职 称:副研究员
导师资格:硕导
所属部门:采油气工艺研究所
学科专业:油气田开发工程
研究方向:提高采收率理论与技术
联系方式:zs77816@163.com
联系地址:610500四川省成都市新都区新都大道8号西南石油大学全国重点实验室B407

博士(后)、副研究员、硕士生导师,俄罗斯喀山联邦大学客座研究员、联培博士,天府永兴实验室特聘专家,油气藏地质及开发工程全国重点实验室固定研究人员。主要从事注空气和化学驱提高采收率方向的教学和科研工作,主持国家自然科学基金面上项目1项和青年项目1项、四川省自然科学基金项目1项、中国博士后科学基金面上资助项目1项、国家重点实验室开放基金项目1项、中石油、中石化企业合作项目2项,主研国家重点研发计划“政府间国际科技创新合作”重点专项、国家科技重大专项、中央引导地方科技发展专项、俄罗斯青年科学家基金、天府永兴实验室科技攻关重大项目、油田协作项目等12项,获省部级科技进步奖一等奖1项。第一作者/通讯作者发表学术论文72篇,其中SCI论文52篇(ESI高被引论文3篇、中科院大类一区13篇),出版专著2部,授权国际国内专利14件,登记软件著作权4项,国际国内学术报告16次,担任《Frontiers in Energy Research》客座副主编,《Petroleum Science》《Petroleum》《油气地质与采收率》《特种油气藏》《西南石油大学学报(自然科学版)》《油气藏评价与开发》青年编委,《ACS Nano》《Chemical Engineering Journal》《Energy》《Renewable Energy》《Journal of Cleaner Production》《石油探勘与开发》等学术期刊审稿专家。
●2010.09-2014.06 西南石油大学,自动化,学士
●2014.09-2017.06 西南石油大学,油气田开发工程,硕士
●2017.09-2020.12 西南石油大学,油气田开发工程,博士
●2019.10-2020.10 俄罗斯喀山联邦大学石油工程系,联培博士
●2021.01-2023.12 西南石油大学石油与天然气工程学院,讲师、师资博士后
●2024.01-至今 西南石油大学石油与天然气工程学院,副研究员
●国家自然科学基金面上基金项目,52574049,页岩油藏注空气干酪根氧化放热动力学、热前缘扩展机理及孔缝结构演变规律,2026-2029,主持
●国家自然科学基金青年基金项目,52204049,页岩油氧化机理、反应动力学及氧化增能改善储层结构研究,2023-2025,主持
●四川省自然科学基金项目,2024NSFSC0960,页岩油藏注空气过程中的干酪根氧化机理与燃烧带传播特性研究,2024-2025,主持
●中国博士后科学基金面上资助项目,2021M692696,页岩油藏注空气燃烧前缘稳定性及燃烧动力学研究,2021-2022,主持
●国家重点实验室开放基金,PLN2022-33,页岩油注空气氧化放热特性及扩孔增渗机理研究,2022-2024,主持
●天府永兴实验室科技攻关任务重大项目,2023KJGG17,油气藏注空气原位制氢协同提高采收率可行性研究,2023.11-2028.11,任务1负责人
●中石油油田协作项目,JDYT-2024-JS-2045,南堡403X1断块空气热混相驱低温氧化与耗氧启动配伍性实验研究,2024-2025,主持
●中石油油田协作项目,671025011018,氧气在油气藏条件下的氧化机理及浓度变化规律研究,2025-2026,第二负责人
●中央引导地方科技发展专项,2021ZYD0056,油气原位制氢及关键影响因素,2021-2022,第二负责人
●国家重点研发计划“政府间国际科技创新合作”重点专项,2023YFE0120700,页岩油藏CO2驱油协同碳封存关键理论与方法研究,2023.12-2025.11,第三负责人
●国家重大科技专项,2016ZX05053-09,缝洞型油藏注气方式和技术政策研究,2016-2021,主研
●俄罗斯青年科学家基金,19-73-10189,Investigation on the catalytic oxidation of aliphatic and aromatic hydrocarbons using oil-soluble catalyst and its catalytic mechanism to determine effective catalytic methods for crude oil oxidation in in-situ combustion enhanced oil recovery technologies for hard-to-recover hydrocarbon reserves,2019-2021,第三负责人
●中石油重大开发实验项目,XJYT-gcjsyjy-2017-JS-581,原油氧化行为表征研究,2017-2019,第二负责人
●中石油新疆油田项目,2017-C4058,稠油注空气低温氧化放热规律实验研究,2017-2018,第二负责人
●中石油新疆油田项目,XJYT-2020-FW-51857,页岩油注空气氧化热力驱油实验技术服务,2020-2021,第二负责人
●中石油辽河油田项目,LHYT-KTKFYJY-2020-JS-435,低渗油藏火驱技术界限与驱替特征研究,2020-2021,第二负责人
●中石油新疆油田项目,2021-C4024,吉木萨尔页岩油注空气热效应实验研究,2021-2022,第二负责人
(1)学术论文
●ZHAO S,PU W,Chen Q,et al. Propagation of combustion front within fractured shale and its influence on shale structure and crude oil properties:An experimental study[J]. SPE Journal,2024,29:2389-2398.
●ZHAO S,PU W,JIANG Q,et al. Investigation into the key factors influencing the establishment and propagation of combustion front in ultra-deep high-temperature heavy oil reservoirs[J]. Energy,2023,283:129017.
●ZHAO S,PU W,PENG X,et al. Low-temperature oxidation of heavy crude oil characterized by TG,DSC,GC-MS,and negative ion ESI FT-ICR MS[J]. Energy,2021,214:119004.
●ZHAO S,PU W,SU L,et al. Properties,combustion behavior,and kinetic triplets of coke produced by low-temperature oxidation and pyrolysis:Implications for heavy oil in-situ combustion[J]. Petroleum Science,2021,18:1483-1491.
●ZHAO S,PU W,LI Y,et al. Low-temperature oxidation characteristics and reaction pathways of crude oil within tight shale during air injection[J]. Petroleum,2025,11:84-93.
●ZHAO S,PU W,LI Y,et al. Oxidation behavior and kinetics of shale oil under different oxygen concentrations[J]. Fuel,2024,361:130677.
●ZHAO S,PU W,GAO H,et al. Isothermal low-temperature oxidation kinetics of heavy crude oil and its oxidized oils[J]. Fuel,2023,344:128146.
●ZHAO S,PU W,MIKHAIL A,et al. Influence of water on thermo-oxidative behavior and kinetic triplets of shale oil during combustion[J]. Fuel,2022,318:123690.
●ZHAO S,PU W,PAN J,et al. Thermo-oxidative characteristics and kinetics of light,heavy,and extra-heavy crude oils using accelerating rate calorimetry[J]. Fuel,2022,312:123001.
●ZHAO S,GAO H,PU W,et al. Isothermal oxidation behavior of heavy crude oil and its low-temperature oxidized oils:implications for in-situ upgrading of heavy oil[J]. Fuel,2022,313:122704.
●ZHAO S,PU W,SUN B,et al. Comparative evaluation on the thermal behaviors and kinetics of combustion of heavy crude oil and its SARA fractions[J]. Fuel,2019,239:117-125.
●ZHAO S,PU W,WEI B,et al. A comprehensive investigation of polymer microspheres (PMs) migration in porous media:EOR implication[J]. Fuel,2019,235:249-258.
● ZHAO S,XU C,PU W,et al. In-situ combustion within steam-injected heavy oil reservoirs:Combustion characteristics and produced oil properties[J]. Thermochimica Acta,2025,753:180111.
●ZHAO S,XU C,PU W,et al. Alterations in shale internal structures caused by crude oil oxidation during air injection process[J]. Powder Technology,2025,453:120656.
●ZHAO S,ZHAO X,YUAN C,et al. Non-isothermal and isothermal oxidation behavior and kinetics of shale oil during air injection[J]. Journal of Thermal Analysis and Calorimetry,2024,149:9367-9375.
●ZHAO S,TANG X,PU W,et al. Kinetic modeling for upgrading of heavy crude oil via thermal cracking in porous media:SARA fractions and gas compositions[J]. Fuel,2024,371:132087.
●ZHAO S,XU C,PU W,et al. Heat front propagation in shale oil reservoirs during air injection:Experimental and numerical studies[J]. Petroleum Science,2024,21:3379-3389.
●ZHAO S,ZHAO X,JIANG Q,et al. Thermo-oxidative characteristics,kinetic triplets,and auto-ignition potential of shale oil during air injection[J]. Geoenergy Science and Engineering,2024,239:212984.
●ZHAO S,XU C,PU W,et al. Feasibility of spontaneous combustion in ultra-deep high-pressure shale oil reservoirs during air injection[J]. Thermochimica Acta,2024,738:179783.
●ZHAO S,PU W,MIKHAIL A,et al. Comprehensive investigations into low temperature oxidation of heavy crude oil[J]. Journal of Petroleum Science and Engineering,2018,171:835-842.
●ZHAO S,PU W,MIKHAIL A,et al. Thermal behavior and kinetics of heavy crude oil during combustion by high pressure differential scanning calorimetry and accelerating rate calorimetry[J]. Journal of Petroleum Science and Engineering,2019,181:106225.
●ZHAO S,PU W,MIKHAIL A,et al. Oxidation characteristics of heavy oil and its SARA fractions during combustion using TG-FTIR[J]. Journal of Petroleum Science and Engineering,2020,192:107331.
●ZHAO S,PU W,MIKHAIL A,et al. Low-temperature combustion characteristics of heavy oils by a self-designed porous medium thermo-effect cell[J]. Journal of Petroleum Science and Engineering,2020,195:107863.
●ZHAO S,PU W,MIKHAIL A,et al. Low-temperature oxidation of light and heavy oils via thermal analysis:Kinetic analysis and temperature zone division[J]. Journal of Petroleum Science and Engineering,2018,168:246-255.
●ZHAO S,PU W. Migration and plugging of polymer microspheres (PMs) in porous media for enhanced oil recovery:Experimental studies and empirical correlations[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects,2020,597:124774.
●ZHAO S,PU W,MIKHAIL A,et al. Evaluation of heat release caused by low-temperature oxidation of heavy oil and its SARA fractions under isothermal conditions[J]. Thermochimica Acta,2020,690:178690.
●ZHAO S,PU W,YUAN C,et al. SARA-based kinetics model for simulating heat release during crude oil combustion[J]. Journal of Thermal Analysis and Calorimetry,2024,149:3197-3204.
●ZHAO S,PU W,MIKHAIL A,et al. Integrative investigation of low temperature oxidation characteristics and mechanisms of heavy crude oil[J]. Industrial & Engineering Chemistry Research,2019,58:14595-14602.
●ZHAO S,WANG H,ZHAO X,et al. Combined experimental and numerical investigation into combustion characteristics of crude oil under different permeability ranges:Thermal EOR implication[J]. Energy & Fuels,2023,37:1257-1265.
●ZHAO S,XU C,PU W,et al. Oxidation characteristics and kinetics of shale oil using high-pressure differential scanning calorimetry[J]. Energy & Fuels,2021,35:18726-18732.
●ZHAO S,PU W,YUAN C,et al. Thermal behavior and kinetic triplets of heavy crude oil and its SARA fractions during combustion by high-pressure differential scanning calorimetry[J]. Energy & Fuels,2019,33:3176-3186.
●ZHAO S,PU W. Investigation into the effect of polymer microspheres (PMs) on oil-water relative permeability and oil-in-water emulsion stability for enhanced oil recovery[J]. Journal of Dispersion Science and Technology,2021,42:1695-1702.
●ZHAO S,PU W,HUO J,et al. Effect of interactions between saturates-aromatics-resins-asphaltenes components on the oxidation behavior and kinetics of heavy crude oil[J]. Petroleum Chemistry,2020,60:1226-1231.
●ZHAO S,WANG R,JIANG F,et al. Preparation and structural analysis of a comb-like polymer through functional monomer design[J]. Polymer Engineering and Science,2021,61:2882-2893.
●ZHAO S,PU W,HUO J,et al. ВЗАИМНОЕ ВЛИЯНИЕ SARA-КОМПОНЕНТОВ НА ОКИСЛЕНИЕ ТЯЖЕЛОЙ НЕФТИ[J]. НЕФТЕХИМИЯ,2020,60:765-772.
●赵帅,蒲万芬,Mikhail A,等.催化剂和环境温度对稠油燃烧的影响[J].西南石油大学学报(自然科学版),2023,45(4):164-173.
●赵帅,蒲万芬,冯天,等.超稠油低温氧化和裂解成焦实验[J].特种油气藏,2022,29:69-75.
●赵帅,蒲万芬,蒋琪,等.不同储层渗透率下稠油油藏火驱开发特征[J].大庆石油地质与开发,2024,43(5):89-97.
(2)授权专利
●赵帅,蒲万芬,魏兵,等.一种页岩油藏注空气氧化反应动力学模型构建方法:202210633155.3[P]. 2025-01-28.
●赵帅,蒲万芬,魏兵,等.注空气协同微波提高页岩油藏采收率的方法及实验装置:202310050236.5[P]. 2024-06-04.
●赵帅,蒲万芬,魏兵,等.一种空气泡沫辅助空气吞吐提高页岩油藏采收率的方法:202211550981.8[P]. 2024-04-19.
●赵帅,蒲万芬.一种基于四族组分的原油氧化反应动力学模型建立方法:202110208844.5[P]. 2022-02-11.
●赵帅,蒲万芬,袁成东,等.一种催化氧化燃烧致裂储层提高页岩油藏采收率的方法:202110498984.0[P]. 2022-08-22.
(3)软件著作权
●赵帅,何浩龙,徐春云.基于遗传算法确定原油氧化动力学模型的软件V1.0:2024SR0637363[CP/CD]. 2024-05-11.
●赵帅,徐春云,何浩龙.基于机器学习优化火驱注采参数的软件V1.0:2024SR0634227[CP/CD]. 2024-05-11.
●赵帅,蒲万芬.基于燃烧管实验结果计算火驱基础参数的软件V1.0:2020SR1250174[CP/CD]. 2020-01-10.
●赵帅,蒲万芬.运用热分析实验数据获得原油氧化动力学三因子的软件V1.0:2020SR1250175[CP/CD]. 2020-06-15.
(4)专著
●The challenge and opportunity of CCUS in the development of unconventional resource[M]. Frontiers in Energy research,2023.
●Lessons Learned from Our Recent Research in Chemical Enhanced Oil Recovery (C-EOR) Methods[M]. Recent Insights in Petroleum Science and Engineering,2018.
(5)获奖成果
●中国石油和化工自动化行业科技进步一等奖,难动用油藏注空气提高采收率及调控防窜关键技术及规模化应用,2021
●中国研究生院院长联席会研究生教育“最佳实践”案例,2023
●石油与天然气工程学院教师教学竞赛“教学提升赛道”二等奖,2025
●指导学生获“建行杯”四川省国际大学生创新大赛铜奖,2024
●指导学生获第九届四川省国际“互联网+”大学生创新创业大赛银奖,2023
(6)学术会议报告
●塔里木油田断控缝洞型碳酸盐岩油气藏开发与提高采收率研讨会,大会报告,2024-04
●ThEOR International Workshop VI “Thermal Methods for Enhanced Oil Recovery:Laboratory Testing,Simulation and Oilfields Applications”,Keynote Speaker,2023-11
●ThEOR International Workshop Ⅴ “Thermal Methods for Enhanced Oil Recovery:Laboratory Testing,Simulation and Oilfields Applications”,Keynote Speaker,2022-11
●新疆稠油火驱过程中成焦物理化学机理研究研讨会,专题报告,2022-07
●提高采收率工程联合实验室2021年度学术研讨会,专题报告,2021-12
●ThEOR International Workshop Ⅳ “Thermal Methods for Enhanced Oil Recovery:Laboratory Testing,Simulation and Oilfields Applications”,Keynote Speaker,2021-12
●俄罗斯科学家论坛,大会报告,2021-11
(7)学术兼职
●俄罗斯喀山联邦大学客座研究员
●天府永兴实验室特聘专家
●油气藏地质及开发工程全国重点实验室固定研究人员
●《Frontiers in Energy Research》客座副主编
●《Petroleum Science》青年编委
●《Petroleum》青年编委
●《油气地质与采收率》首届青年编委
●《西南石油大学学报(自然科学版)》首届青年编委
●《特种油气藏》首届青年编委
●《油气藏评价与开发》首届和第二届青年编委
●《ACS Nano》《Chemical Engineering Journal》《Journal of Cleaner Production》《Energy》《Renewable Energy》《Fuel》《Petroleum Science》《石油勘探与开发》等国际国内学术期刊审稿专家
●轻质油藏高压空气驱室内研究、数值模拟、方案设计研究
●重质油藏火驱室内研究、数值模拟、方案设计研究
●页岩油藏注气提高采收率研究
●化学驱(凝胶颗粒调驱、表面活性剂驱)的油藏适应性及驱油机理
依托油气藏地质及开发工程全国重点实验室提高采收率基础理论及配套技术研究团队和国家能源局稠重油研发中心西南分中心。团队带头人国家级人才、石油与天然气工程学院副院长蒋琪教授,四川省学术和技术带头人、二级教授蒲万芬教授、博导,俄罗斯自然科学院贡献勋章获得者,喀山联邦大学领衔研究员,复杂油气藏三次采油中心主任;课题组有专职老师12人,其中教授6人,副教授3人,博士后讲师3人。目前指导在读博士研究生20余人、硕士研究生80余人。研究人员专业涵盖石油工程(采油、油藏、开发地质)、化学工程(油田化学、化工工艺)等领域。课题组主持国家自然科学基金重点、国家自然科学基金面上、青年项目,国家“973”、国家科技重大专项、企业协作等项目100余项,获省部级科技进步一等奖3项、二等奖4项,发表论文300余篇,授权发明专利100余项。