◎学习与工作经历
2021.09-至今,成都理工大学能源学院
2015.09-2021.06,中国石油大学(华东),油气井工程,博士学位(硕博连读)
2011.09-2015.06,中国石油大学(华东),石油工程,学士学位
◎研究方向
损伤与断裂力学、多物理场耦合力学、储层改造力学、井壁失稳力学、油气工程智能岩石力学
◎主讲课程
《石油工程岩石力学》、《油层物理学》、《岩石物理测试技术及应用》、《高等油层物理》
◎主持或参与科研课题
从事科研课题多项,部分如下:
[1]国家自然基金青年基金:深部页岩压裂损伤-断裂跨尺度耦合效应研究,2025.01-2027.12,主持
[2]四川省自然科学基金:液氮压裂页岩储层多重致裂机制耦合分析及复杂缝网动态演化模拟研究,2022.01-2023.12,主持
[3]国家自然基金石油化工联合基金:超深层天然气藏开发基础理论研究,2018.01-2021.12,参与
[4]国家自然基金面上项目:液氮辅助页岩体积压裂增效机理研究,2016.01-2019.12,参与
[5]国家自然基金青年项目:深冷低温冲击作用下泥页岩脆性演化机制研究,2016.01-2018.12,参与
[6]中石油工程技术研究院:流体侵入煤岩煤矸稳定性测试,2024.10-2024.12,主持
[7]中石油工程技术研究院:裂缝性地层井壁围岩力学响应特性测试,2023.07-2023.12,主持
[8]中石油大庆油田采油工程研究院:川渝碳酸岩岩石力学参数测试及物模实验,2022.06-2023.07,技术负责人
[9]中石油大庆油田采油工程研究院:大物模实验,2022.12-2023.10,技术负责人
[10]中石油西南油气分公司:深层页岩储层岩石力学与地应力测试实验,2021.06-2022.12,技术负责人
[11]中石油川庆钻探:本溪8煤岩煤矸样品稳定性规律检测,2024.06-2024.12,技术负责人
◎获奖情况
[1]《深层油气田井筒安全构建关键技术与工业化应用》, 中国商业联合会服务业科技创新奖一等奖, 2022.12
[2]《液氮作用下页岩压裂力学响应研究》, 中国石油大学(华东)优秀博士论文, 2021.06
◎论文
共发表期刊论文30余篇,其中第一或通讯作者论文如下:
[1]Han S., Gao Q*., Yan X., et al. Thermally-induced cracking behaviors of coal reservoirs subjected to cryogenic liquid nitrogen shock. Journal of Rock Mechanics and Geotechnical Engineering, 2024, 16: 2894-2908.
[2]Han S., Gao Q*., Yang J., et al. Cryogenic liquid nitrogen stimulation-induced cracking in gas-enriched shale reservoirs: A numerical investigation. Engineering Fracture Mechanics, 2023, 282: 109172.
[3]Gao Q., Han S*., Cheng Y., et al. Microscale thermo-hydro-mechanical modeling of thermal recovery of shale gas. Geomechanics for Energy and the Environment, 2023, 34: 100462.
[4]Gao Q., Han S*., Cheng Y., et al. Flow-coupled-geomechanical modelling of CO2 transport in depleted shale from a microscopic perspective. Energy, 2022, 257: 124727.
[5]Han S., Cheng Y*., Gao Q., et al. A fully coupled thermo-hydro-mechanical model with ice-water phase change for liquid nitrogen injection simulation. Journal of Petroleum Science and Engineering, 2021, 203: 108676.
[6]Gao Q., Han S*., Cheng Y*., et al. Apparent permeability model for gas transport through micropores and microfractures in shale reservoirs. Fuel, 2021, 285: 119086.
[7]Gao Q., Cheng Y., Han S*., et al. Effect of shale matrix heterogeneity on gas transport during production: A microscopic investigation. Journal of Petroleum Science and Engineering. 2021. 201: 108526.
[8]Han S., Gao Q., Cheng Y*., et al. Experimental study on brittle response of shale to cryogenic fluid nitrogen treatment. Journal of Petroleum Science and Engineering, 2020,194:107463.
[9]Han S., Cheng Y*., Gao Q*., et al. Numerical study on heat extraction performance of multistage fracturing Enhanced Geothermal System. Renewable Energy. 2020,149:1214-1226.
[10]Han S*., Cheng Y*., Gao Q*., et al. Analysis of instability mechanisms of natural fractures during the approach of a hydraulic fracture. Journal of Petroleum Science and Engineering. 2020.185:106631.
[11]Han S*., Cheng Y*., Gao Q*., et al. Investigation on heat extraction characteristics in randomly fractured geothermal reservoirs considering thermo-poroelastic effects. Energy Science Engineering. 2019, 7(5): 1705-1726.
[12]Han S*., Cheng Y*., Gao Q*., et al. Experimental study of the effect of liquid nitrogen pretreatment on shale fracability. Journal of Natural Gas Science and Engineering. 2018, 60:11-23.
[13]Gao Q*., Han S*., Cheng Y., et al. Effects of non-uniform pore pressure field on hydraulic fracture propagation behaviors. Engineering Fracture Mechanics. 2019,221:106682.
[14]Gao Q*., Cheng Y*., Han S*., et al. Exploration of non-planar hydraulic fracture propagation behaviors influenced by pre-existing fractured and unfractured wells. Engineering Fracture Mechanics. 2019, 215: 83-98.
[15]Gao Q*., Cheng Y*., Han S*., et al. 2018 Numerical modeling of hydraulic fracture propagation behaviors influenced by pre-existing injection and production wells. Journal of Petroleum Science and Engineering. 2019,172: 976-987.
[16]Huang, N.; Han, S.; Jiang, Y.; Han, S*. REV and three-dimensional permeability tensor of fractured rock masses with heterogeneous aperture distributions. Water 2024, 16, 2435.
[17]Wang L., Yan X*., Gou B., Han S*., et al. Modeling of cryogenic cracking behavior of tight sandstone under confinement. Geomechanics for Energy and the Environment, 2024, 38: 100557.
[18]韩松财, 魏佳, 程远方, 等.诱导应力下天然裂缝的稳定性及破坏特征.大庆石油地质与开发. 2017, 36(06):168-174.
◎主要授权/受理专利
[1]一种基于温度围压效应的页岩脆性评价指数确定方法,国家发明专利
[2]基于多场耦合的射孔孔眼变形评价方法,国家发明专利
[3]一种用于天然气水合物储层的液氮压裂改造装置及方法,国家发明专利
[4]一种液氮无水压裂模拟实验装置,国家发明专利
[5]测量低温下岩石断裂韧性的实验装置及方法,国家发明专利
◎学术交流
[1]韩松财. 冷流体注入诱导储层热致裂效应研究. 第六届复杂油气工程科技创新论坛, 成都, 2024.
[2]韩松财. 低温液氮冲击诱导深部页岩储层热致裂特征研究. 首届地球能源前沿论坛, 武汉, 2024.
[3]Han S., Yan X., Li L., et al. Numerical modeling of cracking behaviors of coal reservoirs subjected to cryogenic shock. In: 57th US Rock Mechanics/Geomechanics Symposium held in Atlanta, Georgia, USA, 2023.
[4]Han S., Yan X., Gao Q., et al. Mesomechanics-based crack evolution modeling in shale reservoirs stimulated by cryogenic liquid nitrogen. In: 56th U.S. Rock Mechanics/Geomechanics Symposium American Rock Mechanics Association. Santa Fe, New Mexico, USA, 2022.
[5]Han S., Cheng Y., Gao Q., et al. Study on failure features of natural fracture during hydraulic fracture approaching. In: 53rd U.S. Rock Mechanics/Geomechanics Symposium American Rock Mechanics Association. New York, USA, 2019.
[6]Han S., Cheng Y., Gao Q., et al. Simulation study on heat extraction in enhanced geothermal reservoirs with random fracture distribution. In: 53rd U.S. Rock Mechanics/Geomechanics Symposium American Rock Mechanics Association. New York, USA, 2019.
[7]Han S., Cheng Y., Gao Q., et al. Experimental study of the effect of liquid nitrogen on shale physical/mechanical properties. In: 52nd U.S. Rock Mechanics/Geomechanics Symposium American Rock Mechanics Association. Seattle, USA, 2018.
◎行政职务及社会职务
[1]中国岩石力学与工程学会会员、美国岩石力学协会会员
[2]教育部全国本科论文(设计)抽检评审专家
[3]担任《Engineering Fracture Mechanics》《Journal of Petroleum Science and Engineering》《Marine and Petroleum Geology》《Fuel》《International Journal of Mining Science and Technology》《Petroleum Science》《Renewable Energy》《Geothermics》等多个期刊论文审稿人