated water steam: Acase study on Jimsar oil shale in Xinjiang, China[J]. Energy, 2021: 122182. (SCI 一区 top)

[13] Wang G, Ma H, Liu S*et al.Thermal power extraction from a deep, closed-loop, multi-level, multi-branch, U-shaped borehole heat exchanger geothermal system [J] Renewable Energy, 2022: 894-906 (SCI 一区 top)

[14] Wang G*. Yang D, Liu S etal. Experimental study on the anisotropic mechanical properties of oil shalesunder real-time high-temperature conditions. Rock mechanics and Rockengineering 2021: 1-19 (SCI二区 top)

[15] Wang G, Yang D*,Zhao Y, et al. Experimental investigation on anisotropic permeability and itsrelationship with anisotropic thermal cracking of oil shale under hightemperature and triaxial stress[J]. Applied Thermal Engineering, 2019, 146:718-725. (SCI二区 top)

[16] Wang G, Yang D*,Kang Z, et al. Numerical Investigation of the in Situ Oil Shale PyrolysisProcess by Superheated Steam Considering the Anisotropy of the Thermal,Hydraulic, and Mechanical Characteristics of Oil Shale[J]. Energy & Fuels,2019, 33(12): 12236-12250. (SCI 二区)

[17] Yang D*, Wang G, Kang Z, et al. Experimental investigation of anisotropic thermal deformation of oil shale under high temperature and triaxial stress based on mineral and micro-fracture characteristics[J]. Natural Resources Research, 2020, 29: 3987-4002. (SCI 二区)

[18] Wang G, Yang D*, Kang Z, et al. Anisotropy in thermal recovery of oil shale—Part 1: thermal conductivity, wave velocity and crack propagation[J]. Energies, 2018, 11(1): 77.

[19] 王国营,杨栋,康志勤.高温三轴应力作用下油页岩的渗透特征各向异性演化规律实验研究[J].岩石力学与工程学报,2020,39(06):1129-1141 (EI, 中国卓越行动计划入选期刊)

【代表性教学、科研项目与获奖】

科研项目:

[1] 国家自然科学青年基金: 52104128 原位对流热解油页岩渗流-传热各向异性演化规律及机理 2022-2024 主持

[2] 中国博士后基金面上项目:2021M690918 原位注蒸汽作用下裂隙油页岩微观结构特征及渗流特性演化规律2021-2022 主持

[3] 河南省科技攻关: 212102310010原位注热开采油页岩孔裂隙发育与渗流演化机理及高效注热关键技术2021-2022 主持

[4] 河南理工大学博士基金:原位注热开采油页岩宏细观传热传质数值研究 主持

    教学项目: 

[1] 2022 河南省教育厅2022专创融合特色示范课程 《地热资源开发与利用》 (第2)

[2] 2022 河南高等教育教学改革研究与实践项目 《智能采矿形式下采矿工程科研型实验室的教学转化与应用》 (第3)

[3] 2026 河南理工大学专业学位研究生教学案例项目 科研“反哺”教学——智能开采驱动下采矿工程科研型实验室教学转化与数字化转型(第1)

    获奖:

[1] 山西省优秀博士论文:《高温作用下油页岩热物理、渗流、力学特征各向异性演化规律及其应用》作者:王国营;导师:杨栋

[2] 2025 年 山西自然科学奖二等奖:原位对流加热开采油页岩的技术基础研究 (第4)

[3] 2022年河南科技进步奖三等奖:水力割缝扰动“三软”托顶煤回采巷道主动支护关键技(第4)

[4] 2024年中国职业安全健康协会二等奖: 孤岛工作面坚硬顶板分级控制与巷道围岩增效锚固控制技术 (第2)

[5] 第十二届全国高等学校采矿工程专业学生实践作品大赛 一等奖 指导老师(第1)

[6] 第一届全国博士后创新创业大赛 优胜奖


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