◎ 学习与工作经历
(1) 2021/01至今:成都理工大学,能源学院,研究员
(2) 2020/07-2020/12:成都理工大学,能源学院,讲师
(3) 2018/10-2019/10:美国储层工程研究院,研究助理(导师:Abbas Firoozabadi 美国工程院院士,中国工程院外籍院士)
(4) 2014/09-2020/06:中国石油大学(北京),油气田开发工程,博士(导师:宁正福 教授)
(5) 2018/10-2019/10:美国加州大学伯克利分校,化学工程,公派联合培养博士(导师: Clayton J. Radke美国工程院院士)
(6) 2011/11-2015/12:西南财经大学,金融,学士
(7) 2010/09-2014/06:西南石油大学,石油工程,学士
◎ 个人主页
(1) https://faculty.cdut.edu.cn/huangliang/zh_CN/index/261972/list/index.htm (课题组主页)
(2) https://www.researchgate.net/profile/Liang-Huang-37 (ResearchGate学术主页)
(3) https://xs.gupiaoq.com/citations?user=iS0DQzUAAAAJ&hl=zh-CN&oi=ao (Google学术主页)
◎ 研究团队与研究方向
研究团队名称:分子油气能源课题组
研究团队介绍:课题组立足石油与天然气开发领域,面向油气储层中低碳、零碳、负碳技术的科技前沿,围绕油气藏评价与开发、大规模地下储氢储氦、二氧化碳地质封存与利用等研究方向,借助分子模拟技术,结合室内实验和理论分析,深入开展油气开发地质和开发工程中微观界面科学问题的基础和应用基础研究。
研究团队特色:传统油气开发与能源绿色发展结合;油气工程与开发地质结合;基础研究和工程应用结合;理论模拟和实验研究结合;多尺度研究。
研究方向:非常规及复杂油气藏评价与开发,多孔介质多相多组分流体赋存、相态与传输机理,二氧化碳地质封存与利用,大规模地下储氢储氦,煤页岩干酪根原位改质机制,压裂液/钻井液微尺度性能评价、作用机理与分子设计等。
◎ 研究生招生
每年招收石油与天然气工程学科博士研究生1~2名,硕士研究生2~4名,欢迎咨询 huangliang@cdut.edu.cn。
◎ 主讲课程
本科生:《油层物理学》、《石油工程岩石力学》、《工程流体力学》、《石油工程认识及生产实习》、《地热地质填图实习》、《油矿生产实习》。
研究生:《高等油层物理》、《油气工程地质学课程组》。
◎ 科研课题
承担的部分科研课题如下:
(1) 国家自然科学基金面上项目, 陆相页岩凝析气藏CO2吞吐动态相平衡特征: 孔隙变形与界面效应耦合, 2026/01-2029/12, 主持
(2) 国家自然科学基金青年科学基金,川南龙马溪组页岩干酪根中气水赋存特征与孔隙变形机理,2023/01-2025/12,主持
(3) 四川省自然科学基金面上项目,川东侏罗系页岩多重变形孔隙中CO2吞吐动用凝析气微观机理,2023/01-2024/12,主持
(4) 四川省自然科学基金青年科学基金,深层页岩变形孔隙中水-CH4-CO2微观赋存及动用规律,2023/01-2024/12,主持
(5) 四川省高层次青年科技人才项目,深层页岩气高效开采与二氧化碳封存一体化基础理论,2023/01-2025/12,主持
(6) 国家重点实验室开放基金,深层页岩纳米孔隙气水分布规律及CO2吞吐提高采收率机理,2021/07-2023/06,主持
(7) 中国石化海相油气藏开发重点实验室开放基金,超深高含硫气藏硫溶解特征分子模拟研究,2020/11-2021/11,主持
(8) 中国石油西南油气田分公司科研项目,CO2及混合气体在页岩中竞争吸附分子模拟,2023/11-2024/10,主持
(9) 中国石油西南油气田分公司科研项目,深层页岩复杂纳米孔隙中气水解吸规律分子模拟,2022/10-2023/09,主持
(10) 中国石油西南油气田分公司科研项目,深层页岩气赋存及运移规律分子模拟, 2021/01-2021/12,主持
(11) 中国石油集团工程技术研究院科研项目,基于分子模拟的压裂液吸附滞留及甲烷解吸规律,2023/11-2024/06,主持
(12) 中国石油勘探开发研究院科研项目,页岩油储层纳米孔隙流体赋存和可动性分析, 2021/11-2022/01,主持
(13) 国家自然科学基金面上基金项目,页岩气多组分竞争吸附机理研究,2018/01-2021/12,主研
(14) 国家自然科学基金面上基金项目,页岩气储层吸附解吸机理研究,2013/01-2016/12,主研
(15) 国家自然科学基金面上项目, 页岩有机-无机多孔介质混合润湿性表征及其对页岩油微运移的影响, 2023/01-2026/12, 主研
(16) 中国石油西南盆地研究中心科研项目,震旦系气井产能稳产能力评价及渗流机理研究, 2020-2021,主研
(17) 美国储层工程研究院科研项目,页岩气吸附/解吸滞后机理研究,2018-2019,主研
(18) 美国储层工程研究院科研项目,页岩油藏干酪根膨胀机理研究,2018-2019,主研
(19) 中联煤层气有限责任公司科研项目,煤层气/页岩气/致密气合采耦合产气机理及方案设计,2014-2017,主研
(20) 中国石化胜利油田分公司科研项目,稠油水平井多点均衡采油工艺设计研究, 2015-2016,主研
◎ 荣誉称号与获奖情况
(1) 四川省高层次青年科技人才,2022
(2) 爱思唯尔全球前2%顶尖科学家榜单,2025
(3) 中国知网全国高被引学者TOP5%,2025
(4) 四川省海外留学人员,2020
(5) 成都市成华区“侨智菁英”,2022
(6) 成都理工大学教育工作优秀教师,2025
(7) 页岩微纳米孔隙结构特征与流体赋存传输机制,教育部自然科学奖二等奖,2020
(8) 页岩气复杂缝网监测与多尺度传输仿真理论技术研究及应用,中国石油和化学工业联合会科技进步奖一等奖,2018
(9) 第十九届“挑战杯”全国大学生课外学术科技作品竞赛2025年度中国青年科技创新“揭榜挂帅”擂台赛一等奖指导教师,2025
(10) 创青春中国青年碳中和创新创业大赛西南赛区学术组铜奖指导教师,2023
(11) 第十一届全国大学生能源经济学术创意大赛四川-云南-西藏赛区三等奖指导教师,2025
(12) 全国石油工程设计大赛国际赛道全国三等奖指导教师,2025
(13) 大学生创新创业训练计划国家级立项指导教师,2024
(14) 大学生创新创业训练计划省级立项指导教师,2025
(15) 成都理工大学优秀硕士学位论文指导教师,2025
(16) 成都理工大学优秀学士学位论文指导教师,2025
(17) 成都理工大学优秀学士学位论文指导教师,2021
(18) 中国石油大学(北京)优秀博士学位论文,2022
(19) 知行耦合、多维互动的产出式油层物理学课程教学模式,成都理工大学本科教育教学成果奖二等奖,2021
(20) 第35届全国天然气学术年会优秀论文一等奖指导教师,2025
(21) 新型战略天然气形成与富集学术研讨会优秀论文指导教师,2025
(22) 油气田勘探与开发国际会议优秀论文指导教师,2024
(23) 第35届全国天然气学术年会优秀论文一等奖,2025
(24) 第34届全国天然气学术年会优秀论文一等奖,2024
(25) 第八届全国天然气藏高效开发技术研讨会优秀论文奖,2017
(26) 油气田勘探与开发国际会议优秀论文奖,2017
◎ 学术论文
已发表学术论文100余篇,其中SCI论文55篇,JCR 1区/TOP期刊论文45篇,EI论文16篇,ESI高被引论文4篇,论文被引3300余次。(统计截止日期:2026年1月23日)
部分第一作者或通讯作者论文:
(1)Liang Huang, Wen Zhou, Hao Xu, et al. Dynamic fluid states in organic-inorganic nanocomposite: Implications for shale gas recovery and CO2 sequestration[J]. Chemical Engineering Journal. 2021, 411: 128423. (ESI高被引,被引166次)
(2)Liang Huang, Zhengfu Ning, Qing Wang, et al. Effect of organic type and moisture on CO2/CH4 competitive adsorption in kerogen with implications for CO2 sequestration and enhanced CH4 recovery[J]. Applied Energy. 2018, 210:28-43. (ESI高被引,被引381次)
(3)Liang Huang, Zhengfu Ning, Qing Wang, et al. Molecular simulation of adsorption behaviors of methane, carbon dioxide and their mixtures on kerogen: Effect of kerogen maturity and moisture content[J]. Fuel. 2018, 211: 159-172. (ESI高被引,被引302次)
(4)Liang Huang, Haiyan Zhu, Qiujei Chen, et al. Coupling of Diffusion -dissolution-deformation on the Nature of Sorption Hysteresis in Nanoporous Shale Kerogen[J]. iScience, 2025: 28(12): 113882. (Cell出版社第一本交叉学科期刊)
(5)Qiujie Chen, Liang Huang*, Xuefeng Yang, et al. Molecular Insights into Gas-Water-Shale Interactions for Flue Gas Injection Strategies to Enhance Shale Gas Recovery[J]. SPE Journal, 2025: 1-16. (石油工程领域顶刊)
(6)Liang Huang, Yang Xiao, Qin Yang, et al. Gas sorption in shale media by molecular simulation: Advances, challenges and perspectives [J]. Chemical Engineering Journal. 2024, 487: 150742. (SCI一区TOP,影响因子大于10)
(7)Liang Huang, Xinnin Feng, Qin Yang, et al. Measurement and modeling of moisture equilibrium and methane adsorption in shales from the southern Sichuan Basin [J]. Chemical Engineering Journal. 2024, 489: 151262. (SCI一区TOP,影响因子大于10)
(8)Qin Yang, Liang Huang*, Yan Qiao, et al. Retention mechanisms of water-based fracturing fluids and their effects on methane storage and desorption in deep coal-rock nanopores[J]. Rock Mechanics and Rock Engineering. 2025. (SCI一区TOP)
(9)Qin Yang, Liang Huang*, Qiujie Chen, et al. Molecular insights into CO2 sequestration and enhanced gas recovery in water-bearing shale nanocomposites[J]. Separation and Purification Technology. 2025, 355, 129618. (SCI一区TOP)
(10)Zhenyao Xu, Liang Huang*, Qin Yang, et al. Coupling effect of fluid molecular structure and nanoporous structure on the confined phase behavior of butane isomers in shale nanopores [J]. Fuel. 2025, 379, 132983. (SCI一区TOP)
(11)Qiujie Chen, Liang Huang*, Zhenyao Xu, et al. New insights into hydrogen sorption mechanism in shale nanocomposites and the role of cushion gas in geological hydrogen storage [J]. International Journal of Hydrogen Energy, 2025, 139:220-236. (SCI二区)
(12)Liang Huang, Zhengfu Ning, Qing Wang, et al. Microstructure and adsorption properties of organic matter in Chinese Cambrian gas shale: Experimental characterization, molecular modeling and molecular simulation[J]. International Journal of Coal Geology. 2018, 198: 14-28. (SCI二区)
(13)Liang Huang, Atefeh Khoshnood, Abbas Firoozabadi. Swelling of Kimmeridge kerogen by normal-alkanes, naphthenes and aromatics[J]. Fuel. 2020, 267: 117155. (SCI一区TOP)
(14)Qing Wang, Liang Huang*. Molecular insight into competitive adsorption of methane and carbon dioxide in montmorillonite: Effect of clay structure and water content[J]. Fuel. 2019, 239: 32-43. (SCI一区TOP)
(15)Liang Huang, Zhengfu Ning, Qing Wang, et al. Kerogen deformation upon CO2/CH4 competitive sorption: Implications for CO2 sequestration and enhanced CH4 recovery[J]. Journal of Petroleum Science and Engineering. 2019, 183: 106460. (SCI二区TOP)
(16)Liang Huang, Zhengfu Ning, Hao Lin, et al. High-pressure sorption of methane, ethane, and their mixtures on shales from Sichuan Basin, China[J]. Energy & Fuels. 2021, 35(5): 3989–3999.
(17)Liang Huang, Zhengfu Ning, Qing Wang, et al. Thermodynamic and structural characterization of bulk organic matter in Chinese Silurian Shale: Experimental and molecular modeling studies[J]. Energy & Fuels. 2017, 31(5): 4851-4865.
(18)Liang Huang, Zhengfu Ning, Qing Wang, et al. Molecular insights into kerogen deformation induced by CO2/CH4 sorption: Effect of maturity and moisture[J]. Energy & Fuels. 2019, 33(6): 4792-4805.
(19)Liang Huang, Zhengfu Ning, Qing Wang, et al. Enhanced gas recovery by CO2 sequestration in marine shale: A molecular view based on realistic kerogen model[J]. Arabian Journal of Geosciences. 2018, 11(15): 404.
(20)Liang Huang, Xudong Wang. Controlling factors towards co-production performance of coalbed methane and tight sandstone gas reservoirs[J]. Arabian Journal of Geosciences, 2021, 14(22): 2344.
(21)Liang Huang. CO2 Geological Storage and Utilization[J]. Atmosphere, 2023, 14(7): 1166.
(22)Liang Huang, Wentong Zhang, Hai Huang, et al. Mechanisms and applications of coupled technologies in unconventional resources for enhancing oil/gas recovery[J]. Frontiers in Energy Research, 2024, 12, 1369315.
(23)Tong Li, Yongsheng Ma, Daqian Zeng, ... Liang Huang*. Sulfur solubility in sour gas components and mixtures from a molecular perspective [J]. Fuel, 2024, 364, 131047. (SCI一区TOP)
(24)Tonglou Guo, Xianghao Meng, Wei Lei, ... Liang Huang*. Characteristics and governing factors of pore structure and methane sorption in deep-marine shales: A case study of the Wufeng-Longmaxi formations in Weirong shale gas field, Sichuan Basin[J]. Natural Resources Research, 2023, 32(4): 1733-1759. (SCI二区)
(25)Lu Wang, Yifan Zhang, Rui Zou, ... Liang Huang*. A systematic review of CO2 injection for enhanced oil recovery and carbon storage in shale reservoirs[J]. International Journal of Hydrogen Energy, 2023, 48(95): 37134-37165. (SCI二区, ESI高被引,被引120次)
(26)Jianfa Wu, Xuefeng Yang, Shan Huang, ... Liang Huang*. Molecular simulation of methane adsorption in deep shale nanopores: Effect of rock constituents and water[J]. Minerals, 2023, 13(6): 756.
(27)Shan Huang, Xinhua Ma, Hongzhi Yang, ... Liang Huang*. Experimental characterization and molecular modeling of kerogen in Silurian deep gas shale from southern Sichuan Basin, China[J]. Energy Reports, 2022, 8: 1497-1507.
(28)Rui Zhang, Shaohua Gu, Liang Huang*, et al. Experimental study on the elemental sulfur solubility in sour gas mixtures[J]. Frontiers in Earth Science, 2021, 9: 767015.
(29)黄亮*, 徐侦耀, 陈秋桔, 等. 页岩变形干酪根中甲烷吸附-解吸特征分子模拟[J]. 石油与天然气地质, 2025, 46(03): 995-1005.
(30)黄亮*, 田宝华, 徐侦耀, 等. 不同成熟度页岩干酪根中CO2吸附与孔隙变形的耦合机理[J]. 华南师范大学学报(自然科学版), 2025, 57(01): 70-78.
(31)彭明云, 黄亮*, 李瑞媛, 等. 干酪根纳米孔隙中氦气赋存机理和扩散特征[J]. 天然气地球科学, 2025, 1-19.
(32)冯鑫霓, 黄亮*, 徐侦耀, 等. 不同类型干酪根热解特性及微观机理分子动力学模拟 [J/OL]. 成都理工大学学报(自然科学版), 1-14[2025-09-29]
(33)安思润, 黄亮*, 曲自硕, 等. 干酪根热演化过程中热解生氢分子机理 [J/OL]. 天然气地球科学, 1-15[2025-09-29].
(34)黄亮, 陈秋桔, 吴建发, 等. 深层页岩伊利石中甲烷吸附特征分子模拟[J]. 中南大学学报(自然科学版), 2022, 53(9): 3522-3531.
(35)黄亮, 杨琴, 吴建发, 等. 深层页岩纳米孔隙中气水微观动用机理[J]. 天然气工业, 2024, 44(1): 139-148.
(36)黄亮, 冯鑫霓,杨琴,等. 深层页岩干酪根纳米孔隙中甲烷微观赋存特征[J]. 石油钻探技术, 2023, 51(5): 112-120.
(37)杨琴, 黄亮*, 周文, 等. 深层页岩伊利石孔隙中甲烷吸附相密度特征[J]. 断块油气田, 2023, 30(5): 799-807.
(38)向雪妮, 黄亮*, 周文, 等. 基于分子模拟的气体水合物结构特征及储气特性研究[J]. 油气藏评价与开发, 2022, 12(5): 830-837.
(39)黄亮, 宁正福, 王庆, 等. 湿度对CH4/CO2在干酪根中吸附的影响: 分子模拟研究[J]. 石油科学通报, 2017, 2(3): 422-430.
(40)黄亮, 宁正福, 石军太, 等. 低渗致密气藏压裂水平井产能预测新方法[J]. 大庆石油地质与开发, 2017, 36(2): 160-166.
(41)黄亮, 石军太, 杨柳, 等. 低渗气藏启动压力梯度实验研究及分析[J]. 断块油气田, 2016, 23(5): 610-614.
部分合作论文:
(1)Yifan Zhang, Lu Wang, Rui Zou, ... Liang Huang, et al. Microscopic production characteristics and fluid behavior of shale oil in CO2-cosolvent SAG process: Insights into EOR and carbon storage[J]. Journal of Rock Mechanics and Geotechnical Engineering, 2026. doi.org/10.1016/j.jrmge.2025.11.011. (SCI一区TOP)
(2)Mohammed Ali Badjadi,Haiyan Zhu,Peng Zhao ... Liang Huang, et al. Hybrid CNN-LSTM model for predicting wettability alterations in shale reservoir based on experimental techniques[J]. Geoenergy Science and Engineering, 2026, 257. (SCI二区TOP)
(3)Lu Wang, Run Zou, Yifan Yuan, ... Liang Huang, et al. Molecular Dynamics of Acid Waste Gas Replacing Oil in Hydrated Mineral Nanopores: Implications for Shale Oil Recovery and Acid Gas Storage[J]. Langmuir, 2025, 41(38): 26378-26396. (SCI二区)
(4)Yisheng Liu, Cong Tang, Xingdong Qiu, ... Liang Huang, et al. Effect of shale surface wettability on the CO2 huff-n-puff behavior in oil-bearing nanopores: A molecular dynamics study[J]. Separation and Purification Technology, 2025, 373. (SCI二区TOP)
(5)Zheng Li, Daqian Zeng, Tong Li,... Liang Huang, et al. Molecular insights into the interfacial tension of liquid sulfur with formation water/natural Gas: Effects of temperature, pressure, and composition[J].Gas Science and Engineering, 2025, 139. (SCI二区TOP)
(6)Lu Wang, Run Zou, Yifan Yuan, ... Liang Huang, et al. Dynamics of impure CO2 and composite oil in mineral nanopores: Implications for shale oil recovery and gas storage performance[J]. Chemical Engineering Journal, 2024, 500. (SCI一区TOP)
(7)Lu Wang, Yi-Fan Zhang, Run Zou, ... Liang Huang, et al. Applications of molecular dynamics simulation in studying shale oil reservoirs at the nanoscale:Advances,challenges and perspectives[J]. Petroleum Science, 2025, 22(1): 234-254. (SCI一区TOP)
(8)Yifan Zhang, Lu Wang, Rui Zou, ... Liang Huang, et al. Effects of cosolvents on CO2 displacement of shale oil and carbon storage[J]. Petroleum Exploration and Development, 2023, 50(6): 1509-1518. (SCI一区TOP)
(9)Lu Wang, Yifan Zhang, Rui Zou, ... Liang Huang, et al. Molecular dynamics investigation of DME assisted CO2 injection to enhance shale oil recovery in inorganic nanopores[J]. Journal of Molecular Liquids, 2023, 385, 122389. (SCI二区TOP)
(10)张一帆, 王璐, 邹瑞, ...黄亮, 等. 助溶剂对二氧化碳置换页岩油及碳封存的影响[J]. 石油勘探与开发, 2023, 50(6): 1318-1326. (SCI一区TOP)
(11)王璐, 张一帆, 刘逸盛, ...黄亮, 等. 页岩储层原油赋存特征及CO2原油竞争吸附机制分子动力学[J]. 中国石油大学学报(自然科学版), 2023, 47(4): 128-136.
(12)Lu Wang, Yifan Zhang, Ruilang Luo, ... Liang Huang, et al. Lower limits of petrophysical parameters for effective reservoirs in ultradeep carbonate gas reservoirs: A case study from the Deng IV Member, Gaoshiti-Moxi Area, Sichuan Basin, SW China[J]. Journal of Hydrology, 2023, 621, 129657. (SCI一区TOP)
(13)Zhuoya Zhang, Zhaojie Song, Hongda Hao, Liang Huang, and Yilei Song. Adsorption behavior of n-hexane and its mixtures with CO2, CH4, H2O and SDBS in hydrophobic silica nanopores[J]. Fuel, 2022, 312: 122872. (SCI一区TOP)
(14)Zou J, Fan C, Zhang J, ... Huang L, et al. Effect of adsorbent properties on adsorption-induced deformation[J]. Langmuir, 2021, 37(51): 14813-14822. (SCI二区)
(15)Zou J, Fan C, Jiang Y, ... Huang L, et al. A preliminary study on assessing the Brunauer-Emmett-Teller analysis for disordered carbonaceous materials[J]. Microporous and Mesoporous Materials, 2021, 327: 111411. (SCI二区)
(16)Zhang W, Ning Z, Cheng Z, ... Huang L, et al. Experimental investigation of the role of DC voltage in the wettability alteration in tight sandstones[J]. Langmuir, 2020, 36(40): 11985-11995. (SCI二区)
(17)Wu X, Ning Z, Qi R, ... Huang L, et al. Pore characterization and inner adsorption mechanism investigation for methane in organic and inorganic matters of shale[J]. Energy & Fuels, 2020, 34(4): 4106-4115.
(18)Wu X, Ning Z, Han G, ... Huang L, et al. Modified SLD model for coalbed methane adsorption under reservoir conditions[J]. Arabian Journal of Geosciences, 2019, 12(18): 1-7.
(19)Sun Z, Wu K, Shi J, ... Huang L, et al. An analytical model for transport capacity of water confined in nanopores[J]. International Journal of Heat and Mass Transfer, 2019, 138: 620-630. (SCI二区)
(20)Wu X, Ning Z, Cheng Z, ... Huang L, et al. Simplified local density model for gas adsorption in cylindrical carbon pores[J]. Applied Surface Science, 2019, 491: 335-349. (SCI二区)
(21)Sun Z, Shi J, Wu K, ... Huang L, et al. An analytical model for gas transport through elliptical nanopores[J]. Chemical Engineering Science, 2019, 199: 199-209. (SCI二区)
(22)Shi J, Sun Z, Wu K, ... Huang L, et al. Effect of pore shape on nanoconfined gas flow behavior: Implication for characterizing permeability of realistic shale matrix[J]. Industrial & Engineering Chemistry Research, 2019, 58(20): 8835-8846. (SCI二区)
(23)Zhang W, Ning Z, Zhang B, ... Huang L, et al. Experimental investigation of driving brine water for enhanced oil recovery in tight sandstones by DC voltage[J]. Journal of Petroleum Science and Engineering, 2019, 180: 485-494. (SCI二区TOP)
(24)Qi R, Ning Z, Wang Q, ... Huang L, et al. Measurements and modeling of high-pressure adsorption of CH4 and CO2 on shales[J]. Fuel, 2019, 242: 728-743. (SCI一区TOP)
(25)Zhang T, Li X, Yin Y, ... Huang L, et al. The transport behaviors of oil in nanopores and nanoporous media of shale[J]. Fuel, 2019, 242: 305-315. (SCI一区TOP)
(26)齐荣荣, 宁正福, 张爽, 黄亮, 等. 考虑含水和多组分气体的页岩气含气量预测模型[J]. 煤炭学报, 2018, 43(9): 2553-2561.
(27)Cheng Z, Ning Z, Wang Q, ... Huang L, et al. The effect of pore structure on non-Darcy flow in porous media using the lattice Boltzmann method[J]. Journal of Petroleum Science and Engineering, 2019, 172: 391-400. (SCI二区TOP)
(28)Zhang W, Wang Q, Ning Z, ... Huang L, et al. Relationship between the stress sensitivity and pore structure of shale[J]. Journal of Natural Gas Science and Engineering, 2018, 59: 440-451. (SCI二区TOP)
(29)Zhang T, Li X, Wang X, ... Huang L, et al. A discrete model for apparent gas permeability in nanoporous shale coupling initial water distribution[J]. Journal of Natural Gas Science and Engineering, 2018, 59: 80-96. (SCI二区TOP)
(30)Sun Z, Shi J, Zhang T, ... Huang L, et al. A fully-coupled semi-analytical model for effective gas/water phase permeability during coal-bed methane production[J]. Fuel, 2018, 223: 44-52. (SCI一区TOP)
(31)Cheng Z, Wang Q, Ning Z, ... Huang L, et al. Experimental investigation of countercurrent spontaneous imbibition in tight sandstone using nuclear magnetic resonance[J]. Energy & Fuels, 2018, 32(6): 6507-6517.
(32)Zeng Y, Ning Z, Wang Q, ... Huang L, et al. Gas transport in self-affine rough microchannels of shale gas reservoir[J]. Journal of Petroleum Science and Engineering, 2018, 167: 716-728. (SCI二区TOP)
(33)Sun F, Yao Y, Li X, ... Huang L, et al. Exploitation of heavy oil by supercritical CO2: Effect analysis of supercritical CO2 on H2O at superheated state in integral joint tubing and annuli[J]. Greenhouse Gases: Science and Technology, 2018, 8(3): 557-569.
(34)Qi R, Ning Z, Wang Q, ... Huang L, et al. Sorption of methane, carbon dioxide, and their mixtures on shales from Sichuan Basin, China[J]. Energy & Fuels, 2018, 32(3): 2926-2940.
(35)Yang J, Li X, Chen Z, ... Huang L, et al. A productivity model for cyclic steam stimulation for heavy oil with non-Newtonian flow behaviour[J]. International Journal of Oil, Gas and Coal Technology, 2018, 17(3): 257-283.
(36)Sun Z, Li X, Shi J, ... Huang L, et al. A semi-analytical model for drainage and desorption area expansion during coal-bed methane production[J]. Fuel, 2017, 204: 214-226. (SCI一区TOP)
(37)Juntai Shi, Liang Huang, Xiangfang Li, et al. Production forecasting of gas condensate well considering fluid phase behavior in the reservoir and wellbore[J]. Journal of Natural Gas Science and Engineering. 2015, 24: 279-290. (SCI二区TOP)
(38)吕兆兰, 宁正福, 王庆, 黄亮,等. 甲烷在页岩黏土矿物中吸附行为的分子模拟[J]. 煤炭学报, 2019, 44(10): 3117-3124.
(39)叶洪涛, 宁正福, 王庆,程志林, 黄亮, 等.页岩储层自发渗吸实验及润湿性研究[J]. 断块油气田, 2019, 26(1): 84-87.
(40)陈志礼, 宁正福, 杜华明, 黄亮, 叶洪涛, 张文通. 基于改进BP神经网络的页岩吸附量预测模型[J]. 断块油气田, 2018, 25(2): 208-212.
(41)陈志礼, 宁正福, 王庆, 黄亮, 齐荣荣, 王金伟. 含水页岩甲烷吸附特性实验研究[J]. 断块油气田, 2018, 25(4): 510-514.
(42)杨戬, 李相方, 陈掌星, 田冀, 黄亮, 刘新光. 考虑稠油非牛顿性质的蒸汽吞吐产能预测模型[J]. 石油学报, 2017, 38(1): 84-90.
(43)齐荣荣, 宁正福, 王庆, 张爽, 曾彦, 黄亮, 杜华明. 考虑水蒸气压力的平衡水页岩等温吸附[J]. 中国科学(技术科学), 2018, 48(5): 524-536.
(44)曾彦, 宁正福, 齐荣荣, 黄亮, 吕朝辉. 页岩气在纳微孔道中的流动模拟研究[J]. 石油科学通报, 2017, 2(1): 64-75.
(45)王蕊, 石军太, 王天驹, 黄亮, 孙政, 张磊. 不同叠置关系下煤层气与致密气合采方案优化研究[J]. 中国煤炭地质, 2016, 28(6): 42-46.
◎ SCI期刊专题策划
作为SCI期刊客座编辑,汇编英文论著一本(Liang Huang. Carbon Dioxide Geological Storage and Utilization[M]. MDPI, 2023),策划6期专题:
(1) Journal: Atmosphere. Special Issue: Advances in CO2 Geological Storage and Utilization, 2025-2026.https://www.mdpi.com/journal/atmosphere/special_issues/SD76YF2706. (Call for papers, deadline: 31 August 2026).
(2) Journal: Atmosphere. Special Issue: CO2 geological storage and utilization (2nd edition), 2023-2024.
(3) Journal: Frontiers in Energy Research. Special Issue: Mechanisms and applications of coupled technologies in the unconventional resources for enhancing oil/gas recovery, 2023.
(4) Journal: Atmosphere. Special Issue: CO2 geological storage and utilization, 2022.
(5) Journal: Frontiers in Energy Research. Special Issue: Advances upon impact of microscopic water imbibition mechanism on unconventional oil/gas reservoirs development, 2022.
(6) Journals: Energies, Geosciences, Minerals, Processes, Fuels. Special Issue: Recent advancements in kerogen research, 2022.
◎ 专利与软著
部分国家发明专利、实用新型专利和软件著作权如下:
(1) 一种页岩气吸附回滞现象的分子模拟方法,国家发明专利
(2) 一种页岩油藏干酪根膨胀行为的分子模拟方法,国家发明专利
(3) 一种模拟复合多层气藏开采的实验方法及装置,国家发明专利
(4) 一种页岩复合有机质分子模型的构建方法,国家发明专利
(5) 一种地层应力敏感实验测试方法及装置,国家发明专利
(6) 三轴应力状态下的应力敏感实验装置及其方法,国家发明专利
(7) 含水页岩吸附量的确定方法和装置,国家发明专利
(8) 深层碳酸盐岩气藏有效储层物性下限综合确定方法,国家发明专利
(9) 一种海上深层高温超压气藏开发方法,国家发明专利
(10) 一种页岩含油率检测装置及方法,国家发明专利
(11) 一种页岩浸水实验设备,国家发明专利
(12) 一种页岩油加热改质反应装置,国家发明专利
(13) 一种二氧化碳吞吐开采页岩气的分子模拟研究方法,国家发明专利
(14) 一种页岩孔隙中烃类同分异构体相态行为差异机理的分子模拟研究方法,国家发明专利
(15) 一种页岩复杂纳米孔隙中流体状态识别与示踪方法,国家发明专利
(16) 页岩复合孔缝介质分子模型构建方法及装置,国家发明专利
(17) 一种酸性气体中硫溶解行为的分子模拟方法及其应用,国家发明专利
(18) 一种评价页岩油藏中CO2助溶剂增产性能的分子模拟方法,国家发明专利
(19) 一种致密砂岩气藏产水来源综合诊断方法,国家发明专利
(20) 一种评价天然气藏不同生产制度下流体动用规律的方法,国家发明专利
(21) 一种油气储层效益开发物性下限图版的制作方法,国家发明专利
(22) 一种煤页岩压裂液渗吸及滞留特征原位分析装置及方法,国家发明专利
(23) 页岩复杂纳米孔隙分子建模和二氧化碳吞吐分子模拟方法,国家发明专利
(24) 一种多尺度孔隙中CO2吞吐动用凝析气的流体动态含量量化实验装置及方法,国家发明专利
(25)一种页岩多尺度孔隙空间中凝析气组分解吸-相变-孔隙变形耦合特征的实验装置及方法,国家发明专利
(26) CO2吸附诱导的干酪根复合纳米孔隙变形量预测方法,国家发明专利
(27) 二氧化碳强化干酪根热解产物控压运移与耦合动用的模拟方法,国家发明专利
(28) 一种基于常温再生离子石墨烯的二氧化碳捕集与分离方法,国家发明专利
(29) 一种气顶油藏水平井衰竭式开发物理模拟装置,实用新型专利
(30) 碳酸盐岩储层含水性分析软件,软件著作权
(31) 油气-岩石相互作用强度数据库系统V1.0,软件著作权
(32) 废弃气藏储氢量预测系统V1.1,软件著作权
(32) 枯竭气藏储氢量评估数据管理与预测系统V1.0,软件著作权
◎ 学术交流
参加的部分国内外学术会议如下:
(1) Liang Huang, Zhengfu Ning, He Li, et al. Abu Dhabi International Petroleum Exhibition & Conference. 13-16, Nov., 2017, Abu Dhabi, UAE. Organization: Society of Petroleum Engineers
(2) Liang Huang, Zhengfu Ning, Ke Wang, et al. AAPG Annual Convention & Exhibition. 20-23, May, 2018, Salt Lake City, USA. Organization: American Association of Petroleum Geologists
(3) Liang Huang, Zhengfu Ning, Juntai Shi, et al. 4th International Conference on Computational and Experimental Science and Engineering. 4-8, Oct., 2017, Antalya, Turkey. Organization: Suleyman Demirel University, Isparta -Turkey
(4) Liang Huang, Abbas Firoozabadi, Clayton J. Radke. RERI XXX Annual Workshop. 2-3, May, 2019, Palo Alto, USA. Organization: Reservoir Engineering Research Institute
(5) Liang Huang, Zhengfu Ning, Qing Wang, et al. International Field Exploration and Development Conference. 21-22 Sep., 2017, Chengdu, China. Organization: Shaanxi Petroleum Society
(6) Liang Huang, Zhengfu Ning. Workshop on Unconventional Oil and Gas Development. 29-30, Aug., 2018, Beijing, China. Organization: China University of Petroleum (Beijing)
(7) 黄亮, 向雪妮. 第33届全国天然气学术年会. 11月15-17日, 2021, 南宁, 中国。主办单位: 中国石油学会天然气专业委员会
(8) 黄亮, 宁正福, 叶洪涛, 等. 第八届全国天然气藏高效开发技术研讨会. 4月19-21日, 2017, 南宁, 中国。主办单位: 中国石油学会天然气专业委员会
(9) 黄亮, 杨柳, 蒋敏. 第七届全国天然气藏高效开发技术研讨会. 6月3-5日, 2016, 杭州,中国。主办单位: 中国石油学会天然气专业委员会
(10) 黄亮, 石军太, 臧加利, 等. 第六届全国天然气藏高效开发技术研讨会. 9月14-16日, 2015, 北京, 中国。主办单位: 中国石油学会天然气专业委员会
(11) 黄亮, 冯鑫霓, 等. 第34届全国天然气学术年会. 9月19-21日, 2024, 苏州, 中国。主办单位: 中国石油学会天然气专业委员会
(12) 黄亮, 杨哲, 杨琴, 等. 第35届全国天然气学术年会. 9月24-26日, 2025, 郑州, 中国。主办单位: 中国石油学会天然气专业委员会
(13) 黄亮. 中国油气勘探开发青年创新发展大会. 11月24-26日, 2025, 成都, 中国。主办单位: 中国石油学会青年工作委员会
(14) 黄亮, 杨哲, 曲自硕,安思润, 等. 新兴战略天然气形成与富集学术研讨会. 12月20-22日, 2025, 成都, 中国。主办单位: 中国矿物岩石地球化学学会气体地球化学专业委员会
◎ 行政与学术职务
(1) 成都理工大学能源学院开发地质研究室副主任
(2) 分子油气能源课题组负责人
(3) 油气藏地质及开发工程全国重点实验室“非常规油气储层地质评价团队”成员
(4) 四川省天府永兴实验室“CO2捕集、封存、利用技术研究团队”成员
(5) 国家级青年人才项目评审专家
(6) 国家自然科学基金评审专家
(7) 北京市自然科学基金评审专家
(8) 国家留学基金委评审专家
(9) 西藏自治区科学技术厅评审专家
(10) 成都市科学技术协会评审专家
(11) 山东石油化工学院碳储科学与工程专业建设与教学指导委员会委员
(12) Frontiers in Energy Research期刊副主编
(13) Atmosphere SCI期刊客座主编
(14) Frontiers in Energy Research SCI期刊客座副主编
(15) Energies、Minerals、Processes SCI期刊客座副主编
(16) Frontiers in Earth Science期刊执行编辑
(17) International Journal of Coal Science & Technology期刊科学编辑
(18) American Journal of Chemical Engineering期刊编委
(19) Unconventional Resources期刊青年编委
(20) Subsurface Exploration and Exploitation期刊青年编委
(21) 中南大学学报(自然科学版)期刊青年编委
(22) 油气藏评价与开发期刊青年编委
(23) 断块油气田期刊青年编委
(24) 西安石油大学学报(自然科学版)期刊青年编委
(25) 新疆石油地质期刊青年编委
(26) 中国海上油气期刊青年编委
(27) 石油钻探技术期刊青年编委
(28) 天然气勘探与开发期刊青年编委
(29) 油气与新能源期刊青年编委
(30) 成都理工大学学报(自然科学版)期刊青年编委
(31) 西南石油大学学报(自然科学版)期刊青年编委
(32) Unconventional Resources期刊青年编委
(33) Petroleum期刊青年编委
(34) Exploration期刊青年编委
(35) SPE Journal、Applied Energy、Chemical Engineering Journal、Fuel、Journal of Petroleum Science and Engineering、Journal of Natural Gas Science and Engineering、Applied Surface Science、Environmental Science & Technology、International Journal of Coal Geology、Journal of Chemical Physics等40余个SCI期刊审稿专家。