◎学习与工作经历
2019.12-至今:成都理工大学能源学院,教授,博导
2019.10-2019.12:成都理工大学能源学院,副教授,博导
2018.11-2019.11:美国犹他大学能源地质研究院,学术访问
2014.02-2019.10:成都理工大学能源学院,副教授,硕导
2011.07-2014.01:中原油田勘探开发研究院,地质资源与地质工程,博士后
2008.09-2011.06:中国石油大学(北京),构造地质学,博士学位
2005.09-2008.06:成都理工大学,矿产普查与勘探,硕士学位
2001.09-2005.06:成都理工大学,资源勘查工程,学士学位
◎研究方向
从事沉积盆地现今地温场、热历史、应用地热学及油气成藏机理研究
◎主讲课程
(1)《石油地质学基础》
(2)《地热地质学》
(3)《新能源科学与工程概论》
(4)《新能源科学与工程导论》
(5)《油气田地质学》
(6)《沉积盆地地温场及热历史》
(7)《地质过程中的定量方法与计算技术》
(8)《地热资源勘探与评价》
◎主持或参与科研课题
从事科研项目共50余项,部分如下:
(1)汾渭盆地近代火山活动水热控储效应,国家科技重大专项子课题(2025ZD1010201),2025-2028,负责人
(2)四川盆地油气田深层地热资源潜力评价,国家科技重大专项子课题(2024ZD1003505),2025-2028,负责人
(3)四川盆地大地热流特征与岩石圈热结构研究及其地热资源效应,国家自然科学基金面上项目(42372172),2024-2027,负责人
(4)开采过程多场时空演变规律与流动调控方法,自然科学基金重大项目-课题,2022-2026,子课题负责人
(5)银额盆地构造—热历史与岩石圈热构造演化的耦合机制及其对生烃的控制,国家自然科学基金面上项目(41972144),2020-2023,负责人
(6)查干凹陷构造-热演化研究,国家自然科学基金(4140221),2015-2017,负责人
(7)南羌塘坳陷古油藏精细油源对比及动态成藏过程研究,西藏自治区科技计划(XZ202501ZY0063),负责人
(8)四川盆地中西部早古生代构造-热历史的研究,自然资源部沉积盆地与油气资源重点实验室开发基金重点基金(cdcgs2023001),2023-2025,负责人
(9)银额盆地岩石圈热结构及古生界烃源岩生烃史研究,刘宝琚地学青年科学基金(DMSM2019009),2019-2021,负责人
(10)四川盆地岩石圈热结构与地热资源效应,四川省科技厅项目(2023NSFSC0251),2023-2024,负责人
(11)濮阳地区岩石圈热结构及其古生界烃源岩生烃效应研究,“构造与油气资源”教育部重点实验室重点基金(TPR-2022-01),2022-2024,负责人
(12)四川盆地中西部早古生代构造-热历史的研究,自然资源部沉积盆地与油气资源重点实验室重点基金(cdcgs2023001),2023-2025,负责人
(13)地热资源有利区优选及分类评价,中海石油(中国)有限公司海南分公司,2025-2026,负责人
(14)鄂尔多斯盆地长7页岩原位转化储层结焦模拟与分析测试,中国石油天然气股份有限公司勘探开发研究院,2025-2025,负责人
(15)南堡凹陷高柳以南沙河街组油气富集规律研究及目标优选-南堡凹陷高柳以南地层热演化史分析,中国石油天然气股份有限公司冀东油田分公司,2025-2026,负责人
(16)地热能开发利用与地球储能系统关键技术研究,水电水利规划设计总院有限公司,2024-2026,负责人
(17)内蒙古自治区苏尼特右旗干热岩测井,内蒙古煤炭建设工程(集团)总公司,2023-2024,负责人
(18)内蒙古自治区苏尼特右旗干热岩孔钻探施工服务岩矿试验分析测试,内蒙古煤炭建设工程(集团)总公司,2023-2024,负责人
(19)特提斯域中段构造演化特征与油气成藏条件研究服务合同,中海石油国际能源服务(北京)有限公司国际公司,2023-2024,负责人
(20)目标区浅层与深层地热成因耦合研究及资源潜力评价,水电水利规划设计总院有限公司,2023-2024,负责人
(21)四川盆地岩石热物性测试样品分析,中国石油天然气股份有限公司西南油气田分公司,2023,负责人
(22)桑托斯盆地盐下烃源岩差异热演化控制因素及油气富集规律研究,中国石油天然气股份有限公司杭州地质研究院项目,2022,负责人
(23)川渝地区地热资源量评价及地热资源开发有利区优选,中国石油天然气股份有限公司西南油气田分公司,2022-2023,负责人
(24)延长组岩石矿物组分及元素地球化学分析实验,中国石油天然气股份有限公司勘探开发研究院,2021-2022,负责人
(25)四川盆地地热资源分布状况及利用前景,中国石油天然气股份有限公司西南油气田分公司,2021,负责人
(26)桑托斯盆地盐下烃源岩特征及资源潜力评价,中国石油天然气股份有限公司杭州地质研究院项目,2021,负责人
(27)川东地区中下三叠统气源对比及相关烃源岩生烃潜力评价,西南油气田分公司项目,2020-2021,负责人
(28)四川盆地及邻区中下奥陶统烃源岩发育机制与生烃潜力研究,四川盆地研究中心项目,2020-2021,负责人
(29)川东地区三叠系嘉陵江组成藏条件与天然气富集规律研究,西南油气田分公司重庆气矿重点项目,2018-2020,负责人之一
(30)东濮凹陷构造-热历史及深层油气资源评价,四川科技厅项目(2016JQ0043),2017-2019,负责人
(31)东濮凹陷新生代构造-热演化研究,油气资源与探测国家重点实验室开放基金(PRP/open-1705),2017-2019,负责人
(32)干酪根热模拟实验及生烃动力学分析,中原油田项目,2017-2018,负责人
(33)四川盆地典型井中-新生代热历史研究,中国石油大学项目,2017-2018,负责人
(34)成都理工大学中青年教学骨干教师,KYGG201504,2015-2018,负责人
◎主持教学项目
(1)“双碳战略”目标下地热本科人才培养模式探索,四川省2021-2023年高等教育人才培养质量和教学改革项目,负责人
(2)人力资源提升项目,教育部高校学生司供需对接就业育人项目(20230110298),负责人
◎获奖情况
(1)Dynamic Evaluation Technology of Source - Reservoir in Petroliferous Basin, Gold Award at the 48th Geneva International Invention Exhibition, 2023
(2)深部岩石圈热结构与浅部油气资源效应评价技术,中国发明协会创新奖成果奖二等奖,2025
(3)塔里木盆地西南缘烃源岩热演化史与非常规油气藏赋存规律研究,新疆维吾尔自治区地质找矿科技创新奖一等奖,2025
(4)第十三届发明创业奖人物奖,中国发明协会,2023
(5)海相沉积盆地温度场研究,北京市科学技术奖—自然科学奖二等奖,2023
(6)中小型断陷湖盆油气聚集规律及工业化应用,河南省科学技术进步奖三等奖,2023
(7)2023年度全国地热行业突出贡献个人,中国地热与温泉产业技术协同创新平台,2023
(8)2024年度全国地热行业突出贡献个人,中国地热与温泉产业技术协同创新平台,2024
(9)2025年度全国地热行业突出贡献个人,中国地热与温泉产业技术协同创新平台,2025
(10)沉积盆地源-藏动态评价技术,中国发明协会“发明创业奖创新奖”二等奖,2022
(11)中国典型海相盆地温压场特征与油气成藏及勘探应用成效,中国石油和化学工业联合会科技进步奖二等奖,2020
(12)查干凹陷油气富集主控因素研究,中原油田科技进步奖一等奖,2012
(13)查干凹陷热史及生烃史研究,中原油田科技进步奖二等奖,2013
◎荣誉称号
(1)四川省学术和技术带头人后备人选
(2)四川省海外高层次人才
(3)四川省教育厅、四川省科学技术协会“科学家百人千场进校园”科学家精神宣讲团成员
(4)大学生暑期“三下乡”社会实践优秀指导教师(2023年)
(5)2017年获全国大学生石油科技创新创业大赛优秀指导教师
(6)国际ENI Award埃尼奖候选提名(2015年)
(7)成都理工大学党委首批联系服务专家和中青年教师
(8)首届全国地学研究生论坛优秀指导教师
(9)成都理工大学优秀教师
◎著作
(1)左银辉. 查干凹陷中生代热体制及油气资源评价,科学出版社,2015
(2)左银辉(3). 地震地质解释基础(双语版),科学出版社,2015
(3)左银辉(副主编).非常规油气与可再生能源(石油高等院校特色规划教材),石油工业出版社,2020
(4)左银辉(1). Progress in Exploration, Development and Utilization of Geothermal Energy. Frontiers Media SA., 2022
◎论文
发表SCI论文70余篇:
[1]Yao Yiyu, Zuo Yinhui*, Yan Kangnan, Jiang Shu, Jiang Guangzheng, Zeng Jiancheng, Zhou Yongshui, Zhang Jiazhen, Yu Ruyang, Tang Ziwei. Lithospheric thermal structure in the Dongpu Depression, Bohai Bay Basin, North China. GEOTHERMICS, 2025 ,132
[2]Zuo Yinhui*, Sun Yigao., Zhang Luquan, Zhang Chao, Wang Yingchun, Jiang Guangzheng, ... & Cui Longqing. Geothermal resource evaluation in the Sichuan Basin and suggestions for the development and utilization of abandoned oil and gas wells. Renewable Energy, 2024, 225, 120362.
[3]Sun Y, Zuo Y*, Zhang L, Zhang C, Wang Y, Zhang T, Li X, Yang M, Yan K and Cui L. Geothermal resource evaluation of the Middle Permian Qixia-Maokou Formation in the southern Sichuan Basin, China. Geothermics, 2024, 122, p.103073.
[4]Yan K, Zuo Y*, Zhang Y, Yang L, Pang X, Wang S, Li W, Song X and Yao Y. A study on the accumulation model of the Santos basin in Brazil utilizing the source–reservoir dynamic evaluation method. Scientific Reports, 2024, 14(1), p.19296.
[5]Yan K, Zuo Y*. Hu J, Zhang Y, Zhou Y, Zhang Y and Yao Y. Sediment provenance of Late Carboniferous-Early Triassic in the Puyang area, Eastern North China Craton. iScience, 2024, 27(12).
[6]Zeng Jiancheng, Zuo Yinhui*, Zheng Ziyun, Zhang Jiazhen, Ge Jiawang, Song Linke, Xiao Yao and Zhao Xiaoming*. Gas-Source Comparison and Hydrocarbon Generation and Expulsion Histories of the Main Source Rocks of the Middle Jurassic Shaximiao Formation, Western Sichuan Basin. ACS omega, 2023, 8(48), 46113-46126.
[7]Zhang Jiazhen, Zuo Yinhui*, Yang Meihua, Huang Wenming, Xu Liang, Zheng Ziyun and Zeng Jiancheng. Hydrocarbon Generation and Expulsion Histories of the Upper Permian Longtan Formation in the Eastern Sichuan Basin, Southwest China. ACS Omega, 2023, 8, 19329−19340.
[8]Zheng Z Y, Zuo Y H*, Wen H G, Li D M, Luo Y, Zhang J Z, Yang M H, Zeng J C. Natural gas characteristics and gas-source comparisons of the lower Triassic Feixianguan formation, Eastern Sichuan basin. Petroleum Science, 2023.
[9]Qiao Y, Zuo Y*, Tu S, Zhang J, Yang M, Zhang T. Strata temperatures and geothermal resource evaluation in the Dongpu Depression, Bohai Bay Basin, North China. Scientific Reports, 2023, 13(1), 3630.
[10]Zheng Z, Zuo Y*, Wen H, Zhang J, Zhou G, Xu L, ... & Zeng J. Natural gas characteristics and gas-source comparisons of the Lower Triassic Jialingjiang Formation, Eastern Sichuan Basin. Journal of Petroleum Science and Engineering, 2022, 111165.
[11]Yang Meihua, Zuo Yinhui*, Yan Kangnan, Zhou Yongshui, Zhang Yunxian, Zhang Chengfu. Hydrocarbon generation history constrained by thermal history and hydrocarbon generation kinetics: A case study of the Dongpu Depression, Bohai Bay Basin, China. Petroleum Science, 2022, 19(2): 472-485.
[12]Yang Meihua, Zuo Yinhui*, Fu Xiaodong, Qiu Lei, Li Wenzheng, Zhang Jianyong, Zheng Ziyun, Zhang Jiazhen. Paleoenvironment of the Lower Ordovician Meitan Formation in the Sichuan Basin and Adjacent Areas, China. Minerals, 2022, 12(1): 75.
[13]Yang Meihua, Zuo Yinhui*, Yan Kangnan, Zhou Yongshui, Wang Xuejun, Li Changchun, Zheng Ziyu. Hydrocarbon generation history in the Chagan Depression, Inner Mongolia, northern China: constraints of hydrocarbon generation kinetics and thermal history. Arabian Journal of Geosciences, 2022, 15(1): 1-12.
[14]Zuo Yinhui, Kong Yanlong, Jiang Shu, Shao Haibing, Zhu Haiyan, Yang Meihua. Editorial: Progress in Exploration, Development and Utilization of Geothermal Energy. Frontiers in Earth Science, 2022, 10.
[15]Zuo Guoping, Wang Hongping, Fan Guozhang, Zhang Jiazhen, Zhang Yonggang, Wang Chaofeng, Yang Liu, Ding Liangbo, Pang Xu, Zuo Yinhui*. Geochemical Characteristics and Distribution of the Subsalt Source Rocks in the Santos Basin, Brazil. ACS Omega, 2022, 7(29): 25715-25725.
[16]Yang Meihua, Zuo Yinhui*, Zhang Jiazhen, Wang Changcheng, Zhou Yongshui,Wang Xuejun, Zhang Chengfu. Hydrocarbon Kitchen Evolution in the Early Cretaceous Bayingebi 2 Formation in the Chagan Depression, Yingen-Ejinaqi Basin, North Central China. ACS omega, 2021, 6(18): 12194-12204.
[17]Jiang Shu, Zuo Yinhui*, Yang Meihua, Feng Renpen. Reconstruction of the Cenozoic tectono-thermal history of the Dongpu Depression, Bohai Bay Basin, China: constraints from apatite fission track and vitrinite reflectance data. Journal of Petroleum Science and Engineering, 2021, 108809.
[18]Yan Kangnan, Zuo Yinhui*, Yang Meihua, Zhou Yongshui, Zhang Yunxian, Zheng Ziyun. Pyrolysis experiment and hydrocarbon generation potential of the Bayingebi 2 Formation in the Hari Sag, Yingen-Ejiqi Basin, China. Arabian Journal of Geosciences, 2021, 14(1): 1-11.
[19]Zuo Yinhui, Jiang Shu, Wu Shihu, Xu Wei, Zhang Jiong, Feng Renpeng, Yang Meihua, Zhou Yongshui. Terrestrial heat flow and lithospheric thermal structure in the Chagan Depression of the Yingen-Ejinaqi Basin, north central China. Basin Research, 2020, 32(6):1328-1346.
[20]Zuo Yinhui, Yang Meihua, Hao Qingqing, Yan Kangnan, Zhang Yunxian, Zhou Yongshui. New Progress on Hydrocarbon-generation History of the Dongpu Depression in the Bohai Bay Basin based on Thermal History and Hydrocarbon Generation Kinetics. ACTA GEOLOGICA SINICA-ENGLISH EDITION, 2020, 94(5): 1724-1725.
[21] Zheng Ziyuan, Zuo Yinhui*, Jiang Shu, Zhou Yongshui, Zhang Yunxian, Wu Wenting, Yan Kangnan, Yang Meihua. Carbon Isotope Kinetics Effect on the Natural Gas Accumulation: A Case Study of the Baimiao Area, Dongpu Depression, North China. Energy & Fuels, 2020, 34, 1608−1619.
[22] Yan Kangnan, Zuo Yinhui*, Yang Meihua, Zhou Yongshui, Zhang Yunxian,Wang Changcheng, Song Rongcai, Feng Renpeng, Feng Yuanjun. Kerogen Pyrolysis Experiment and Hydrocarbon Generation Kinetics in the Dongpu Depression, Bohai Bay Basin, China. Energy & Fuels, 2019, 33(9): 8511-8521.
[23] Feng Renpeng, Zuo Yinhui*, Yang Meihua, Zhang Jiong, Liu Zhi, Zhou Yongshui, Hao Qingqing. Present Terrestrial Heat Flow Measurements of the Geothermal Fields in the Chagan Sag of the Yingen-Ejinaqi Basin, Inner Mongolia, China. ACTA GEOLOGICA SINICA-ENGLISH EDITION, 2019, 93(2): 283-296.
[24] Jiang Ziran, Zuo Yinhui*, Yang Meihua, Zhou Yongshui. Source rocks evaluation of the Paleogene Shahejie 3 Formation in the Dongpu Depression, Bohai Bay Basin. Energy Exploration & Exploitation, 2019, 37(1): 394-411.
[25] Tang Xiaoying, Zuo Yinhui*, Kohn Barry, Li Yi, Huang Shaopeng. Cenozoic thermal history reconstruction of the Dongpu Sag, Bohai Bay Basin: Insights from apatite fission-track thermochronology. TERRA NOVA, 2019, 31(3): 159-168.
[26] Zuo Yinhui, Ye Bin, Wu Wenting, Zhang Yunxian, Ma Wenxin, Tang Shilin, Zhou Yongshui. Present temperature field and Cenozoic thermal history in the Dongpu depression, Bohai Bay Basin, North China. Marine and Petroleum Geology, 2017, 88: 696-711.
[27] Zuo Yinhui, Song Rongcai, Li Zongxing, Wang Yixuan, Yang Meihua. Lower Cretaceous source rock evaluation and thermal maturity evolution of the Chagan depression, Inner Mongolia, Northern China. Energy Exploration & Exploitation, 2017, 35(4): 482-503.
[28] Li Zongxing, Zuo Yinhui*, Qiu Nansheng, Gao Jun. Meso–cenozoic lithospheric thermal structure in the Bohai Bay Basin, eastern North China Craton. Geoscience Frontiers, 2017,8(5): 977-987.
[29] Zuo Yinhui, Wang Quanfeng, Lu Zhenquan, Chen Hui. Tectono-thermal evolution and gas source potential for natural gas hydrate in the Qilian Mountain Permaforst, China, Journal of Natural Gas Science and Engineering, 2016, 36A: 32-41.
[30] Zuo Yinhui, Wang Changcheng, Tang Shilin, Hao Qinqing. Mesozoic and Cenozoic thermal history and source rock thermal evolution of the Baiyinchagan sag, Erlian basin, Northern China. Journal of Petroleum Science and Engineering, 2016, 139: 171-184.
[31] Zuo Yinhui, Qiu Nansheng, Hao Qingqing, Pang Xiongqi, Gao Xia, Wang Xuejun, Luo Xiaoping, Zhao Zhongying. Geothermal regime and Source Rock Thermal Evolution History in the Chagan Sag, Inner Mongolia. Marine and petroleum Geology, 2015, 59: 245-267.
[32] Zuo Yinhui, Qiu Nansheng, Li Jiawei, Hao Qingqing, Pang Xiongqi, Zhao Zhongying, Zhu Qi. Meso-Cenozoic Tectono-thermal Evolution History in Bohai Bay Basin, North China. Journal of Earth Science, 2015, 26(3): 352-360.
[33] 左银辉,张旺,李兆影,李佳蔚,郝情情,胡杰.查干凹陷中、新生代构造-热演化史.地球物理学报,2015,58(7):2366-2379.(中英文对照)
[34] Zuo Yinhui, Qiu Nansheng, Hao Qingqing, Zhang Yunxian, Pang Xiongqi, Li Zhongchao, Gao Xia. Present Geothermal Fields of the Dongpu Sag in the Bohai Bay Basin. ACTA GEOLOGICA SINICA (English Edition), 2014, 88(3): 915-930.
[35] Zuo Yinhui, Qiu Nansheng, Pang Xiongqi, Chang Jian, Hao Qingqing, Gao Xia. Geothermal evidence of the Mesozoic and Cenozoic lithospheric thinning in the Liaohe depression. Journal of Earth Science, 2013, 24(4): 529-540.
[36] 左银辉,邱楠生,邓已寻,饶松,徐深谋,李建国.查干凹陷大地热流.地球物理学报,2013,56(9):3038-3050.(中英文对照)
[37] Zuo Yinhui, Qiu Nansheng, Zhang Yuan, Li Cuicui, Li Jianping, Guo Yonghua, Pang Xiongqi. Geothermal regime and hydrocarbon kitchen evolution of the offshore Bohai Bay basin, North China. AAPG Bulletin, 2011, 95(5): 749-769.
[38] 左银辉,邱楠生,庞雄奇,李建平,郭永华,姜福杰.渤海海域沙三段烃源灶演化特征研究.地球物理学报,2010,53(10):2415-2426.(中英文对照)
[39] 左银辉,文华国,廖义沙,蔡家兰,冯仁朋,徐文礼,罗洋,杨立成,王欣,郝靖.川东地区下三叠统嘉陵江组天然气特征及气源分析.东北石油大学学报,2021,45(01):62-72.
[40] 左银辉,郑紫芸,邵大力,王红平,杨柳,王朝锋,张勇刚.二氧化碳成因、成藏主控因素及脱气模式研究综述.科学技术与工程,2021,21(29):12356-12367.
[41] 左银辉,唐世林,张旺,张云献,辛艳朋,周勇水.东濮凹陷新生代构造-热历史研究.地学前缘,2017,24(03):149-156.
[42] 左银辉,李佳蔚,李文正,郝情情.塔里木盆地中、新生代“热”岩石圈厚度演化.地球物理学进展,2015,30(04):1608-1615.
[43] 左银辉,李新军,孙雨,常俊合,李新海,朱其,詹新,何长江.查干凹陷热史及油气成藏期次.地质与勘探,2014,50(03):583-590.
[44] 左银辉,马维民,邓已寻,郝情情,李新军,郭俊梅,冉庆,汪立蓉.查干凹陷中、新生代热史及烃源岩热演化.地球科学(中国地质大学学报),2013,38(03):553-560.
[45] 左银辉,邱楠生,常健,郝情情,李宗星,李佳蔚,李文正,谢彩虹.渤海湾盆地中、新生代岩石圈热结构研究.地质学报,2013,87(02):145-153.
[46]左银辉,邱楠生,李建平,郭永华,李翠翠,常健.渤海盆地辽东湾地区古近系烃源岩成熟演化模拟.现代地质,2009,23(04):746-754.
[47]杨梅华,左银辉*,段新国,李忠权,张佳珍,党录瑞,杨渊宇,曾健丞.四川盆地下寒武统筇竹寺组烃源岩灶演化及其对成藏的启示.地球科学,2023,48(02):582-595.
[48]兰镭,左银辉*,冯仁朋,蔡家兰,杨梅华,徐文礼,徐姁.川东地区大地热流及其对地热资源评价的启示.地球学报,2023,44(01):169-179.
[49]涂诗棋,左银辉*,周勇水,张超.东濮凹陷现今地温场及地热资源潜力.断块油气田,2023,30(01):100-106.
[50]Zhang C, Zhang H, Song R, Wang Z, Jiang G, Zuo Y, ... & Huang R. Simulation of thermo-hydro-mechanical coupled heat extraction process of geothermal reservoir under varied geological conditions with CO2 as working fluid. Journal of Hydrology, 2024, 629, 130549.
[51]Sun Z, Wang Y, Zuo Y, & Wang X. An Innovative Experimental Methodology for Testing Anisotropic Permeabilities of Formation Rocks. Geotechnical Testing Journal, 2024, 47(4), 1-17.
[52]Shi Y, Xu F, Song X, Wang G, Zuo Y, Li X, & Ji J. Rock damage evolution in the production process of the enhanced geothermal systems considering thermal-hydrological-mechanical and damage (THM-D). Energy, 2023, 285, 129421.
[53]Li X, Jiang G, Tang X, Zuo Y, Hu S, Zhang C, ... & Zheng L. Detecting geothermal anomalies using multi-temporal thermal infrared remote sensing data in the Damxung–Yangbajain Basin, Qinghai–Tibet Plateau. Remote Sensing, 2023, 15(18), 4473.
[54]Qiao Y, Li S, Yan K, Zuo Y, Zhang T, Tian L, Sun Y. Karst thermal reservoir tracer test and seepage characteristics analysis in Niutuozhen geothermal field in Xiong'an New Area. Frontiers in Earth Science, 2023, 11, 1132095.
[55]Hu J, Tian Y, Li Z, Jiang G, Zuo Y, Zhang C, ... , Hu S. GeothermoTool: An open-source software for basic geothermal calculations and plots. Geothermics, 2022, 106: 102551.
[56] Chen Zhipeng, Liao Yun, Liu Li, Chen Lei, Wang Pengtao, Zuo Yinhui, Ren Zhanli, Jia Lianqi, and Dang Wei. "Implication of Alkane Carbon and Hydrogen Isotopes for Genesis and Accumulation of Over-Mature Shale Gas: A Case Study of Longmaxi Formation Shale Gas in Upper Yangtze Area.", Frontiers in Earth Science, 2022, 10: 901989.
[57] Qiu Nansheng, Chang Jian, Zhu Chuangqing, Liu Wen, Zuo Yinhui, Xu Wei, Li Dan. Thermal regime of sedimentary basins in the Tarim, Upper Yangtze and North China Cratons, China. Earth-Science Reviews, 2022, 224:103884.
[58] Wang Yingchun, Gu Hongyu, Li Dan, Lyu Min, Lu Lianghua, Zuo Yinhui, Song Rongcai. Hydrochemical characteristics and genesis analysis of geothermal fluid in the Zhaxikang geothermal field in Cuona County, Southern Tibet. Environmental Earth Sciences, 2021, 80(11).
[59] Xu Guoqiang, Zhang Li, Pang Xiong, Chen Mei, Xu Shaohua, Liu Baojun, Zuo Yinhui, Luo Suaibing, Hu Lian, Chen Hui, Li Xiaogang, Wang Xiaoxue, Wu Changrong, Han Jianhui, Wu Shihu, Song Ganglian, Yan Yongxin, Wang Jian, Chen Jingtan, Liu Kai, Hua Ceixia, He Jian, Xian Wei, Hong Caijun, Wang Yeyong, Guo Wei, Wang Lei, Chen Gang, Han Penghui, Luo Wei, Yuan Ciming, Li Yuanhao. New method for the reconstruction of sedimentary systems including lithofacies, environments, and flow paths: A case study of the Xisha Trough Basin, South China Sea. Marine and Petroleum Geology, 2021, 133: 105268.
[60] Xu Wei, Huang Shaopeng, Zhang Jiong, Zuo Yinhui, Zhou Yongshui, Ke Tingting, Yu Ruyang, Li Yi. Geothermal gradient and heat flow of the Erlian Basin and adjacent areas, Northern China: Geodynamic implication. Geothermics, 2021, 92: 102049.
[61] Zhang Chao, Zhang Linyou, Wang Xiaoguang, Rao Song, Zuo Yinhui, Huang Ronghua, Gao Peng, Song Rongcai, Wang Zhuting. Effects of the spatial heterogeneity in reservoir parameters on the heat extraction performance forecast based on a 3D thermo-hydro-mechanical coupled model: A case study at the Zhacang geothermal field in the Guide basin, northeastern Tibetan plateau. Geothermics, 2021, 95: 102161.
[62] Sun Tengjiao, Luo Xiaoping, Qing Hairuo, Kou Xueling, Sheng Zhongming, Xu Guosheng, Zuo Yinhui. Characteristics and Natural Gas Origin of Middle–Late Triassic Marine Source Rocks of the Western Sichuan Depression, SW China. Acta geologica Sinica (Beijing), 2020, 94(2): 376-398.
[63]Li Shengyu, Tian Jingchun, Lin Xiaobing, Zuo Yinhui, Kang Hua, Yang Dongdong. Effect of alkaline diagenesis on sandstone reservoir quality: Insights from the Lower Cretaceous Erlian Basin, China. Energy Exploration & Exploitation, 2020, 38(2): 434-453.
[64] 张超,胡圣标,宋荣彩,左银辉,姜光政,雷玉德,张盛生,王朱亭.共和盆地干热岩地热资源的成因机制:来自岩石放射性生热率的约束.地球物理学报,2020,63(07):2697-2709.
[65]余如洋,黄少鹏,张炯,许威,柯婷婷,左银辉,周勇水.二连盆地白音查干凹陷和乌里雅斯太凹陷岩石热导率测试与分析.岩石学报,2020,36(02):621-636.
[66] Zhang Chao, Hu Shengbiao, Zhang Shengsheng, Li Shengtao, Zhang Linyou, Kong Yanlong, Zuo Yinhui, Song Rongcai, Jiang Guangzheng, Wang Zhuting. Radiogenic heat production variations in the Gonghe basin, northeastern Tibetan Plateau: Implications for the origin of high-temperature geothermal resources. Renewable energy, 2020, 148: 284-297.
[67] Zhang Jiong, Huang Shaopeng, Zuo Yinhui, Zhou Yongshui, Liu Zhi, Duan Wentao, Wu Xei. Terrestrial heat flow in the baiyinchagan sag, erlian Basin, northern China. Geothermics, 2020, 86: 101799.
[68] Lu Zhengquan, Zhai Gangyi, Zuo Yinhui, Wang Quanfeng, Fan Dongwen, Tang Shiqi, Hu Daodong, Liu Hui, Wang Ting, Zhu Youhhai, Xiao Rui. The geological process for gas hydrate formation in the Qilian Mountain permafrost. Petroleum science and technology, 2019, 37(13): 1566-1581.
[69] Wang Yeyong, Xu Guoqiang, Pang Xiong, Zuo Yinhui, Liu Baojun, Han Jianhui, Chen Mei, Guo Wei. A method for restoring sedimentary sequence original structural profiles: A case study of Miocene strata from the northern continental slope of the South China Sea. Marine and Petroleum Geology, 2019, 103: 294-305.
[70] Xu Wei, Huang Shaopeng, Zhang Jiong, Yu Ruyang, Zuo Yinhui, Zhou Yongshui, Chang Junhe. Present-day geothermal regime of the Uliastai Depression, Erlian Basin, North China. Energy Exploration & Exploitation, 2019, 37(2): 770-786.
[71] Hao Qingqing, Li Lintao, Zuo Yinhui, Chen Weijun, Wu Lei, Yi Junjie. Petroleum Distribution Characteristics of the Americas and the Exploration Prospect Analysis. Acta Geologica Sinica‐English Edition, 2018, 92(1): 378-393.
[72] Peng Bo, Li Zongxing, Li Guorong, Liu Chenglin, Zhu Shifa, Zhang Wang, Zuo Yinhui, Guo Yingchun, Wei Xiaojie. Multiple Dolomitization and Fluid Flow Events in the Precambrian Dengying Formation of Sichuan Basin, Southwestern China. Acta Geologica Sinica‐English Edition, 2018, 92(1): 311-332.
[73] Hao Qingqing, Zuo Yinhui, Li Lintao, Chen Weijun, Yi Junjie, Wu Lei. The Distribution of Petroleum Resources and Characteristics of Main Petroliferous Basins along the Silk Road Economic Belt and the 21st‐Century Maritime Silk Road. Acta Geologica Sinica‐English Edition, 2017, 91(4): 1457-1486.
[74] Peng Bo, Li Guorong, Li Zongxing, Liu Chenglin, Zuo Yinhui, Zhang Wen, Yuan Li, Zhao Sha, Yao Cheng. Discussion of multiple formation mechanisms of saddle dolomites—Comparison of geochemical data of Proterozoic–Paleozoic dolomites. Energy Exploration & Exploitation, 2017, 36(1): 66-96.
[75] Qiu Nansheng, Zuo Yinhui, Xu Wei, Chang Jian. Meso-Cenozoic thermal structure of the lithosphere in the Bohai Bay Basin, eastern North China Craton. Geological Journal, 2016, 51(5): 794-804.
[76] Qiu Nansheng, Zuo Yinhui, Xu Wei, Li Wenzheng, Chang Jian, Zhu Chuanqing. Meso-Cenozoic Lithosphere Thinning in the Eastern North China Craton: Evidence from Thermal History of the Bohai Bay Basin, North China. The Journal of Geology, 2016, 124(2): 195-219.
[77] 李佳蔚,李忠,邱楠生,左银辉,于靖波,刘嘉庆.塔里木盆地石炭-二叠纪异常热演化及其对深部构造-岩浆活动的指示.地球物理学报,2016,59(09):3318-3329.
[78] Qiu Nansheng, Xu Wei, Zuo Yinhui, Chang Jian. Meso-Cenozoic thermal regime in the Bohai Bay Basin, eastern North China Craton. International Geology Review, 2015, 57(3-4): 271-289.
[79] 李文正,焦亚先,左银辉,宋鑫颖,邱楠生.沉积速率对渤中坳陷大地热流的影响.地球物理学报,2014,57(05):1568-1577.
[80] Qiu Nansheng, Zuo Yinhui, Chang Jian, Li Wenzheng. Geothermal evidence of Meso-Cenozoic lithosphere thinning in the Jiyang sub-basin, Bohai Bay Basin, eastern North China Craton. Gondwana Research, 2014, 26(3-4): 1079-1092.
[81] 焦亚先,邱楠生,李文正,左银辉,阙永泉,刘芳龙.鄂尔多斯盆地中-新生代岩石圈厚度演化——来自地热学的证据.地球物理学报,2013,56(09):3051-3060.
[82] Qiu Nansheng, Chang Jian, Zuo Yinhui, Wang Jiyang, Li Huili. Thermal evolution and maturation of lower Paleozoic source rocks in the Tarim Basin, northwest China. AAPG Bulletin, 2012, 96(5): 789-821.
[83] 常健,邱楠生,左银辉,李翠翠.塔里木柯坪塔格地区构造抬升的新证据——来自(U-Th)/He年龄的约束.地球物理学报,2011,54(01):163-172.
[84] Qiu Nansheng, Zuo Yinhui, Zhou Xinhua, Li Cuicui. Geothermal regime of the Bohai Offshore Area, Bohai Bay Basin, North China. Energy Exploration & Exploitation, 2010, 28(5): 327-350.
[85] 殷振轩,左银辉,肖恩照,KHALID Latif.华北地台寒武系芙蓉统均一石沉积组构分析.东北石油大学学报,2022,46(03):45-53.
[86]罗健,苗如霖,罗小平,兰朝海,陈锦德,左银辉.攀枝花西区地下水和地热分布特征及成因分析.矿物岩石,2022,42(04):128-140.
[87]姜光政,王亚奇,胡杰,张超,王一波,左银辉,唐显春,马峰,胡圣标.中国中-高温地热资源勘探方向与优选靶区.科技导报,2022,40(20):76-82.
[88] 张超,胡圣标,黄荣华,王朱亭,秦松,左银辉,宋荣彩.干热岩地热资源热源机制研究现状及其对成因机制研究的启示.地球物理学进展,2022,1-16.
[89]郝情情,陈伟军,左银辉.非洲油气资源分布和主要含油气盆地石油地质特征.地质论评,2017,63(S1):125-126.
[90] 邱楠生,许威,左银辉,常健,刘春黎.渤海湾盆地中—新生代岩石圈热结构与热-流变学演化.地学前缘,2017,24(03):13-26.
[91]李雷,左银辉,唐书恒,张松航.东濮凹陷新生代热史研究.地质与勘探,2016,52(03):594-600.
[92]邱楠生,左银辉,常健,许威,朱传庆.中国东西部典型盆地中—新生代热体制对比.地学前缘,2015,22(01):157-168.
[93]郝情情,孙雨,左银辉.页岩气成藏条件及中国页岩气勘探风险.新疆石油地质,2013,34(03):272-276.
[94] 鹿坤,左银辉,梅冰,曹宏明,丁艳辉.东濮凹陷古沉积环境及其对有机质丰度的影响.地质与勘探,2013,49(03):589-594.
[95]邓已寻,左银辉,郝情情,李中超,李新军,高霞,李仁甫,徐深谋.查干凹陷现今地温场研究及其油气地质意义.断块油气田,2012,19(03):284-288.
◎专利
(1)Method for forming history of natural gas accumulation by using carbon isotopes by pyrolysis experiment, US 2021/0035659A1(授权美国发明专利)
(2)현재 지층의 온도를 기반으로 경질체 반사율을 결정하는 방법 및 시스템(一种基于现今地层温度确定镜质体反射率的方法及系统), 10-2022-0066855(授权韩国发明专利)
(3)评价盐岩沉积对盐下烃源岩热演化影响效应的方法和系统,ZL202311815958.1
(4)一种气源示踪综合性评价方法,ZL202211013305.7
(5)油型气中暗色泥岩与碳质泥岩组成含量测定方法,ZL202210998864.1
(6)一种多数据融合快速计算沉积盆地地热资源的方法,ZL202211040590.1
(7)一种计算断层破裂带裂缝张开空间分布的方法,ZL201410127001.2
(8)一种恢复沉积层序原形剖面的方法,ZL201410124609.X
(9)全视域冷热台,CN206074487U
(10)古热岩石圈厚度的确定方法及装置,Zl201510711349.0
(11)多尺度岩石切片图像管理系统的使用方法,ZL201510454151.9
(12)一种热史和生烃模拟约束下的生烃史研究方法,ZL201810857455.3
(13)一种利用热解实验碳同位素形成天然气成藏史的方法,ZL201910692709.5
(14)一种“热”岩石圈及各构造层的热流和温度计算软件,2023SR0027634
(15)一种利用碳同位素形成天然气成藏史的软件,2022SR0183733
(16)光伏新能源发电综合运维管理系统,2022SR0236414
◎行政职务及社会职务
(1)成都理工大学能源学院新能源工程系主任
(2)成都理工大学地热研究中心副主任
(3)能源学院学术委员会委员
(4)油气藏地质及开发工程国家重点实验室固定研究人员
(5)德阳市第三中学科学副校长
(6)《Petroleum Science》青年编委
(7)《海相油气地质》青年编委
(8)《断块油气田》青年编委
(9)《东北石油大学学报》特约编委
(10)《Frontiers in Earth Science》客座主编
(11) 中国发明学会理事
(12)中国地球物理协会地热专业委员会副秘书长
(13)中国技术监督情报协会地热产业工作委科技委员
(14)中国深层地热论坛学术委员
(15)中国能源研究会地热专业委员会委员
(16)中国岩石力学与工程学会低碳能源岩石力学与工程专业委员会第一届委员会委员
(17)中国能源学会专家委员会副主任
(18)第五、六届可再生能源与发展国际研讨会大会主席
(19)四川省地质学会石油地质专委会副秘书长
(20)四川省地热产业联盟副秘书长
(21)AAPG协会及国际地震学与地球内部物理学协会(IASPEI)会员
(22)美国化学协会会员
(23)中国可再生能源学会和中国地热联盟会员
(24)Arabian地质科学杂志会议科学委员会成员
(25)国家自然科学基金网评专家
(26)新能源科学与工程大学生优秀科技作品竞赛评审专家