论文著作:
·Li Y B,Chen Y F,Pu W F,et al. Low temperature oxidation characteristics analysis of ultra-heavy oil by thermal methods[J]. Journal of industrial and engineering chemistry,2017,48:249-258.
·Li Y B,Zhao J Z,Pu W F,et al. Catalytic effect analysis of metallic additives on light crude oil by TG and DSC tests[J]. Journal of thermal analysis and calorimetry,2013,113(2):579-587.
·Li Y B,Chen Y F,Pu W F,et al. The kinetic analysis of oxidized oil during the high pressure air injection by thermal kinetic analysis[J]. Petroleum Science and Technology,2015,33(3):319-326.
·Li Y B,Chen Y,Pu W F,et al. Experimental investigation into the oxidative characteristics of Tahe heavy crude oil[J]. Fuel,2017,209:194-202.
·Li Y,Gao H,Pu W,et al. Viscosity profile prediction of a heavy crude oil during lifting in two deep artesian wells[J]. Chinese journal of chemical engineering,2017,25(7):976-982.
·Li Y B,Gao H,Pu W F,et al. Study of the catalytic effect of copper oxide on the low-temperature oxidation of Tahe ultra-heavy oil[J]. Journal of Thermal Analysis and Calorimetry,2019,135(6):3353-3362.
·Li Y B,Zhang Y Q,Luo C,et al. The experimental and numerical investigation of in situ re-energization mechanism of urea-assisted steam drive in superficial heavy oil reservoir[J]. Fuel,2019,249:188-197.
·Li Y B,Chen Y F,Pu W F. The properties and kinetics characteristics of oxidised ultra-heavy oil in the coke deposition process[J]. International Journal of Oil,Gas and Coal Technology,2018,17(1):60-75.
·Li Y B,Zhao J Z,Pu W F,et al. A method based on the Harcourt and Esson equation to estimate the catalytic effect of metallic additives on light crude oil[J]. Journal of alloys and compounds,2014,585:7-13.
·Li Y B,Pu W F,Zhao J Y,et al. Variation of reservoir fluid property during the high pressure air injection process[J]. International Journal of Green Energy,2016,13(2):173-180.
·Li Y B,Pu W F,Sun L,et al. Effect of formation factors on light crude oil oxidation via TG-FTIR[J]. Journal of Thermal Analysis and Calorimetry,2014,118(3):1685-1695.
·Li Y B,Luo C,Lin X,et al. Characteristics and properties of coke formed by low-temperature oxidation and thermal pyrolysis during in situ combustion[J]. Industrial & Engineering Chemistry Research,2020,59(5):2171-2180.
·Li Y B,Pu W F,Wei B,et al. The feasibility of CO2 and N2 injection for the Tahe fracture-cavity carbonate extra-heavy oil reservoir:An experimental study[J]. Fuel,2018,226:598-606.
·Li Y B,Lin X,Luo C,et al. A comprehensive investigation of the influence of clay minerals on oxidized and pyrolyzed cokes in in situ combustion for heavy oil reservoirs[J]. Fuel,2021,302:121168.
·Li Y B,He T S,Hu Z M,et al. Study on the mathematical model for predicting settling of water-in-oil emulsion[J]. Journal of Petroleum Science and Engineering,2021,206:109070.
·Li Y B,Deng Q H,Huang T,et al. A numerical and experimental investigation into the influence of CO2 on the stability of W/O emulsion[J]. Journal of Petroleum Science and Engineering,2022,210:110087.
·Li Y B,Zhang S X,Luo C,et al. An experimental investigation in the formation damage mechanism of deposited coke in in-situ combustion process using nuclear magnetic resonance[J]. Fuel,2022,313:122703.
·李一波,何天双,胡志明,等.页岩油藏提高采收率技术及展望[J].西南石油大学学报(自然科学版),2021,43(3):101-110.
·李一波,蒲万芬,王爱香,等.轻质油藏注空气低温高压氧化实验研究[J].石油钻采工艺,2012,34(6):90-92.
·Chen Y,Pu W,Liu X,Li Y,et al. A preliminary feasibility analysis of in situ combustion in a deep fractured-cave carbonate heavy oil reservoir[J]. Journal of Petroleum Science and Engineering,2019,174:446-455.
·Li Y B,Cheng Y D,Pu W F,et al. The influence of pressure on the low temperature oxidation (LTO) of heavy oil during the high pressure air injection (HPAI) process in Tahe Oilfield[C]//SPE Middle East Oil & Gas Show and Conference,OnePetro,2015.
·Li Y B,Gao H,Pu W F,et al. A novel displacement mechanism of CO2-assisted steam flooding for highly acidic heavy oil reservoir:an experimental study[C]//Abu Dhabi International Petroleum Exhibition & Conference,OnePetro,2017.
发明专利:
·李一波,蔺祥,刘寅飞,等.一种用于油包水型乳液破乳的装置及方法:201910346801.6[P]. 2021-05-28.
·李一波,骆晨,蒲万芬,等.一种通过黏土矿物催化稠油裂解成焦装置及方法:202010707814.4[P]. 2022-03-18.
·李一波,陈菊涛,黄弋炯,等.一种预测乳液破乳沉降析液的方法:202110718131.3[P]. 2022-02-18.
·李一波,贾鹤飞,骆晨,等.研究焦炭沉积对储层物性影响的装置及方法:202110366693.6[P]. 2021-07-09.
科研项目:
·国家自然科学基金面上科学基金项目,52174034,基于焦炭沉积机制的燃烧前缘扩展行为研究,2022/01-2025/12,主持
·四川省国际合作创新交流项目,2021YFH0081,绿色高效页岩油藏注空气提高采收率关键技术,2021/01-2023/03,主持
·中国石油创新基金项目,2019D-5007-0212,考虑裂缝扩展行为的页岩油藏注空气提高采收率机理研究,2019/01-2021/12,主持
·国家自然科学基金青年科学基金项目,51704145,稠油油藏火烧油层过程中焦炭沉积机理及燃烧特征研究,2018/01-2020/12,主持
·国家重点实验室开放课题,PLN201720,纳米碱金属硅化物稠油/超稠油就地改质机理研究,2018/01-2020/12,主持
·国家重大基础研究973专题,2015CB250904-01,致密油高效排驱机理与方法,2015/01-2019/12,参与
·国家科技重大专项,2016ZX05053-09,塔里木盆地碳酸盐岩油气田提高采收率关键技术示范工程,2016/10-2021/10,参与