
姓名:索彧 | 职称:教授,博导 |
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系所:油气井工程教研室 | 最高学历/学位:博士 | |
学科:石油与天然气工程 | 所学专业:油气井工程 | |
电子邮箱:sycup09@163.com | ||
地址邮编:163318 | ||
学习与工作经历 学习经历: (1)2009.9-2013.7 西南石油大学 学士 导师:蒲冠州 (2)2013.9-2016.7 中国石油大学(北京) 硕士 导师:葛洪魁 (3)2016.8-2021.2 新南威尔士大学 博士 导师:Sheik Rahman,Zhixi Chen 工作经历: (1)2022.1-2025.10 大庆油田石油管理局 博士后 导师:何文渊,付晓飞 (2)2021.2-2025.9 东北石油大学 副教授 导师:艾池 (3)2025.9-至今 东北石油大学 教授、博导 | ||
研究方向 断裂力学、岩石力学、储层改造 (1)非常规储层岩石力学以及可压裂型评价技术 (2)非常规储层断裂力学以及声发射定量反演 (3)非常规储层压裂造缝机理及高效压裂技术 (4)非常规储层压裂数值模拟技术 | ||
学术兼职 (1)黑龙江省油气藏压裂改造与评价重点实验室副主任 (2)《Petroleum Science》青年编委(中科院一区) (3)《石油钻探技术》青年编委 (4)《断块油气田》青年编委 (5)《西安大学学报(自然科学版)》青年编委 (6)《长江大学学报(自然科学版)》青年编委 (7)《东北石油大学学报》青年编委 (8)《新疆石油天然气》青年编委 (9)中国能源学会专家委员会石油天然气专家组委员 (10)国家自然科学基金评审专家 (11)国家留学基金委评审专家 (12)美国石油工程师协会会员 (13)中国岩石力学学会会员 (14)Geology Geophysics and Earth Science,Editorial Board Member (15)《Rock Mechanics and Rock Engineering》、《Engineering Fracture Mechanics》、 《Journal of Petroleum Science and Engineering》、《岩土力学》等国内外核心学术期刊审稿人。 | ||
主讲课程 本科课程《岩石力学》、《钻井工程设计》 研究生课程《钻完井工程软件及应用(双语)》、《油气井工程设计规范与法规(双语)》 | ||
荣誉称号 (1)人力资源社会保障部2022年国家海外高层次人才项目入选者(全国30人) (2)2025年黑龙江省五四青年奖章 (3)2025年全国高校矿业石油安全工程领域优秀青年科技人才 (4)2022年第八届中国国际“互联网+”大学生创新创业大赛黑龙江省金奖,第一指导教师 (5)东北石油大学优秀毕业设计(论文)指导教师 (6)2023年东北石油大学优秀青年科技工作者 (7)2023年东北石油大学工会积极分子 | ||
指导研究生 2021级 苏显蘅、肖诚成 2022级 董牧宇、赵延杰 2023级 张旭、李子豪、李芬芬 2024级 杨楠、孔弦文、魏显航、杨稳晶、关文燕 2025级 武超、曹伟、康文倩、王梓珏 | ||
承担科研课题 2025年 (1)国家自然科学基金面上基金,纹层型陆相页岩油储层多尺度裂缝穿层扩展表征及智能调控压裂方法,主持 (2)企业科技创新项目,松辽盆地北部不同地区致密油纵向应力分布特征及对裂缝高度扩展影响规律研究,主持 (3)企业科技创新项目,页岩油水平井速度管自喷举升技术研究,主持 (4)企业科技创新项目,射孔过程水泥环密封失效范围实验测定,主持 2024年 (1)国家自然科学基金委联合基金,中高熟陆相页岩油富集理论与绿色有效开发基础研究,参与 (2)黑龙江重点研发项目,非常规储层二氧化碳裂缝扩展工艺研究及产业化,参与 (3)黑龙江学科协同创新成果项目,非常规储层二氧化碳增产技术研究与应用,参与 (4)企业科技创新项目,松辽及海拉尔探井岩石力学参数测试技术服务,主持 (5)企业科技创新项目,岩屑声波录井仪超声波探头及控制系统软件研发,主持 2023年 (1)黑龙江省博士后特别资助,古龙页岩油深部地层断裂机理及压裂缝网形成机制研究,主持 (2)黑龙江省高等教育教学改革项目,“互联网+”下石油工程类专业创新创业复合型人才培养研究与探索,主持 (3)黑龙江省研究生课程思政建设项目课程思政案例,钻完井工程软件及应用(双语),主持 (4)东北石油大学省部级杰出青年科研人才培育基金,页岩油气全生命周期井筒完整性及压裂研究,主持 2022年 (1)国家自然科学青年基金,深层页岩非线性断裂力学机理及复杂缝网形成模式研究,主持 (2)新时代龙江优秀博士学位论文,深层页岩水力压裂复合断裂机制及智能预测方法,主持 (3)黑龙江省博士后面上资助,考虑钻井液动态侵入下应力场变化的古龙页岩油水平井失稳破坏机理及形态研究,主持 (4)黑龙江省留学回国人员资助,松辽盆地砂岩-页岩夹层型页岩油储层水力裂缝缝高扩展规律研究,主持 (5)陕西省油气井及储层渗流与岩石力学重点实验室,层理性页岩流体侵入井壁失稳机理研究,主持 (6)提高油气采收率教育部重点实验室,纹层状页岩多段多簇压裂裂缝扩展规律及压裂效果智能预测,主持 2021年 (1)黑龙江省优秀青年基金,松辽盆地页岩油各向异性特征对水力压裂裂缝起裂的影响,主持 (2)油气藏地质与开发工程国家重点实验室,基于数字图像相关技术研究泥页岩的各向异性演化规律,主持 (3)黑龙江省科技厅大庆古龙页岩油揭榜挂帅科技攻关项目,古龙页岩油井壁稳定、井眼清洁及轨迹控制研究,子课题负责人 (4)教育部产学合作协同育人,FELAC软件在石油工程岩石力学领域的应用师资培训,主持 (5)东北石油大学培育基金,页岩压裂复合断裂模式表征对裂缝扩展的控制机理研究,主持 (6)东北石油大学科研启动基金,基于数字图像相关技术的页岩断裂的各向异性演化规律,主持 | ||
教材 (1)油气井工程设计规范与法规(双语),东北石油大学研究生教材建设项目,主编 (2)页岩油岩石力学与工程,东北石油大学本科生教材建设项目,主编 论文 2025年 (1)Yu Suo, Xianhang Wei, Yanjie Zhao, et al. Simulation analysis of hydraulic fracture initiation and propagation mechanisms under mixed-mode and reservoir fracturing, Petroleum Science, 2025, 262: 125286. (2)Yu Suo, Wenyan Guan, Muyu Dong, et al. Study on the heat extraction patterns of fractured hot dry rock reservoirs, Applied Thermal Engineering, 2025, 262: 125286. (3)Yu Suo, Xianhang Wei, Yanjie Zhao, et al. Review on Specimen Structure and Bedding Plane Effects in Mode-I Fracture Toughness Testing of Shale, Engineering Fracture Mechanics, 2025, 262: 125286. (4)Yu Suo, Xu Zhang, Yanjie Zhao, et al. Mechanisms of hydraulic fracture propagation in bedded shale: Insights from finite discrete element simulations[J]. Physics of Fluids, 2025, 37(8):087144. (5)Yu Suo, Xuanwen Kong, Heng Lyu, et al. Study on Wellbore Stability of Shale–Sandstone Interbedded Shale Oil Reservoirs in the Chang 7 Member of the Ordos Basin[J]. Processes, 2025, 13(5): 1361. (6)Yan Yan, Shangyu Yang, Lihong Han, Yu Suo. The influence of well configurations on geothermal energy extraction efficiency[J]. Thermal Science and Engineering Progress, 2025: 103898. (7)Guoqing Sun, Xiaofei Fu, Xingwang Zhu, Zihao Li, Yu Suo, Bin Huang. Physical simulation experiments and the effects of fracture propagation in the Lianggaoshan Formation shale[J]. Physics of Fluids, 2025, 37(4):047112. (8)Guiquan Wang, Fenfen Li, Yu Suo, et al. Permeability Characteristics and Strength Degradation Mechanisms of Drilling Fluid Invading Bedding-Shale Fluid[J]. Symmetry, 2025, 17(7): 981. (9)Yu Suo, Fenfen Li, Qiang Liang, et al. Weight-Based Numerical Study of Shale Brittleness Evaluation[J]. Symmetry, 2025, 17(6): 927. (10)索彧, 李芬芬 ,何文渊,等.钻井液驱替下古龙页岩力学特性及弱化规律[J].东北石油大学学报,2025,49(02):97-138. 2024年 (1)Yu Suo, Muyu Dong, Xiaofei Fu, et al. Experimental and Numerical simulation research on hot dry rock wellbore stability under different cooling methods, Geothermics, 2024,119,102977 (2)Yu Suo, Yanjie Zhao, Xiaofei Fu, et al. Study on fracture propagation behavior of deep high-temperature shale gas based on the modified MERR criterion. Theoretical and Applied Fracture Mechanics, 2024, 131: 104532 (3)Yu Suo*, Xianheng Su, Zijian Wang, et al. Study on the Mechanical Properties of Sandstone-Shale Composite Continental Shale Oil Based on the Discrete Element Method. Powder Technology, 2024, 432, 119118 (4)Yu Suo*, Xu Zhang, Yajie Tian, et al. Effect of natural fractures with different sizes on the development of supercritical CO2 fractures–A case study on Songliao Basin. Journal of CO2 Utilization, 2024, 82: 102761 (5)Biao Wang, Yanjie Zhao, Yu Suo*. Numerical Simulation Study of Pressure-Driven Water Injection and Optimization Development of Daqing Oilfield. Processes, 2024,1,12 (6)索彧,李芬芬,何文渊等.钻井液侵入纹层状页岩的模型[J].工程科学学报,2024,46(03):547-555. (7)索彧,苏显蘅,何文渊等.水力裂缝与天然裂缝相交扩展形态的智能预测[J].科学技术与程,2024,24(02):545-556. (8)索彧,苏显蘅,何文渊等.松辽盆地大情字地区砂-页复合储层可压性评价[J].岩石力学与工程学报,2024,24(02):545-556. (9)Yu Suo, Zihao Li, Xiaofei Fu, et al. Comprehensive Study of Hydraulic Fracturing in Shale Oil Reservoirs Comprising Shale-Sandstone Transitions, Physics of Fluids, 2024, 36(12) (10)Yu Suo, Muyu Dong, Xiaofei Fu, et al. Parameter optimization of hot dry rock heat extraction based on discrete element crack network model, Physics of Fluids, 2024, 36(7). 2023年 (1)Yu Suo, Yanjie Zhao, Xiaofei Fu, et al. Mixed-mode fracture behavior in deep shale reservoirs under different loading rates and temperatures. Petroleum Science, 2023,20,3037-3047 (2)Yu Suo, Yanjie Zhao, Xiaofei Fu, et al. Acoustic and mechanical tests of sandstone-shale composites in Songliao Basin and prediction of uniaxial compressive strength. Geoenergy Science and Engineering, 2023,228, 212034. (3)Yu Suo*, Muyu Dong, Wenyuan He, et al. Modeling wellbore instability in hot dry rock under various temperature conditions. Unconventional Resources, 2023,3,275-283 (4)Yu Suo, Yanjie Zhao, Xiaofei Fu, et al. Research on the mixed-mode fracture damage characteristics of shale soaked in diferent drilling fuids. Geomechanics and Geophysics for Geo-Energy and Geo-Resources. 2023, 9,156 (5)段永伟, 于雪盟, 刘洪霞, 索彧*等. 基于修正Burgers模型的泥岩层套管形变影响因素分析. 力学与实践, 2023,45(01):130-139. (6)段永伟, 何慧, 于雪盟,索彧*等. 不同注入介质对泥岩层滑移的影响研究. 力学与实践,2023,45(02):362-372. 2022年 (1)Yu Suo*, Xianheng Su, Zijian Wang, et al. A study of inter-stratum propagation of hydraulic fracture of sandstone-shale interbedded shale. Engineering Fracture Mechanics (2022): 108858. (2)Yu Suo*, Xianheng Su, Qinyou Ye, et al. The investigation of impact of temperature on mixed-mode fracture toughness of shale by semi-circular bend test. Journal of Petroleum Science and Engineering (2022): 110905. (3)Yu Suo, Jiu Zhang, Fuping Feng*, et al. Study on the Evolution Law of Shale Hydraulic Fracture Interacting with Bedding Layer under Pulsation Loading [J]. Lithosphere, 2022,(Special 4): 2059066. (4)Yu Suo*, Muyu Dong, Zijian Wang, et al. Characteristics of mixed-mode Ⅰ-Ⅱ fracture of bedding mud shale based on discrete element method. Journal of Petroleum Science and Engineering (2022): 111135. (5)Qinyou Ye, Xujiao He, Yu Suo*, et al. The Statistical Damage Constitutive Model of Longmaxi Shale under High Temperature and High Pressure. Lithosphere, 2022,(Special 12): 2503948. 2021年 (1)Fuping Feng, Xu Han, Yu Suo*, Heyuan Wang, Qinyou Ye, Yongwei Duan; Study on Synchronous Propagation Behavior of Hydraulic Fractures and Cementing Interfacial Cracks during Fracturing of Shale Horizontal Wells. Lithosphere, 2021 (Special 4): 7449856. (2)Yu Suo*, Zhixi Chen, Sheikh S Rahman,. Mixed-Mode Fracture Behaviour of Semicircular Bend Shale with Bedding Layer. [J] Arabian Journal for Science and Engineering, 2021 2020年以前 (1)Yu Suo, Zhixi Chen, Sheikh S Rahman*, et al. Experimental and Numerical investigation of the effect of bedding layer orientation on Fracture Toughness of Shale Rocks [J]. Rock Mechanics and Rock Engineering, 2020, 53: 3625-3635. (2)Yu Suo*, Zhixi Chen, Hao Yan, et al. Changes in Shale Rock Properties and Wave Velocity Anisotropy Induced by Increasing Temperature [J]. Natural Resources Research, 2020, 29:4073-4083. (3)Yu Suo*, Zhixi Chen, Sheikh S Rahman, et al. Numerical simualtion of mixed-mode hydraulic fracture propagation and interaction with different types of natural fractures in shale gas reservoirs [J]. Environmental Earth Sciences, 2020, 79: 1-11. (4)Yu Suo*, Zhixi Chen, Sheikh S Rahman, et al. Experimental study on mechanical and anisotropic properties of shale and estimation of uniaxial compressive strength, [J] Energy Sources, Part A: Recovery, Utilization, and Environmental Effects ,2020,55: 1-11. (5)Yu Suo*, Zhixi Chen, Sheikh S Rahman, et al. Using Cohesive Zone Model to Simulate the Hydraulic Fracture Interaction with Natural Fracture in Poro-Viscoelastic Formation [J]. Energies, 2019, 12: 1254-1260. (6)Yu Suo*, Zhixi Chen, Sheik Rahman, et al.Simulation of mixed mode hydraulic fracture propagation in shale gas reservoirs[C]. Rock Mechanics for Natural Resources and Infrastructure Development- Proceedings of the 14th Intermational Congress on Rock Mechanics and Rock Engineering.2020 (7)Yu Suo*, Zhixi Chen, Sheik Rahman, et al. Effects of formation properties and treatment parameters on hydraulic fracture geometry in poro-viscoelasticity shale gas reservoirs using cohesive zone method in a 3D model[C]. Abu Dhabi International Petroleum Exhibition and Conference 2018, ADIPEC 2018 (8)Yu Suo*, Zhixi Chen, Sheik Rahman, Experimental and Numerical investigation of Fracture Toughness of Anisotropic Shale Rocks[C]. SPE/AAP/SEG Unconventional Resources Technlogy .URTEC 2018. (9)索彧,葛洪魁*,王小琼,等. 页岩岩屑高精度波速测量的仪器与方法[J]. 岩土力学,2018, 39(1):1-8. (10)索彧,汪道兵,左乾坤,刘峻嵘.单轴加载页岩破坏全过程的声发射特征[J].大庆石油地质与开发,2016,35(02):159-164. 教改论文 (1)索彧,唐俊雅,刘心蕊,等.新时代石油工程专业人才培养模式的几点思考[J].高教学刊,2024,10(29):163-167 (2)索彧,王志华,王雷.浅谈石油精神融入石油类高校思政教育[J].大庆社会科学,2024(01):153-157. | ||
专利 (1)索彧,冯福平,徐凯凯,叶清友,段永伟,艾池,一种不同水平层理页岩自吸量计算方法及系统,2022-0822,中国,CN113627023B (2)张健伟,冯福平,张军,索彧,胡超洋,董乐园,一种基于水化填充机理的水基钻井液泥饼固体润滑剂,2022-01-13,中国,CN202210039445.5 (3)张健伟,冯福平,索彧,胡超洋,张军,王鹤远,一种降低高有害固相含量水基钻井液泥饼摩阻的方法,2022-01-13,中国,CN202210039454.4 | ||
软件著作权 (1)页岩储层断裂韧性预测软件V1.0 (2)重复压裂数值监测管理软件V1.0 (3)重复压裂改造效果监测软件V1.0 (4)超深井坍塌压力预测软件V1.0 (5)页岩水力压裂数值监测管理软件V1.0 (6)页岩储层水力压裂驱替一体化软件V1.0 | ||
获奖 (1)石油与天然气工程领域研究生“两融合四并用六协同”培养路径的研究与实践,黑龙江省高等教育成果奖,二等奖,13/15 (2)坚持大庆精神为引领的“5144”页岩油气现代产业学院建设与实践,中国石油教育学会石油高等教育教学教学成果奖,特等奖,10/15 (3)深层油气藏注液增能与暂堵转向协同压裂关键技术及应用,2024年中国石油和化学工业联合会科技进步,二等奖,2/11 (4)深井高温油气藏缝高控制与暂堵转向协同压裂关键技术与应用,2024年绿色矿山科学技术奖科技进步奖,一等奖,3/11 (5)松辽盆地北部致密油藏双甜点识别与高效开发关键技术及应用,2023年黑龙江省科技进步奖,一等奖,9/11 (6)松辽盆地页岩储层高效压裂关键技术及产业化应用,2023年中国产学研合作创新成果奖,二等奖,1/10 (7)深井高温储层压裂暂堵转向机理及调控技术与应用,2023年中国石油和化工自动化应用协会技术发明奖,一等奖,2/11 | ||

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