
姓名:唐文斌
职称:研究员,硕导
电子邮箱:wbtang@cdut.edu.cn;tangwenbin100@163.com
研究室:古地理研究室
个人简介:唐文斌,男,汉族,1990年4月生,浙江嘉兴人,硕士生导师,四川省“天府峨眉计划”青年人才计划入选者。2009-2016年在成都理工大学攻读学士和硕士学位,2019-2020年受国家留学基金委资助,在加拿大圣玛丽大学完成博士生联合培养,于2021年7月取得北京大学博士学位。2022年3月以珠峰人才计划B类入职沉积地质研究院,长期从事沉积学、构造地质学、沉积地球化学及石油地质学相关理论研究、技术应用和教学工作。主持国家自然科学基金面上项目1项,国家自然科学青年基金项目1项,横向课题5项及科研启动基金1项,参与国家自然科学基金重点项目1项,国家科技重大专项1项,面上项目1项。以第一作者或者通讯作者分别在《Sedimentology》、《Basin Research》、《Gondwana Research》、《Sedimentary Geology》、《Marine and Petroleum Geology》、《Journal of Asian Earth Sciences》等国内外著名期刊上发表SCI论文20余篇。
研究兴趣:
(1)陆相沉积盆地“源-汇”系统的理论体系研究
(2)聚焦软沉积物变形构造,应用于不同沉积盆地的古地震、盆地构造和页岩油储集性研究
(3)晚古生代冰期的沉积响应
(4)陆相页岩油“甜点”综合地质评价
ResearchGate::https://www.researchgate.net/profile/Wenbin-Tang-2
Google Scholar:https://scholar.google.com/citations?user=oJkU2VEAAAAJ&hl=en
学历和工作背景:
2022.03-至今,成都理工大学沉积地质研究院,研究员(珠峰人才计划B类)
2016.09-2021.07,北京大学,博士(导师:郭召杰教授,张元元研究员)
2019.10-2020.11,加拿大圣玛丽大学,CSC联培(导师:Pe-Piper Georgia教授)
2013.09-2016.06,成都理工大学沉积地质研究院,硕士(导师:陈洪德教授)
2009.09-2013.06,成都理工大学能源学院,学士(导师:刘自亮教授)
主要研究领域:沉积学、构造地质学、沉积地球化学和石油地质学
获得的荣誉:2023年度中国石油和化工自动化应用协会科技进步一等奖(R8)
主持/参与科研项目:
[9]国家自然科学基金委,面上基金项目,4247022207,玛湖凹陷下二叠统风城组碱湖沉积序列的化学风化记录研究,2025.01-2028.12,在研,主持
[8]中国石油天然气股份有限公司西南油气田分公司勘探开发研究院委托项目“川中地区侏罗系页岩甜点地质评价实验分析”,2023.09-2024.10,在研,主持
[7]中国石油天然气股份有限公司勘探开发研究院委托项目“四川盆地中侏罗统凉高山组物源体系划分与对比”,2023.08-2023.12,在研,主持
[6]中国石油天然气股份有限公司西南油气田分公司勘探开发研究院委托项目“川中地区侏罗系页岩油甜点地质综合评价”,2022.12-2023.08,在研,主持
[5]国家自然科学基金委,面上项目,42272132,上扬子二叠纪乌拉尔-瓜德鲁普之交碳酸盐岩的大陆风化记录及对晚古生代P3冰期的约束,2023.01-2025.12,在研,参与
[4]国家自然科学基金委,青年科学基金项目,42202188,玛湖凹陷下二叠统风城组软沉积物变形构造对页岩油储集性及运聚过程的控制机制,2023.01-2025.12,在研,主持
[3]国家自然科学基金委,重大项目,42090021,中国中西部典型盆地陆相页岩油形成演化与富集机理,2020.12-至今,在研,参与
[2]国家自然科学基金委员会,重点项目,41930213,新生代柴达木盆地构造及其对青藏高原东北缘生长过程的启示,2020.01-至今,在研,参与
[1]国家科技重大专项,2017ZX05008-001-002,大型油气田及煤层气开发”之“含油气盆地深层构造及其控油气作用,2017.09-2020.09,结题,参与
代表性文章:
[21] Yu Kai; Deng Qingyuan; Tang Botao; Zhu Deyu; Yang Xiran; Feng Yan; Yang Xi; Qin Chunyu; Jia Bao;Tang Wenbin*. Geoscience-engineering-integration for Efficient Development of Tight Sandstone Gas Reservoirs-case of Sha II Member in NW Sichuan Basin. Doklady Earth Sciences, 2025, 522,1-28.
[20] Hong Haitao; Qin Chunyu; Zhang Shaomin; Zhang Zhijie; Wang Xiaojuan; Li Na; Cheng Dawei;Tang Wenbin*. Early-Middle Jurassic source to sink evolution and its tectonic significance in northeastern Sichuan Basin.Frontiers in Earth Science, 2023, https://doi.org/10.3389/feart.2023.1231694.
[19]Tang Wenbin; Pe-Piper Georgia; Piper J.W. David; Chen Anqing; Hou Mingcai; Guo Zhaojie; Zhang Yuanyuan. Architecture of lacustrine deposits in response to early Carboniferous rifting and Gondwanan glaciation, Nova Scotia, SE Canada.Sedimentology,2023. https://doi.org/10.1111/sed.13140
[18]Tang Wenbin; Pan Songqi; Pe-Piper Georgia; Piper J.W. David; Zhang Yuanyuan; Guo Zhaojie; Tang Yong; Tang Wenqiang. Late Permian-Early Triassic intracontinental tectonic inversion in the Junggar Basin, NW China: New insights from detrital zircon geochronology and seismic reflection data.Basin Research,2023.https://doi.org/10.1111/bre.12824
[17]Bai Rong; Zhang Shaomin; Hong Haitao; Qin Chunyu; Cai Changhong; Kong Xiangye; Li Na; Lei Dong; Lei Xin; Wang Changyong; Jin Tao; Gao Jinliang;Tang Wenbin. Source-reservoir rock assemblages and hydrocarbon accumulation models in the Middle-Lower Jurassic of eastern Sichuan Basin, China.Frontiers in Earth Science, 2023, 11, 1207994
[16]Tang Wenbin; Song Yong; He Wenjun; Tang Yong; Guo Xuguang; Pe-Piper Georgia; Piper J.W. David; Guo Zhaojie; Zhang Yuanyuan; Li Wei; Chen Anqing. Petrochemical and geochronological data of Permian-Lower Triassic clastic sedimentary rocks in the northwestern Junggar basin, NW China: Implications for provenance, tectonism and paleoclimate.Marine and Petroleum Geology,2023, 148, 106027.
[15]唐文斌,尤新才,张元元,李卉,郭召杰,何文军,李威,唐勇,雷冬.玛湖凹陷下二叠统风城组碱湖沉积时限的厘定.沉积学报,2023, https://doi.org/10.14027/j.issn.1000-0550.2022.131
[14] Zhi Dongming; Liu Mingxin; Chen Xinwei; Nuru Said;Tang Wenbin; Hu Chenghui; Qin Zhijun; Zou Hao; Gong Deyu. Stratigraphic Characteristics and Sediment-Filling Process of the Early Permian Fengcheng Formation in the Northwestern Margin of the Junggar Basin, Northwest China.Frontiers in Earth Science, 2022, 10: 945563.
[13]Tang Wenbin; Wang Xiaojun; Guo Xuguang; He Wenjun; Tang Yong; Pe-Piper Georgia; Piper, J.W. David; Guo Zhaojie; Cheng Feng; Li Wei; Zhang Yuanyuan. Late Carboniferous back-arc rifting in Junggar Basin, NW China: implication for the rapid continental growth in accretionary orogens.International Journal of Earth Sciences,2022, 111, 2493-2518.
[12]Tang Wenbin; Song Yong; He Wenjun; Tang Yong; Guo Xuguang; Pe-Piper Georgia; Piper J.W. David; Li Wei; Guo Zhaojie; Zhang Yuanyuan. Source-to-sink evolution of syn-rift alkaline lake sediments in the Lower Permian Fengcheng Formation, Junggar Basin, NW China: Evidence from petrology, detrital zircon geochronology and geochemistry.Journal of Asian Earth Sciences,2021, 232: 105049.
[11]张元元,曾宇轲,唐文斌.准噶尔盆地西北缘二叠纪原型盆地分析.石油科学通报,2021,6(03),333-343.
[10]Tang Wenbin; Zhang Yuanyuan; Pe-Piper Georgia; Piper J.W. David; Guo Zhaojie; Li Wei. Permian rifting processes in the NW Junggar Basin, China: Implications for the post-accretionary successor basins.Gondwana Research,2021, 98: 107-124.
[9]Tang Wenbin; Zhang Yuanyuan; Pe-Piper Georgia; Piper Piper, J.W. David; Guo Zhaojie; Li Wei. Permian to early Triassic tectono-sedimentary evolution of the Mahu sag, Junggar Basin, western China: sedimentological implication of the transition from rifting to tectonic inversion.Marine and Petroleum Geology,2021, 123: 104730.
[8]Tang Wenbin; Zhang Yuanyuan; Pe-Piper Georgia; Piper J.W. David; Guo Zhaojie; Li Wei. Soft-sediment deformation structures in alkaline lake deposits of Lower Permian Fengcheng Formation, Junggar Basin, NW China: Implications for syn-sedimentary tectonic activity.Sedimentary Geology,2020, 406: 105719.
[7]李威,张元元,倪敏婕,唐文斌.准噶尔盆地玛湖凹陷下二叠统古老碱湖成因探究:来自全球碱湖沉积的启示.地质学报,2020,94(06):1839-1852.
[6] Liang Yuanyuan; Zhang Yuanyuan; Chen Shi; Guo Zhaojie;Tang Wenbin. Controls of a strike-slip fault system on the tectonic inversion of the Mahu depression at the northwestern margin of the Junggar Basin, NW China.Journal of Asian Earth Sciences,2020, 198: 104229.
[5]张元元,李威,唐文斌.玛湖凹陷风城组碱湖烃源岩发育的构造背景和形成环境.新疆石油地质,2018,39(01),48-54.
[4]唐文斌,徐胜林,陈洪德,陈安清,梁杰,肖冬生.吐哈盆地台北凹陷中部地区喀拉扎组一段震积岩的发现及其地质意义.石油与天然气地质,2017,38(02):345-354.
[3]陈安清,王立成,姬广建,曹珂,徐胜林,唐文斌.川东北早-中三叠世聚盐环境及海水浓缩成钾模式.岩石学报,2015,31(09):2757-2769.
[2]雷涛,唐文斌,徐胜林,陈安清,林良彪.川北地区千佛崖组物源及岩相古地理特征.科学技术与工程,2015,15(16): 149-155.
[1]唐文斌,雷涛,徐胜林,陈安清.吐哈盆地胜北-红连地区喀拉扎组砂组储层特征及成岩作用研究.科学技术与工程,2015,15(18):40-49.
学术兼职:AGU会员,《GSA Bulletin》、《Basin Research》、《Catena》、《Sedimentary Geology》、《Palaeogeography, Palaeoclimatology, Palaeoecology》、《Journal of Palaeogeography》、《Journal of Asian Earth Sciences》、《Geochemistry》等期刊审稿人,《Frontiers in Earth Science》客座副主编。
发明专利:
[2]唐文斌,页岩含油量检测装置,2024.
[1]唐文斌,页岩裂纹分布检测装置,2024.
参加学术会议:
[8]AGER论坛,2023.11,四川成都,线上口头报告
[7]第七届全国沉积学大学,2023.04,四川成都,口头报告。
[6]第三届构造地质与地球动力学青年学术论坛,2020. 09,浙江杭州,口头报告.
[5] AGS(Atlantic Geoscience Society Abstracts: 46th Annual Colloquium & General Meeting),2020. 01,加拿大哈利法克斯,Poster.
[4] AGU(美国地球物理联合会)Fall Meeting, 2019. 12,美国旧金山,Poster.
[3]第二届构造地质与地球动力学青年学术论坛,2019. 04,江苏南京,口头报告.
[2]中国地球科学联合学术年会,2018. 10,中国北京,口头报告.
[1]第五届全国沉积学大会,2015. 10,湖北武汉,Poster.
欢迎对沉积学、构造地质学、石油地质学和沉积地球化学方向感兴趣的同学报考。