吴明洋
个人信息Personal Information

性别:

职称: 副研究员

职务:

学历: 博士研究生

电话:

传真:

电子邮件: mywu@whrsm.ac.cn

通讯地址:

湖北省武汉市武昌区水果湖街小洪山2号 中国科学院武汉岩土力学研究所

简 历Personal Profile

  • 吴明洋,男,博士,副研究员。202112月获重庆大学矿业工程博士学位。20221-202412月在中国科学院武汉岩土力学研究所从事博士后研究工作。202412月入职至今,历任助理研究员(202412-202512月)、副研究员(202512-至今)。

    主要从事非常规油气开发与能源储备相关研究工作,主持国家自然科学基金青年项目、国家科技重大专项专题、湖北省博士后先锋人才跟踪支持项目湖北省博士后创新研究岗位等纵向项目5项。参与国家自然科学基金联合基金和大型企业委托项目10余项。在EnergyGeoenergy Science and EngineeringGas Science and EngineeringConstruction and Building Materials国内外权威期刊发表SCI/EI收录论文40余篇,其中第一/通讯作者论文18篇。授权发明专利20余项,其中前二10项。前二登记软件著作权8项。获湖北省科技进步二等奖、重庆市优秀博士学位论文等奖励6项。担任Petroleum ScienceEngineering structures等期刊审稿专家GeoStorageAdvances in Geo-Energy Research等期刊青年编委


  • 研究方向Research Focus
  • 社会任职Social Service
  • 承担科研项目情况Undertaking Research Projects
  • 1岩石非均质结构表征及其力学响应

    2多相多裂隙岩体裂缝群动态演化机制

    3含天然-人工多尺度缝网岩体渗流机理


  • [1] 国家科技重大专项专题复杂储层岩石力学特性与复杂缝网形成及支撑机制研究,2024-2030主持

    [2] 国家自然科学基金青年项目考虑非平面特征的裂隙岩体水力裂缝群动态演化机制研究,2025-2027主持

    [3] 湖北省人力资源和社会保障厅湖北省博士后先锋人才跟踪支持项目,2026-2028主持

    [4] 湖北省地学中心青年培育项目长江流域沿线油气开发诱导断层活化机制研究,2024-2026主持

    [5] 湖北省博士后创新研究岗位层理发育页岩水力裂缝分形特征的动态演化机制研究,2022-2024主持

    [6] 中石油川庆钻探工程有限公司项目:威远龙马溪组立体开发储层敏感性伤害评价试验,2024-2025主持

    [7] 国家自然科学基金联合基金项目深部原位地热储层改造的三维体破裂与増透机制及技术研究2023-2026骨干

    [8] 国家自然科学基金联合基金项目深层海相页岩多断裂复杂应力压裂扰动地质体活化机理及改造控制理论与方法2025-2028年,骨干

    [9] 湖北省自然科学基金创新发展联合基金项目CO2循环泵注干热岩压裂机理与调控机制研究,2024-2027年,骨干

    [10] 石油西南油气田公司项目深层页岩岩石力学基础理论及压裂工艺优化研究2022-2024骨干

    [11] 中国石化胜利油田石油工程技术研究院项目西部深层高压致密油藏压裂工艺技术研究2021-2022骨干

    [12] 中国石化石油工程技术研究院有限公司项目火山岩及页岩油复杂岩性裂缝起裂扩展机理及形态预测研究2021-2022骨干

    [13] 中国石油天然气集团有限公司项目枯竭油气藏大规模储氢基础理论与关键技术战略咨询研究2024-2025年,骨干


  • 代表论著Representative Treatises
  • 获奖及荣誉Awards and Honors
  • [1] Wu Mingyang, Chang Xin, Guo Yintong, Liu Jianjun, Yang Chunhe, Suo Yu. Advances, challenges, and opportunities for hydraulic fracturing of deep shale gas reservoirs[J]. Advances in Geo-Energy Research, 2025, 15(1): 1-4.

    [2] Wu Mingyang, Jiang Changbao, Deng Bozhi, Gao Ke, Li Minghui, Liu Bo. Characterization and reconstruction of rough fractures based on vector statistics[J]. Geoenergy Science and Engineering, 2024, 234:212664.

    [3] Wu Mingyang, Song Zhenlong, Zhu Zhengwen, Shi Di, Xia Debin, Li Qianying. Pore-scale investigation of two-dimensional water–oil displacement in fractured porous media[J]. The European Physical Journal Plus, 2024, 139:611.

    [4] Wu Mingyang, Song Rui, Zhu Zhengwen, Liu Jianjun. A study on equivalent permeability models for tree-shaped fractures with different geometric parameters[J], Gas Science and Engineering, 2023, 112: 204946.

    [5] Wu Mingyang, Jiang Changbao, Song Rui, Liu Jianjun, Li Minghui, Liu Bo, Shi Di, Zhu Zhengwen, Deng Bozhi. Comparative Study on Hydraulic Fracturing Using Different Discrete Fracture Network Modeling: Insight from Homogeneous to Heterogeneity Reservoirs[J], Engineering Fracture Mechanics, 2023, 284: 109274.

    [6] Wu Mingyang, Gao Ke, Liu Jianjun, Song Zhenlong, Huang Xiaolin. Influence of rock heterogeneity on hydraulic fracturing: A parametric study using the combined finite-discrete element method[J], International Journal of Solids and Structures, 2022,234-235: 111293.

    [7] Wu Mingyang, Wang Wensong, Shi Di, Song Zhenlong, Li Minghui, Luo Yafei. Improved box-counting methods to directly estimate the fractal dimension of a rough surface[J], Measurement, 2021, 177: 109303.

    [8] Wu Mingyang, Wang Wensong, Zhang Dongming, Deng Bozhi, Liu Shumin, Lu Jun, Luo Yafei, Zhao Wanchun. The pixel crack reconstruction method: From fracture image to crack geological model for fracture evolution simulation[J], Construction and Building Materials, 2021, 273: 121733.

    [9] Wu Mingyang, Wang Wensong, Song Zhenlong, Liu Bo, Feng Chundi. Exploring the influence of heterogeneity on hydraulic fracturing based on the combined finite-discrete method[J], Engineering Fracture Mechanics, 2021, 252: 107835.

    [10] Wu Mingyang, Zhang Dongming, Wang Wensong, Li Minghui, Liu Shumin, Lu Jun, Gao Heng. Numerical simulation of hydraulic fracturing based on two-dimensional surface fracture morphology reconstruction and combined finite-discrete element method[J], Journal of Natural Gas Science and Engineering, 2020, 82: 103479.

    [11] Wu Mingyang, Liu Jianjun, Lv Xiangfeng, Shi Di, Zhu Zhengwen. A study on homogenization equations of fractal porous media[J], Journal of Geophysics and Engineering, 2018, 15(6): 2388-2398.

    [12] Shi Di, Wu Mingyang, Hao Yuexiang, Liu Jianjun, Guo Yintong. Simulation study on permeability characteristics of shale reservoirs considering multi-scale rough fracture network[J]. Physics of Fluids, 2025, 37: 073129.

    [13] Song Rui, Wu Mingyang, Liu Jianjun, Yang Chunhe. Pore scale modeling on microbial hydrogen consumption and mass transfer of multicomponent gas flow in underground hydrogen storage of depleted reservoir[J], Energy, 2024, 306: 132534.

    [14] Song Rui, Wu Mingyang, Wang Yao, Liu Jianjun, Yang Chunhe. In-situ X-CT scanning and numerical modeling on the mechanical behavior of the 3D printing rock[J], Powder Technology, 2023, 416: 118240.

    [15] 刘建军, 吴明洋, 宋睿, 黄刘科, 戴小军. 低渗透油藏储层多尺度裂缝的建模方法研究[J]. 西南石油大学学报自然科学版,2017,39(4):90-103.

    [16] 吴明洋, 李豹, 郭印同, 师迪, 郭武豪, 赵国凯. 一种基于体素建模的有限元地应力场模拟建模方法:中国, ZL202510103544.9.

    [17] 师迪, 郭印同, 吴明洋, 夏德斌, 毕振辉. 一种裂隙岩体渗流性能预测方法、装置以及处理设备:中国, ZL202410487393.7.

    [18] 吴明洋, 郭印同, 杨春和, 刘建军. 复杂非均质岩体压裂仿真平台2024SR0490630.


  • [1] 2024年湖北省科技进步二等奖

    [2] 2024年四川省石油学会科技进步一等奖

    [3] 2023年重庆市优秀博士学位论文

    [4] 2023年绿色矿山科技进步一等奖

    [5] 2022年绿色矿山基础研究一等奖


研究方向Research Focus

1岩石非均质结构表征及其力学响应

2多相多裂隙岩体裂缝群动态演化机制

3含天然-人工多尺度缝网岩体渗流机理


社会任职Social Service
承担科研项目情况Undertaking Research Projects

[1] 国家科技重大专项专题复杂储层岩石力学特性与复杂缝网形成及支撑机制研究,2024-2030主持

[2] 国家自然科学基金青年项目考虑非平面特征的裂隙岩体水力裂缝群动态演化机制研究,2025-2027主持

[3] 湖北省人力资源和社会保障厅湖北省博士后先锋人才跟踪支持项目,2026-2028主持

[4] 湖北省地学中心青年培育项目长江流域沿线油气开发诱导断层活化机制研究,2024-2026主持

[5] 湖北省博士后创新研究岗位层理发育页岩水力裂缝分形特征的动态演化机制研究,2022-2024主持

[6] 中石油川庆钻探工程有限公司项目:威远龙马溪组立体开发储层敏感性伤害评价试验,2024-2025主持

[7] 国家自然科学基金联合基金项目深部原位地热储层改造的三维体破裂与増透机制及技术研究2023-2026骨干

[8] 国家自然科学基金联合基金项目深层海相页岩多断裂复杂应力压裂扰动地质体活化机理及改造控制理论与方法2025-2028年,骨干

[9] 湖北省自然科学基金创新发展联合基金项目CO2循环泵注干热岩压裂机理与调控机制研究,2024-2027年,骨干

[10] 石油西南油气田公司项目深层页岩岩石力学基础理论及压裂工艺优化研究2022-2024骨干

[11] 中国石化胜利油田石油工程技术研究院项目西部深层高压致密油藏压裂工艺技术研究2021-2022骨干

[12] 中国石化石油工程技术研究院有限公司项目火山岩及页岩油复杂岩性裂缝起裂扩展机理及形态预测研究2021-2022骨干

[13] 中国石油天然气集团有限公司项目枯竭油气藏大规模储氢基础理论与关键技术战略咨询研究2024-2025年,骨干


代表论著Representative Treatises

[1] Wu Mingyang, Chang Xin, Guo Yintong, Liu Jianjun, Yang Chunhe, Suo Yu. Advances, challenges, and opportunities for hydraulic fracturing of deep shale gas reservoirs[J]. Advances in Geo-Energy Research, 2025, 15(1): 1-4.

[2] Wu Mingyang, Jiang Changbao, Deng Bozhi, Gao Ke, Li Minghui, Liu Bo. Characterization and reconstruction of rough fractures based on vector statistics[J]. Geoenergy Science and Engineering, 2024, 234:212664.

[3] Wu Mingyang, Song Zhenlong, Zhu Zhengwen, Shi Di, Xia Debin, Li Qianying. Pore-scale investigation of two-dimensional water–oil displacement in fractured porous media[J]. The European Physical Journal Plus, 2024, 139:611.

[4] Wu Mingyang, Song Rui, Zhu Zhengwen, Liu Jianjun. A study on equivalent permeability models for tree-shaped fractures with different geometric parameters[J], Gas Science and Engineering, 2023, 112: 204946.

[5] Wu Mingyang, Jiang Changbao, Song Rui, Liu Jianjun, Li Minghui, Liu Bo, Shi Di, Zhu Zhengwen, Deng Bozhi. Comparative Study on Hydraulic Fracturing Using Different Discrete Fracture Network Modeling: Insight from Homogeneous to Heterogeneity Reservoirs[J], Engineering Fracture Mechanics, 2023, 284: 109274.

[6] Wu Mingyang, Gao Ke, Liu Jianjun, Song Zhenlong, Huang Xiaolin. Influence of rock heterogeneity on hydraulic fracturing: A parametric study using the combined finite-discrete element method[J], International Journal of Solids and Structures, 2022,234-235: 111293.

[7] Wu Mingyang, Wang Wensong, Shi Di, Song Zhenlong, Li Minghui, Luo Yafei. Improved box-counting methods to directly estimate the fractal dimension of a rough surface[J], Measurement, 2021, 177: 109303.

[8] Wu Mingyang, Wang Wensong, Zhang Dongming, Deng Bozhi, Liu Shumin, Lu Jun, Luo Yafei, Zhao Wanchun. The pixel crack reconstruction method: From fracture image to crack geological model for fracture evolution simulation[J], Construction and Building Materials, 2021, 273: 121733.

[9] Wu Mingyang, Wang Wensong, Song Zhenlong, Liu Bo, Feng Chundi. Exploring the influence of heterogeneity on hydraulic fracturing based on the combined finite-discrete method[J], Engineering Fracture Mechanics, 2021, 252: 107835.

[10] Wu Mingyang, Zhang Dongming, Wang Wensong, Li Minghui, Liu Shumin, Lu Jun, Gao Heng. Numerical simulation of hydraulic fracturing based on two-dimensional surface fracture morphology reconstruction and combined finite-discrete element method[J], Journal of Natural Gas Science and Engineering, 2020, 82: 103479.

[11] Wu Mingyang, Liu Jianjun, Lv Xiangfeng, Shi Di, Zhu Zhengwen. A study on homogenization equations of fractal porous media[J], Journal of Geophysics and Engineering, 2018, 15(6): 2388-2398.

[12] Shi Di, Wu Mingyang, Hao Yuexiang, Liu Jianjun, Guo Yintong. Simulation study on permeability characteristics of shale reservoirs considering multi-scale rough fracture network[J]. Physics of Fluids, 2025, 37: 073129.

[13] Song Rui, Wu Mingyang, Liu Jianjun, Yang Chunhe. Pore scale modeling on microbial hydrogen consumption and mass transfer of multicomponent gas flow in underground hydrogen storage of depleted reservoir[J], Energy, 2024, 306: 132534.

[14] Song Rui, Wu Mingyang, Wang Yao, Liu Jianjun, Yang Chunhe. In-situ X-CT scanning and numerical modeling on the mechanical behavior of the 3D printing rock[J], Powder Technology, 2023, 416: 118240.

[15] 刘建军, 吴明洋, 宋睿, 黄刘科, 戴小军. 低渗透油藏储层多尺度裂缝的建模方法研究[J]. 西南石油大学学报自然科学版,2017,39(4):90-103.

[16] 吴明洋, 李豹, 郭印同, 师迪, 郭武豪, 赵国凯. 一种基于体素建模的有限元地应力场模拟建模方法:中国, ZL202510103544.9.

[17] 师迪, 郭印同, 吴明洋, 夏德斌, 毕振辉. 一种裂隙岩体渗流性能预测方法、装置以及处理设备:中国, ZL202410487393.7.

[18] 吴明洋, 郭印同, 杨春和, 刘建军. 复杂非均质岩体压裂仿真平台2024SR0490630.


获奖及荣誉Awards and Honors

[1] 2024年湖北省科技进步二等奖

[2] 2024年四川省石油学会科技进步一等奖

[3] 2023年重庆市优秀博士学位论文

[4] 2023年绿色矿山科技进步一等奖

[5] 2022年绿色矿山基础研究一等奖