近5年代表性學術成果如下: 1、代表性英文文章 [1]Dan Zhang, Liang-Ping Yi*, Zhao-Zhong Yang*, et al. Phase field model for simulating hydraulic fracture propagation and oil–water two-phase flow in reservoir[J]. Computer Methods in Applied Mechanics and Engineering,2023,404:115838.(SCI,中科院1區TOP,通訊作者). [2] Chang-Xin Yang, Liang-Ping Yi*, Zhao-Zhong Yang*, et al.Numerical investigation of the fracture network morphology in multi-cluster hydraulic fracturing of horizontal wells: A DDM-FVM study[J]. Journal of Petroleum Science and Engineering,2022,215: 110723(SCI,中科院2區,通訊作者). [3]Jingyi Zhu, Liang-Ping Yi*, Zhaozhong Yang, et al.Numerical simulation on the in situ upgrading of oil shale reservoir under microwave heating[J]. Fuel, 2021, 287: 119553.(SCI,中科院1區TOP,通訊作者). [4] Jingyi Zhu, Liang-Ping Yi*, Zhaozhong Yang, et al. Three-dimensional numerical simulation on the thermal response of oil shale subjected to microwave heating[J]. Chemical Engineering Journal, 2021, 407: 127197.(SCI,中科院1區TOP,通訊作者). [5]Liang-Ping Yi*, Haim Waisman, Zhao-Zhong Yang,et al.A consistent phase field model for hydraulic fracture propagation in poroelastic media[J]. Computer Methods in Applied Mechanics and Engineering,2020, (372) :113396.(SCI,中科院1區TOP). [6]Liang-Ping Yi*, Xiao-Gang Li, Zhao-Zhong Yang,et al. Phase field modeling of hydraulic fracturing in porous media formation with natural fracture[J]. Engineering Fracture Mechanics, 2020 ,(236): 107206.(SCI,中科院2區). [7]Liang-Ping Yi, Xiao-Gang Li, Zhao-Zhong Yang, et al. A fully coupled fluid flow and rock damage model for hydraulic fracture of porous media[J]. Journal of Petroleum Science and Engineering, 2019, 178: 814-828.(SCI,中科院2區). [8] Zhao-Zhong Yang, Liang-Ping Yi*, Xiao-Gang Li, et al. Wellbore temperature and pressure calculation model for supercritical carbon dioxide jet fracturing[J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2019, 41(2): 185-200.(SCI,中科院4區,通訊作者). [9]Liang-Ping Yi*, Xiao-Gang Li, Zhao-Zhong Yang, et al. Wellbore temperature and pressure calculation model for coiled tubing drilling with supercritical carbon dioxide[J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2019, 41(8): 959-974.(SCI,中科院4區). [10]Liang-Ping Yi, min Jia, Xiao-Gang Li, et al. Transient wellbore temperature and pressure calculation model for supercritical CO2 jet fracturing[J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects,2019,1-16.(SCI,中科院4區). [11]Zhao-Zhong Yang, Liang-Ping Yi*, Xiao-Gang Li, et al. Pseudo-three-dimensional numerical model and investigation of multi-cluster fracturing within a stage in a horizontal well[J]. Journal of Petroleum Science and Engineering, 2018, 162: 190-213.(SCI,中科院2區,通訊作者). [12] Zhao-Zhong Yang, Liang-Ping Yi*, Xiao-Gang Li, et al. Phase control of downhole fluid during supercritical carbon dioxide fracturing[J]. Greenhouse Gases: Science and Technology, 2018, 8(6): 1079-1089.(SCI,中科院4區,通訊作者). [13]Zhao-Zhong Yang, Liang-Ping Yi*, Xiao-Gang Li, et al. Model for calculating the wellbore temperature and pressure during supercritical carbon dioxide fracturing in a coalbed methane well[J]. Journal of CO2 Utilization, 2018, 26: 602-611.(SCI,中科院2區,通訊作者). [14]Xiao-Gang Li, Liang-Ping Yi*, Zhao-Zhong Yang, et al. Coupling model for calculation of transient temperature and pressure during coiled tubing drilling with supercritical carbon dioxide[J]. International Journal of Heat and Mass Transfer, 2018, 125: 400-412.(SCI,中科院2區TOP,通訊作者). [15]Liang-Ping Yi*, Xiao-Gang Li, Zhao-Zhong Yang, et al. Coupled calculation model for transient temperature and pressure of carbon dioxide injection well[J]. International Journal of Heat and Mass Transfer, 2018, 121: 680-690.(SCI,中科院2區TOP). 2、代表性中文文章 [1]易良平,楊長鑫,楊兆中,等.天然裂縫帶對深層頁巖壓裂裂縫擴展的影響規律 [J].天然氣工業, 2022, 42(10): 84-97. [2]楊兆中,張丹,易良平*,等.多層疊置煤層壓裂裂縫縱向擴展模型與數值模擬[J].煤炭學報,煤炭學報,2021,46( 10) :3268-3277. [3]易良平,胡濱,李小剛,等.基于相場法的煤砂互層水力裂縫縱向延伸計算模型[J].煤炭學報, 2020,45( S2) : 706-716.. [4]楊兆中,易良平*,李小剛,等.致密儲層水平井段內多簇壓裂多裂縫擴展研究[J].巖石力學與工程學報, 2018,37(S2):3870-3878(EI). |