职 称:副教授
导师 资格:硕导
所属 部门:油气田开发工程研究所
学科 专业:油气田开发工程
研究 方向:非常规能源开发、稠油热采
联系 方式:huangsiy2013@163.com
联系 地址:610500 成都市新都区新都大道85号西南石油大学科技园大厦1401A
黄思源,博士,副教授,硕士生导师,现任西南石油大学石油与天然气工程学院教师,皇家永利高层次人才特聘专家,成都市“高层次人才创新团队”与皇家永利“高层次人才创新团队”主要成员。分别于2010年、2018年获西南石油大学和美国德州理工大学学士、博士学位。
长期从事非常规与稠油油藏提高采收率技术(EOR)研究,重点聚焦于热-电-剂协同稠油开采、注空气低温氧化调控边水入侵及原位制氢(In-situ Hydrogen Production)等前沿方向。主持或骨干参与科研项目8项,其中包括国家自然科学基金重点项目、国家油气重大专项专题、国家外国专家局项目及多项省部级课题。
此外,还与中石油勘探开发研究院、辽河油田、新疆油田、胜利油田、克拉玛依油公司等多家企业合作,承担近15项油田横向科研项目,内容涵盖深层稠油SAGD开发、非凝结气辅助SAGD高温蒸汽腔调控、边水入侵防控及电加热驱油机理研究等,形成了系统的稠油热采理论与工程技术体系。
科研成果方面,以第一或通讯作者在《Energy》《Fuel》《Geoenergy Science and Engineering》等国际期刊发表SCI论文30余篇,其中TOP期刊论文17篇;授权中美发明专利共计17项。主持与参与成果获中国石油和化学工业联合会、中国石化联合会及中关村绿色矿山产业联盟奖多项。
在研究生培养方面,指导的学生多次获得国家奖学金和优秀硕士论文称号,部分毕业生进入中石油、中石化及国内外知名高校就业与深造。主持与讲授《现代稠油热采技术及应用》《稠油采收率技术与实践》《采油工程(英文)》等课程,注重以科研反哺教学、以项目带动培养的创新型人才培养模式,形成了具有国际视野的稠油热采科研与教学团队。
●2010.09-2014.06 西南石油大学,石油工程,学士
●2014.09-2015.12 美国德州理工大学Texas Tech University,石油工程,硕士
●2016.01-2018.08 美国德州理工大学Texas Tech University,石油工程,博士
●2015.09-2018.08 美国德州理工大学石油工程系,助教
●2018.09-至今 西南石油大学石油与天然气工程学院,副教授
(1)主持或骨干参与科研项目8项
●国家外国专家个人类项目(H类),H20250339,原位催化自生溶剂协同SAGD提高稠油采收率关键技术研究,2025/12-2027/12,负责
●皇家永利科技计划高端人才引进项目,2025HJRC0013,低品位原油原位气化制氢智能监测技术及控制设备研究高端人才引进项目,2025/01-2025/12,负责
●国家油气科技重大专项项目,2025ZD1407602,中深层稠油原位改质与绿色开发关键技术与集成示范,2025/05-2030/12,负责
●国家自然科学基金联合基金重点支持项目,U22B20145,多元供氢体系协同纳米催化剂原位定向裂解重油强化开采机理与方法研究,2023/01-2026/12,主研
●皇家永利科技计划引智成果示范推广项目,2022ZHYZ0007,油气藏地下原位制氢和温室气体封存利用技术,2022/01-2023/12,主研
●皇家永利科技计划重点研发项目,2018FZ0070,溶剂辅助SAGD改善稠油开采效率技术研究(援疆),2018/07-2020/06,主研
●克拉玛依市科技计划重大科技专项,2024ZDZX0004,风城B区油砂矿勘探评价及开发试验研究,2024/02-2026/12,主研
●中国博士后科学基金面上资助项目,2019M663562,稠油油藏注空气就地气化改质机理与实验研究,2019/11-2020/12,负责
(2)承担15项油田横向科研项目
●中国石油天然气股份有限公司辽河油田分公司,SAGD伴生气生成条件与分布运移规律,2024/12-2025/12,负责
●中国石油天然气股份有限公司辽河油田分公司,国内外稠油资源状况与开发技术调研,2024/12-2025/06,负责
●中国石油天然气股份有限公司辽河油田分公司,防控SAGD边水侵入技术研究(揭榜挂帅项目),2024/05-2025/06,负责
●中国石油天然气股份有限公司辽河油田分公司,深层SAGD效率主控因素和开采关键技术界限研究,2024/05-2025/06,负责
●克拉玛依市城投油砂矿勘探有限责任公司,2023油砂矿SAGD井组动态跟踪技术研究,2023/10-2024/12,负责
●克拉玛依市富城油气研究院有限公司,白垩系清水河盖层不发育油砂矿开采技术研究与应用研究,2023/10-2024/12,负责
●中国石油天然气股份有限公司新疆油田分公司,浅层超稠油SAGD伴生气生成机理及利用研究,2023/11-2024/04,负责
●克拉玛依市城投油砂矿勘探有限责任公司,2021年风城油砂矿1号矿风砂73断块齐古组油藏开发工程SAGD井动态跟踪技术研究,2021/10-2022/12,负责
●中国石油天然气股份有限公司辽河油田分公司,地层原位产生溶剂辅助SAGD开采稠油作用机理研究,2021/09-2022/10,负责
●中石油煤层气有限责任公司,煤气化产物组分与反应规律数值模拟及资料解释研究,2020/06-2021/08,负责
●中国石油天然气股份有限公司新疆油田分公司,九8区驱泄复合生产特征分析及影响因素评价研究,2020/08-2021/10,负责
●中国石油集团科学技术研究院有限公司,油砂沥青组分及高温物理性质测试,2019/08-2020/10,负责
●中国石油集团科学技术研究院有限公司,油砂开发技术适应性测试,2019/08-2020/10,负责
●中国石油集团科学技术研究院有限公司,油砂高温相对渗透率曲线测试,2019/08-2020/10,负责
●中国石油天然气股份有限公司辽河油田分公司,提高杜84块兴VI组SAGD动用程度关键技术研究与试验设计,2018/01-2018/12,负责
(1)获奖
●皇家永利委组织部“天府EM创新团队”,非常规能源开采与研发团队,2024
●成都市委组织部“高层次人才创新团队”,非常规能源开采与研发团队,2023
●中国石油和化学工业联合会,巨厚超稠油油藏直-平组合SAGD高效开发基础研究,二等奖,2022
●中关村绿色矿山产业联盟,稠油增效减排和开采接替关键技术及应用,二等奖,2021
●皇家永利委组织部,引进海内外高层次人才计划,皇家永利特聘专家,2019
(2)论文
●Chen Y,Fan D,Yuan B,Hou H,Zhou L,Huang S Y. Transport and retention of non-spherical suspended colloidal particles in randomly packed beads[J]. Powder Technology,2025,121378.
●Zhou Y,Huang S Y,Yang S,et al. Optimizing Solvent-Assisted SAGD in Deep Extra-Heavy Oil Reservoirs:Mechanistic Insights and a Case Study in Liaohe[J]. Energies,2025,18(14):3599.
●Zhang M,Huang S Y,Wang Z,et al. Experimental investigation of in-situ solvent generation for SAGD and Its effectiveness in heavy oil recovery[J]. Journal of Analytical and Applied Pyrolysis,2025,186:106939.
●Huang K,Huang S Y,Wang Z,et al. Mechanism evaluation of edge-water invasion mitigation by low temperature oxidation (LTO) coking in VHSD heavy oil reservoirs:A comparative study with traditional plugging techniques[J]. Fuel,2025,382:133801.
●Sheng J,Yang E,Huang S Y,et al. Discussion of the feasibility of spontaneous ignition,oil requirement,and air requirement for air injection in shale and tight reservoirs[J]. Petroleum,2025,11(1):94-101.
●Huang K,Huang S Y,Jiang Q,et al. Analytical prediction model for edge water invasion flow rate in SAGD heavy oil reservoirs[J]. Geoenergy Science and Engineering,2025,244:213404.
●Huang K,Huang S Y,Zhou Y,et al. Mitigating water invasion in heavy oil reservoirs:A review of techniques and the potential of low-temperature oxidation for plugging via air injection as a low-carbon strategy[J]. Geoenergy Science and Engineering,2024,243:213401.
●Huang K,Huang S Y,Jiang Q,et al. Simulation of edge water invasion mitigation of the SAGD chamber by low temperature oxidation (LTO) coking air injection and optimization of operating parameters[J]. Geoenergy Science and Engineering,2024,243:213351.
●You A,Huang S Y,Gong R,et al. Experimental study on the mechanism of associated gas generation by heavy oil aquathermolysis and thermal cracking during steam injection[J]. Journal of Analytical and Applied Pyrolysis,2024,182:106722.
●Fan D,Hou H,Zeng J,Yuan B,Lv Z,Chen Y,Huang S Y. Lattice Boltzmann method/computational fluid dynamics-discrete element method applications for transport and packing of non-spherical particles during geo-energy explorations:A review[J]. Physics of Fluids,2024,36(8).
●Jiang Q,Liu Y,Zhou Y,Wang Z,Gong Y,Jiang G,Huang S Y. Improving thermal efficiency and reducing emissions with CO2 injection during late stage SAGD development[J]. Processes,2024,12(6):1166.
●Yang S,Huang S Y,Jiang Q,et al. An innovative in situ solvent generation enhanced SAGD technique:Mechanism analysis based on numerical simulation[J]. Fuel,2024,364:131020.
●Yu C,Deng H,Jiang Q,Fan Z,Zhou X,Huang S Y,et al. Mechanism of pore expansion and fracturing effect of high-temperature ScCO2 on shale[J]. Fuel,2024,363:130950.
●Yang S,Huang S Y,Jiang Q,et al. In-situ solvents generation enhanced steam assisted gravity drainage (ISSG-SAGD):A low carbon and high-efficiency approach for heavy oil recovery[J]. Energy,2024,291:130370.
●Wu F,Huang S Y,Jiang Q,et al. Effects of pressure and heating rate on coal pyrolysis:A study in simulated underground coal gasification[J]. Journal of Analytical and Applied Pyrolysis,2023,175:106179.
●Yang S,Huang S Y,Jiang Q,et al. Experimental study of hydrogen generation from in-situ heavy oil gasification[J]. Fuel,2022,313:122640.
●Huang K,Huang S Y,Jiang Q,et al. Experimental and mechanism study of superheated SAGD vs. conventional SAGD technique:A cost-effective scheme for superheated SAGD[J]. Geofluids,2022,2022(1):1966959.
●Jiang Q,Liu J,Wang Z,Jiang G,Huang S Y,et al. Prediction of top water flow rate to SAGD steam chamber and its impact on thermal efficiency[J]. Journal of Petroleum Science and Engineering,2021,205:108976.
●Yue P,Huang S Y,Zeng F,et al. Experimental and mechanism study on crude oil spontaneous ignition during the air injection process[J]. Energy & Fuels,2020,34(6):7076-7084.
●Zhang Y,Huang S Y,Sheng J J. et al. Experimental and analytical study of oxygen consumption during air injection in shale oil reservoirs[J]. Fuel,2020,262:116462.
●Huang S Y,Sheng J J,Jiang Q,et al. Screening of spontaneous ignition feasibility during air injection EOR process based on thermal experiments[J]. Energies,2019,12(19):3687.
●Ou C H,Li C,Huang S Y,et al. Remigration and leakage from continuous shale reservoirs:Insights from the Sichuan Basin and its periphery,China[J]. AAPG Bulletin,2019,103(8):2009-2030.
●Yue P,Xie Z,Huang S Y,et al. The application of N2 huff and puff for IOR in fracture-vuggy carbonate reservoir[J]. Fuel,2018,234:1507-1517.
●Huang S Y,Sheng J J. Feasibility of spontaneous ignition during air injection in light oil reservoirs[J]. Fuel,2018,226:698-708.
●Huang S Y,ShengJ J. Effect of nanopore confinement on crude oil thermal-oxidative behavior[J]. Energy & Fuels,2018,32(9):9322-9329.
●Huang S Y,Zhang Y,Sheng J J. Experimental investigation of enhanced oil recovery mechanisms of air injection under a low-temperature oxidation process:thermal effect and residual oil recovery efficiency[J]. Energy & Fuels,2018,32(6):6774-6781.
●Ou C H,Li C,Huang S Y,et al. Three-dimensional discrete network modeling of structural fractures based on the geometric restoration of structure surface:Methodology and its application[J]. Journal of Petroleum Science and Engineering,2018,161:417-426.
●Huang S Y,Sheng J J. An innovative method to build a comprehensive kinetic model for air injection using TGA/DSC experiments[J]. Fuel,2017,210:98-106.
●Ou C H,L C C,Huang S Y,et al. Fine reservoir structure modeling based upon 3D visualized stratigraphic correlation between horizontal wells:methodology and its application[J]. Journal of Geophysics and Engineering,2017,14(6):1557-1571.
●Huang S Y,Sheng J J. A practical method to obtain kinetic data from TGA (thermogravimetric analysis) experiments to build an air injection model for enhanced oil recovery[J]. Fuel,2017,206:199-209.
●Huang S Y,Sheng J J. Discussion of thermal experiments’ capability to screen the feasibility of air injection[J]. Fuel,2017,195:151-164.
●Huang S Y,Jia H,Sheng J J. Exothermicity and oxidation behavior of tight oil with cuttings from the Wolfcamp shale reservoir[J]. Petroleum Science and Technology,2016,34(21):1735-1741.
●Huang S Y,Jia H,Sheng J J. Effect of shale core on combustion reactions of tight oil from Wolfcamp reservoir. Petroleum Science and Technology,2016,34(13):1172-1179.
●Huang S Y,Jia H,Sheng J J. Research on oxidation kinetics of tight oil from Wolfcamp field[J]. Petroleum Science and Technology,2016,34(10):903-910.
(3)专利
●黄思源,蒋琪,于春生,等.一种基于能源效率模型的SAGD开发效率评价方法:202111475816.6[P]. 2022-08-23.
●黄思源,蒋琪,于春生,等.一种岩心渗透率调试样品用的洗油装置:202123030026.5[P]. 2022-05-13.
●黄思源,蒋琪,何杰,等.一种以热效率率确定过热蒸汽(SAGD)后期转驱时机的方法:202111264276.7[P]. 2024-04-30.
●黄思源,杨嗣民,蒋琪,等.一种催化加热辅助稠油原位改质开采深层稠油的方法:202210232284.1[P]. 2023-04-25.
●黄思源,黄岢,蒋琪,等.一种通过注空气低温氧化结焦抑制水侵的方法:202211124562.8[P]. 2023-06-13.
●黄思源,黄岢,蒋琪,等.一种基于四组分模型的稠油裂解转化生焦预测方法:202310496751.6[P]. 2025-05-27.
●蒋琪,黄思源,吴芳杰,等.利用井下原油裂解改质提高深层稠油开采效率的方法:202210146699.7[P]. 2023-04-25.
●蒋琪,户昶昊,王中元,黄思源,等.注非凝结气和就地燃烧开采底水稠油油藏中剩余油的方法:201910205839.1[P]. 2021-04-13.
●于春生,蒋琪,周翔,黄思源,等.一种中高渗油藏特高含水开发期弱分布特征描述的方法:202010287118.2[P]. 2022-05-03.
●于春生,蒋琪,周翔,黄思源,等.一种富气驱过程中富气回采率的计算方法:202010288273.6[P]. 2022-04-29.
●周翔,黄思源,黄兴昊,等.一种油藏流动过程中轻烃组分的确定方法:202010530885.7[P]. 2022-09-26.
●周翔,曾凡华,蒋琪,于春生,黄思源,等.一种可循环利用的、在井下对注入溶剂实施加热的开采调油方法和系统:202010539577.5[P]. 2022-09-13.
●许赛鹏,黄思源. 一种可拆卸式微波加热输油管:202222405802.3[P]. 2022-11-22.
●蒋琪,刘佳丽,吴芳杰,黄思源,等.一种在油层中原位产生溶剂开采稠油的方法:202011618975.2[P]. 2021-07-06.
●蒋琪,张健鹏,刘佳丽,黄思源,等.一种电加热增强水驱效率的稠油开采方法:20191151496.1[P]. 2021-09-07.
●Jiang Q,Hu C H,Wang Z Y,Huang S Y,et al. Method for injecting non-condensable gas or in-situ combustion to recover remaining oil in a heavy oil reservoir with bottom water:US11306571B2[P]. 2022-04-19.
●Zhou X,Qi Jiang Q,Wang Y C,He H,Yu C S,Huang S Y,et al. Integrated method for nitrogen-assisted carbon dioxide fracturing and development of shale oil reservoirs:US11371328B1[P]. 2022-06-28.
稠油热采提高采收率技术
●热-电-剂协同稠油开采技术
●化学反应与渗流过程的跨尺度实验模拟与耦合机理研究
●稠油原位改质与制氢技术
西南石油大学稠(重)油开采与技术研发团队依托“油气藏地质及开发工程全国重点实验室”和“国家能源稠(重)油开采研发中心”,是学校石油与天然气工程国家“双一流”建设学科的重要科研力量。团队聚焦非常规稠油与超稠油资源高效、低碳开发的重大科技问题,形成了以多场耦合机理、跨尺度实验模拟与智能化开发优化为核心的研究体系。
团队由蒋琪教授领衔,成员包括国家“千人计划”专家和皇家永利“千人计划”专家多名,具有石油工程、化学工程及材料科学等多学科背景,形成了结构合理、创新活跃的科研梯队。团队注重国际学术交流与合作,与加拿大卡尔加里大学、德州理工大学、阿尔伯塔大学等国际科研机构保持长期合作关系,持续推动稠油开发领域的国际化研究与技术创新。
团队的主要研究方向包括:溶剂与非凝结气体辅助稠油热采技术、电加热原位产生溶剂协同提采技术、稠油降黏复合与冷采提效技术、注空气防边水侵及结焦封堵技术,以及地下原油气化与原位制氢技术。近年在稠油热采反应—渗流双向耦合机理、多尺度热传质模型构建、稠油热裂解与溶剂协同蒸汽驱理论等方面取得了系统性创新成果。建立了以热-电-剂多元协同驱动为核心的深层稠油开发新技术;发明了低温氧化调控边水侵入与焦炭封堵的防水侵方法;构建了基于原位反应的油藏制氢与能量转化理论框架,为绿色高效开发稠油油藏提供了技术支撑。