研究领域
石油工程岩石力学、井壁稳固、水力压裂、井筒完整性等
科研项目
[1]深层页岩水力裂痕闭合的蠕变机理研究,国家自然科学基金面上项目(主持),2019-2021
[2]页岩油气高效开发基础理论研究,国家自然科学基金重大项目(研究主干),2015-2019
[3]高温高应力盐膏层弯曲井筒围岩失稳机理与控制理论研究,国家自然科学青年基金项目(主持),2013-2015
[4]页岩粘土矿物外貌纳米质料改性对井壁稳固作用机理研究,中国博士后科学基金特殊资助(主持),2013-2014
[5]超深裂痕性气藏井筒失稳机理及转向工艺优化研究,国家油气重大专项(认真),2016-2019
[6]乌石17-2油田井壁稳固性及钻井提速手艺研究,中海油科技项目(认真),2019-2021
[7]钻井液稳固井壁的抑制性定量评价新要领,中石油科技项目(认真),2018-2020
[8]克拉苏结构带盐膏层力学机制及蠕变纪律系统研究,中石油科技项目(认真),2018-2021
[9]碳酸盐岩地层漏失展望模子及井下重大随钻诊断系统的研究与开发,中石油科技项目(认真),2018-2019
[10]深层高应力情形下井壁失稳物理模拟实验与评价研究,中石化科技项目(认真),2019-2020
Publications
[1]Role of brine composition on rock surface energy and its implications for subcritical crack growth in calcite[J]. Journal of Molecular Liquids, 2020,303: 112638.
[2]Wetting Behavior of Shale Rocks and Its Relationship to Oil Composition[J]. Energy & Fuels, 2019, 33(12): 12270-12277.
[3]Characterization of Shale Softening by Large Volume-Based
Nanoindentation[J]. Rock Mechanics and Rock Engineering, 2019: 1-17.
[4]Analytical modelling of wettability alteration-induced micro-fractures during hydraulic fracturing in tight oil reservoirs[J]. Fuel, 2019, 249: 434-440.
[5]Effect of Shale Anisotropy on Hydration and Its Implications for Water Uptake[J]. Energies, 2019, 12(22): 4225.
[6]Predicting seismic-based risk of lost circulation using machine learning[J]. Journal of Petroleum Science and Engineering, 2019, 176: 679-688.