職稱:教授
單位:油氣開采研究所
最高學曆/學位:博士
學科:油氣田開發工程學科,石油與天然氣工程
所學專業:油氣田開發工程
電子郵箱:lsyupc@163.com;lisongyan@upc.edu.cn
聯係電話:15253201659
地址郵編:山東省青島市黃島區長江西路66號中國石油大學必威app精裝版客服 ,266580
職稱:教授
單位:油氣開采研究所
最高學曆/學位:博士
學科:油氣田開發工程學科,石油與天然氣工程
所學專業:油氣田開發工程
電子郵箱:lsyupc@163.com;lisongyan@upc.edu.cn
聯係電話:15253201659
地址郵編:山東省青島市黃島區長江西路66號中國石油大學必威app精裝版客服 ,266580
每屆計劃招生3-5名研究生,歡迎對石油、化學感興趣的同學報考!
[10] Songyan Li*, Shaopeng Li, Kexin Du, Jianzhong Zhu, Liying Shang, Kaiqiang Zhang*. Synthesis and stability of switchable CO2-responsive foaming coupled with nanoparticles. iScience, 2022, 25: 105091.
[11] Songyan Li*, Zhiheng Hu, Zhoujie Wang, Yonglin Zhong. Experimental investigation on the stability of oil-based nitrogen foam under ultrahigh pressure and elevated temperature. Energy & Fuels, 2022, 36: 4782-4791.(封麵文章)
[12] Zhoujie Wang, Songyan Li*, Zhaomin Li. A novel strategy to reduce carbon emissions of heavy oil thermal recovery: Condensation heat transfer performance of flue gas-assisted steam flooding. Applied Thermal Engineering 2022, 205, 118076.
[13] Songyan Li*, Rui Han, Zhoujie Wang, Zhaomin Li, Na Zhang*, Kaiqiang Zhang*. Thermal flue gas utilization in delivering unconventional geo-energy. Fuel, 2022, 314, 123072.
[14] Songyan Li*, Lei Wang, Lu Sun, Zhaomin Li, Guangwei Ren*. Formulation evaluation of an innovative composite foamed gel with high temperature and salinity compatibility in heavy oil reservoirs. Journal of Petroleum Science and Engineering, 2022, 210: 110007.
[15] Songyan Li*, Rui Han, Peng Wang, Zijian Cao, Zhaomin Li, Guangwei Ren*. Experimental investigation of innovative superheated vapor extraction technique in heavy oil reservoirs: a two-dimensional visual analysis. Energy, 2022, 238, 121882.
[16] Songyan Li*, Lin Wang, Lina Su, Zhaomin Li, Kaiqiang Zhang*. Carbon dioxide diffusions in methane-dissolved pore fluids: implications for geological carbon storage and utilization in tight formations. Chemical Engineering Journal, 2022, 429: 132147.
[17] Songyan Li*, Lu Sun, Lei Wang, Zhaomin Li, Kaiqiang Zhang*. Hybrid CO2-N2 huff-n-puff strategy in unlocking tight oil reservoirs. Fuel, 2022, 309, 122198.
[18] Kang Yang, Songyan Li∗, Kaiqiang Zhang∗, Yongwei Wang. Synergy of hydrophilic nanoparticle and nonionic surfactant on stabilization of carbon dioxide-in-brine foams at elevated temperatures and extreme salinities. Fuel, 2021, 288: 119624.
[19] Songyan Li∗, Zhiheng Hu, Chen Lu, Mingxuan Wu, Kaiqiang Zhang∗, Weilin Zheng. Microscopic visualization of greenhouse-gases induced foamy emulsions in recovering unconventional petroleum fluids with viscosity additives. Chemical Engineering Journal, 2021, 411: 128411.
[20] Songyan Li∗, Peng Wu, Kaiqiang Zhang∗. Complex foam flow in series and parallel through multiscale porous media: Physical model interpretation. International Journal of Heat and Mass Transfer, 2021, 164, 120628.
[21] Songyan Li*, Zhoujie Wang, Rui Han, Lei Wang, Zukang Hu. Experimental study on the cyclic steam stimulation assisted by flue gas under shallow heavy-oil reservoir conditions: optimization of the steam-flue gas ratio. Frontiers in Energy Research, 2020, 8, 599370.
[22] Songyan Li*, Chen Lu, Mingxuan Wu, Zhiheng Hu, Zhaomin Li, Zhiyuan Wang. New insight into CO2 huff-n-puff process for extraheavy oil recovery via viscosity reducer agents: an experimental study. Journal of CO2 Utilization, 2020, 42: 101312.
[23] Songyan Li*, Yifan Wang, Kaiqiang Zhang*. Exergy analysis of heat extraction from hot dry rock by enclosed water recycling in a horizontal well. Geothermics, 2020, 86: 101867.
[24] Zhengxiao Xu, Songyan Li*, Binfei Li, Danqi Chen, Zhongyun Liu, Zhaomin Li*. A review of development methods and EOR technologies for carbonate reservoirs. Petroleum Science, 2020, 17(4): 990-1013. 高被引
[25] Songyan Li*, Qun Wang, Zhaomin Li. Stability and flow properties of oil-based foam generated by CO2. SPE Journal, 2020, 25(1): 416-431, SPE 199339.高被引
[26] Songyan Li*, Qun Wang, Kaiqiang Zhang*, Zhaomin Li. Monitoring of CO2 and CO2 oil-based foam flooding processes in fractured low-permeability cores using nuclear magnetic resonance (NMR). Fuel, 2020, 263: 116648.高被引
[27] Songyan Li*, Yifan Wang, Kaiqiang Zhang*, Chenyu Qiao. Diffusion behavior of supercritical CO2 in micro- to nanoconfined pores. Industrial & Engineering Chemistry Research, 2019, 58(47): 21772−21784.
[28] Songyan Li⁎, Kaiqiang Zhang⁎, Qun Wang. Experimental study on the corrosion of a downhole string under flue gas injection conditions. Energy Science & Engineering, 2019; 7: 2620–2632.
[29] Songyan Li⁎, Tingting Yu, Zhaomin Li, Kaiqiang Zhang⁎. Experimental investigation of nitrogen-assisted SAGD in heavy-oil reservoirs: A two-dimensional visual analysis. Fuel, 2019, 257: 1-16.
[30] Songyan Li*, Kang Yang, Zhaomin Li, Kaiqiang Zhang, Na Jia. Properties of CO2 foam stabilized by hydrophilic nanoparticles and nonionic surfactants. Energy & Fuels, 2019, 33(6): 5043-5054.
[31] Songyan Li*, Chenyu Qiao, Guowei Ji, Qun Wang, Lei Tao*. Experimental study of profile control with foam stabilized by clay particle and surfactant. Energies, 2019, 12(5), 781-799.
[32] Songyan Li*, Chenyu Qiao, Zhaomin Li, Yuting Hui. The effect of permeability on supercritical CO2 diffusion coefficient and determination of diffusive tortuosity of porous media under reservoir conditions. Journal of CO2 Utilization, 2018, 28, 1-14.
[33] Songyan Li*, Kaiqiang Zhang*, Na Jia*, Lirong Liu. Evaluation of four CO2 injection schemes for unlocking oils from low-permeability formations under immiscible conditions. Fuel, 2018, 234: 814-823.
[34] Songyan Li*, Chenyu Qiao, Chao Zhang, Zhaomin Li. Determination of diffusion coefficients of supercritical CO2 under tight oil reservoir conditions with pressure-decay method. Journal of CO2 Utilization, 2018, 24, 430 - 443.
[35] Songyan Li, Binfei Li, Qiliang Zhang, Zhaomin Li, Daoyong Yang*. Effect of CO2 on heavy oil recovery and physical properties in huff-n-puff processes under reservoir conditions. Journal of Energy Resources Technology -Transactions of the ASME, 2018, 140(7), 72907- 72917.
[36] Songyan Li*, Chenyu Qiao, Zhaomin Li, Silagi Wanambwa. Properties of carbon dioxide foam stabilized by hydrophilic nanoparticles and hexadecyltrimethylammonium bromide. Energy & Fuels, 2017, 31(2): 1478 - 1488.
[37] Songyan Li*, Zhaomin Li, Xiaona Sun. Effect of flue gas and n-hexane on heavy oil properties in steam flooding process. Fuel, 2017, 187, 84 - 93.
[38] Songyan Li*, Zhaomin Li, Quanwei Dong. Diffusion coefficients of supercritical CO2 in oil-saturated cores under low permeability reservoir conditions. Journal of CO2 Utilization, 2016, 14, 47 - 60.
[39] Songyan Li*, Zhaomin Li, Peng Wang. Experimental study of the stabilization of CO2 foam by sodium dodecyl sulfate and hydrophobic nanoparticles. Industrial & Engineering Chemistry Research, 2016, 55(5): 1243 - 1253.
[40] Songyan Li*, Zhaomin Li. Effect of temperature on the gas/oil relative permeability of Orinoco Belt foamy oil. SPE Journal, 2016, 21(1): 170-179, SPE-174089-PA.
[41] Songyan Li*, Zhaomin Li, Zhuangzhuagn Wang. Experimental study on performance of foamy oil flow under different solution gas-oil ratios. RSC Advances, 2015, 5(82): 66797 - 66806.
[42] Songyan Li*, Zhaomin Li, Binfei Li. Experimental study on foamed gel flow in porous media. Journal of Porous Media, 2015, 18(5): 519-536.
[43] 李鬆岩,劉己全,李兆敏*,李賓飛,王鵬,劉偉,李金洋,張超. 油藏條件下CO2乳液穩定性實驗. 石油學報,2015,36(5),584-592.
[44] 李鬆岩,李兆敏,李賓飛,李金洋. 泡沫驅替過程中阻力因子與岩心氣相飽和度的變化. 油田化學,2016,33(2),266-270.
[45] 李鬆岩,王麟,韓瑞,李論,李愛英,李兆敏. 裂縫性致密油藏超臨界CO2泡沫驅規律實驗研究. 油氣地質與采收率,2020,27(1):29-35.
[46] Chao Zhang, Chenyu Qiao, Songyan Li*, Zhaomin Li. The effect of oil properties on the supercritical CO2 diffusion coefficient under tight reservoir conditions. Energies, 2018, 11(6): 1495-1514.
[47] Kaiqiang Zhang, Na Jia*, Songyan Li, Lirong Liu. Millimeter to nanometer-scale tight oil-CO2 solubility parameter and minimum miscibility pressure calculations, Fuel, 2018, 220, 645-653. 高被引、熱點
[48] K Zhang, N Jia, S Li, L Liu. Static and dynamic behavior of CO2 enhanced oil recovery in shale reservoirs: Experimental nanofluidics and theoretical models with dual-scale nanopores. Applied Energy, 2019, 255: 113752. 高被引、熱點
[49] Kaiqiang Zhang, Na Jia*, Songyan Li*, Lirong Liu. Thermodynamic phase behaviour and miscibility of confined fluids in nanopores. Chemical Engineering Journal, 2018, 351: 1115–1128. 高被引、熱點
[50] Utilization of Surfactant-Stabilized Foam for Enhanced Oil Recovery by Adding Nanoparticles, Energy & Fuels,2014, 28, 2384−2394. 高被引
[51] Songyan Li, Zhaomin Li, Binfei Li. Experimental study and application of tannin foam for profile modification in cyclic steam stimulated well. Journal of Petroleum Science and Engineering, 2014, 118, 88-98.
[52] Songyan Li, Zhaomin Li, Teng Lu, Binfei Li. Experimental study on foamy oil flow in porous media with Orinoco Belt heavy oil. Energy & Fuels, 2012, 26(10), 6332-6342.
[53] Songyan Li, Zhaomin Li, Riyi Lin, Binfei Li. Modeling of sand cleanout with foam fluid for vertical well. SPE Journal, 2010, 15(3), 805-811.
[54] Songyan Li, Zhaomin Li, Riyi Lin, Binfei Li. Modeling of lifting heavy oil assisted by enclosed thermal fluid circulation in hollow rod. Journal of Petroleum Science and Engineering, 2010, 75(1-2), 135-142.
[55] Songyan Li, Zhaomin Li, Binfei Li. Experimental study and application on profile control using high-temperature foam. Journal of Petroleum Science and Engineering, 2011, 78(3-4), 567-574.
[56] Songyan Li, Zhaomin Li, Binfei Li, Riyi Lin. Experimental study of effect of permeability on foam diversion. Petroleum Science and Technology, 2012, 30(18), 1907-1919.
[57] Li Songyan, Li Zhaomin, Lin Riyi. Mathematical models for foam-diverted acidizing and their applications. Petroleum Science, 2008, 5(2), 145-152.
[58] 李鬆岩,李兆敏,林日億,陳月飛,郭強.泡沫分流酸化數學模型研究及應用.中國石油大學學報(自然科學版),2008,32(5):77-82.
[59] 李鬆岩,林日億,李兆敏,尚朝輝,曹麗召.泡沫流體密度-壓力-溫度關係的實驗研究.石油化工高等學校學報,2008,21(2):71-75.
[60] 李鬆岩,李兆敏,李賓飛. 砂岩基質酸化中酸岩反應數學模型. 中國礦業大學學報,2012,41(2),236-241.
[61] 李鬆岩,李兆敏,孫茂盛,等. 水平井泡沫流體衝砂洗井技術研究.天然氣工業,2007,27(7):71-74
[62] 李鬆岩,李兆敏,林日億. 泡沫舉升排酸過程井筒壓力溫度數學模型研究.西南石油大學學報,2009,31(2):59-63
[63] 李鬆岩,李兆敏,李賓飛,等. 泡沫發生器內部流場的數值模擬.石油礦廠機械,2009,38(2):5-11
[64] 李鬆岩,李兆敏,李賓飛,等. 泡沫酸緩蝕性能實驗研究. 鑽井液與完井液,2010,27(4): 81-83
[65] Songyan Li, Zhaomin Li, Riyi Lin, et al. Research and Application of Mathematical Model for Foam Diversion Acidizing. Presented at the 2008 SPE Western Regional and Pacific Section AAPG Joint Meeting held in Bakersfield, California, U.S.A., 31 March–2 April, SPE 114003.
[66] 李鬆岩,李兆敏,尚朝輝,等. 熱可壓縮泡沫流體的管流熱阻力研究.第二十屆全國水動力學研討會,2007:128-135
[67] Li Zhao-min, Li Song-yan. Numerical Simulation for Laminar Jet of Foam Fluid. The 8th Pacific Rim International Conference on Water Jet Technology. 2006.10
[68] 李兆敏,李鬆岩,尚朝輝,等. 流速和環空偏心對泡沫攜砂能力影響的數值模擬. 石油鑽采工藝,2007,29(3):97-100
[69] 李兆敏,李鬆岩,尚朝輝,等. 泡沫流體層流射流的數值模擬.鑽井液與完井液,2007,24(1):58-60
[70] 李兆敏,李鬆岩. 氮氣泡沫酸化技術在華港104-P2井的應用,鑽井液與完井液,2009,26(4):46-48
[71] 李賓飛,李鬆岩,李兆敏,李良川. 水平井泡沫流體衝砂技術研究及應用,石油鑽采工藝,2010,32(3):99-102
[72] 冀國偉,李鬆岩,張超,喬辰宇. 固相顆粒複合泡沫體係封堵性能實驗研究,中國化學會第十六屆膠體與界麵化學會議論文集,604-611.
軟件著作權
[1] 泡沫管流參數計算軟件,2014SR042952;
[2] 水平井泡沫衝砂參數設計軟件,2009SR060593;
[3] 泡沫分流酸化參數設計軟件,2009SR060574;
[4] 砂岩基質酸化酸岩反應過程模擬軟件,2010SR073330;
[5] 泡沫流體衝砂洗井參數優化設計軟件,2012SR027978;
[6] 泡沫舉升排液參數設計軟件,2010SR073331;
[7] 泡沫發生係統數據采集和自動控製軟件,2014SR117568;
[8] 油藏條件下CO2擴散係數計算及擴散過程模擬軟件,2018SR541814;
[9] 基於LBM的油藏孔隙CO2擴散模擬軟件,2018SR814788。
行業標準
[1] 李兆敏,王登慶,陳剛,李鬆岩,等. 油氣水井作業用螺旋式泡沫發生器,SY/T 6085-2012;
[2] 李兆敏,李鬆岩,李賓飛,等. 泡沫分流酸化設計與施工規範,SY/T 6887-2012;
[3] 李兆敏,李鬆岩,李賓飛,等. 蒸汽吞吐井氮氣泡沫調剖方法,SY/T 6988-2014。