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个人简介

主持和参与科研项目30余项,包括国家自然科学基金项目(主持3项),国家自然科学基金重点项目(参与2项),国家重大科研专项、国家重大研发计划项目、产业部门生产项目(主持2项;参与多项)。出版专著和教材4部,在中国科学-地球科学、JGR-Solid Earth、GSA Bulletin,Tectonophysics、Nature Geoscience、Geology等重要刊物上发表论文30余篇。曾获教育部自然科学二等奖、美国石油地质学家协会全球助研金。南海大洋钻探(IODP)367航次登船科学家。担任JGR-Solid Earth、Tectonophysics、Geophysical Research Letter、Tectonics、Nature and Science Review、Marine and Petroleum Geology、AAPG Bulletin、Basin Research、地质学报、海洋学报等国内外期刊审稿人。 教育背景 2003-2007年,中国地质大学(武汉),地质工科基地班,学士学位 2007-2012年,中国地质大学(武汉),工学博士学位(直博) 2011-2012年,瑞士苏黎世联邦理工学院(ETH Zurich),联合培养博士生 奖励 2018年,研究成果“南海北部大陆边缘盆地动力学及其资源效应”教育部自然科学二等奖 2014年,日本樱花科技计划全额资助在日本海洋-地球科技研究所进行大洋钻探登船科学家技能培养 2011年,Midland构造竞赛获得第二名(Runner-up),奖励机构英国Midland公司 2009年,获得美国石油地质学家协会(AAPG)全球助研金

研究领域

(1)油气勘探构造地质学 (2)构造过程多场多尺度定量分析和数值模拟 (3)陆洋转换与海底动力学 (4)盆地构造地貌学

近期论文

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Lei C, Ren J, Pei J, et al. 2021. Tectonics of the Offshore Red River Fault: Implication of the Junction of the Yinggehai and Qiongdongnan Basins. Sci China Earth Sci, 64: 1893-1908. Lei, C., Alves, T. M., Ren, J., Tong, C., 2020. Rift Structure and Sediment Infill of Hyperextended Continental Crust: Insights From 3D Seismic and Well Data (Xisha Trough, South China Sea). Journal of Geophysical Research: Solid Earth 125, e2019J-e18610J. Lei, C., Alves, T. M., Ren, J., Pang, X., Yang, L., Liu, J., 2019. Depositional architecture and structural evolution of a region immediately inboard of the locus of continental breakup (Liwan Sub-basin, South China Sea). Geol Soc Am Bull 131, 1059-1074. Lei, C., Ren, J. and Pang, X., 2019. Rift structures and its related unconformities on and adjacent the Dongsha Rise: insights into the nature of the high-velocity layer in the northern South China Sea. Marine Geophysical Research, 40(2): 99-110. Lei, C., Clift, P.D., Ren, J., Ogg, J. and Tong, C., 2019. A rapid shift in the sediment routing system of lower-upper Oligocene strata in the qiongdongnnan basin (Xisha Trough), Northwest south China Sea. Marine and Petroleum Geology, 104: 249-258. Lei, C., Ren, J., Pang, X., Chao, P. and Han, X., 2018. Continental rifting and sediment infill in the distal part of the northern South China Sea in the Western Pacific region: Challenge on the present-day models for the passive margins. Marine and Petroleum Geology, 93: 166-181. Lei, C. and Ren, J., 2016. Hyper-extended rift systems in the Xisha Trough: implications for extreme crustal thinning ahead of a propagating ocean of the South China Sea. Marine and Petroleum Geology, 77: 846-864. Lei, C., Ren, J., Sternai, P., Fox, M., Willett, S., Xie, X., Clift, P. D., Liao, J., Wang, Z., 2015. Structure and sediment budget of Yinggehai–Song Hong basin, South China Sea: Implications for Cenozoic tectonics and river basin reorganization in Southeast Asia. Tectonophysics 655, 177-190. Lei, C., Ren, J., Clift, P. D., Wang, Z., Li, X., Tong, C., 2011. The structure and formation of diapirs in the Yinggehai-Song Hong Basin, South China Sea. Mar Petrol Geol 28, 980-991. Zhu, W. and Lei, C., 2013. Refining the model of South China Sea's tectonic evolution: evidence from Yinggehai-Song Hong and Qiongdongnan Basins. Marine Geophysical Research, 34(3-4): 325-339. Zhang, Z., Daly, J. S., Yan, Y., Lei, C., Badenszki, E., Sun, X., Tian, Y., 2021. No connection between the Yangtze and Red rivers since the late Eocene. Mar Petrol Geol 129, 105115. Ren, J., Zhang, D., Tong, D., Huang, A., Wang, Y., Lei, C., Zuo, Q., Zhao, Y., He, W., Yang, L., 2014. Characterising the nature, evolution and origin of detachment fault in central depression belt, Qiongdongnan Basin of South China Sea: evidence from seismic reflection data. Acta Oceanol Sin 33, 118-126. Yang, L., Ren, J., McIntosh, K., Pang, X., Lei, C., Zhao, Y., 2018. The structure and evolution of deepwater basins in the distal margin of the northern South China Sea and their implications for the formation of the continental margin. Mar Petrol Geol, 234-254. Leyla, B., Ren, J., Zhang, J. and Lei, C., 2015. En Echelon Faults and Basin Structure in Huizhou Sag, South China Sea: Implications for the Tectonics of the SE Asia. Journal of Earth Science, 26(5): 690-699. 雷超, 任建业, 裴健翔, 刘博文, 左翔, 刘佳奥, 朱士国, 2022. 莺歌海-琼东南盆地结合部记录的红河断裂带向海延伸及其演化过程. 中国科学:地球科学 52, 81-97. 雷超, 任建业,张静, 2015, 南海构造变形分区及成盆过程: 地球科学 (中国地质大学学报), v. 4, p. 744-762. 雷超, 任建业,佟殿君, 2012, 南海北部洋陆转换带盆地发育动力学机制: 地球物理学报, v. 12, p. 1287-1299. 雷超, 任建业, 李绪深, 童传新, 尹新义,闵慧, 2011, 琼东南盆地深水区结构构造特征及油气勘探潜力: 石油勘探与开发, v. 5, p. 11-12. 雷超, 任建业, 裴健翔, 林海涛, 尹新义,佟殿君, 2011, 琼东南盆地深水区构造格局和幕式演化过程: 地球科学, v. 36, p. 151-162. 解习农, 林畅松, 李忠, 任建业, 姜涛, 姜在兴,雷超, 2017, 中国盆地动力学研究现状及展望: 沉积学报, p. 877-887. 任建业, 庞雄, 雷超, 袁立忠, 刘军,杨林龙, 2015, 被动陆缘洋陆转换带和岩石圈伸展破裂过程分析及其对南海陆缘深水盆地研究的启示: 地学前缘, v. 22, p. 102-114. 解习农, 任建业, 王振峰, 李绪深,雷超, 2015, 南海大陆边缘盆地构造演化差异性及其与南海扩张耦合关系: 地学前缘, p. 77-87. 任建业, 庞雄, 于鹏, 雷超,罗盼, 2018. 南海北部陆缘深水-超深水盆地成因机制分析. 地球物理学报, 61(12): 4901-4920. 解习农, 任建业,雷超, 2012, 盆地动力学研究综述及展望: 地质科技情报, v. 31, p. 76-84. 任建业,雷超, 2011, 莺歌海—琼东南盆地构造-地层格架及南海动力变形分区: 地球物理学报, v. 54, p. 3303-3314. 林海涛, 任建业, 雷超,闵慧, 2010, 琼东南盆地2号断层构造转换带及其对砂体分布的控制: 大地构造与成矿学, v. 34, p. 308-316. 尹新义, 任建业, 裴健翔,雷超, 2010, 琼东南盆地断裂活动性定量计算及其发育演化模式: 高校地质学报, v. 16, p. 388-396. 尹新义, 任建业,雷超, 2010, 琼东南盆地东部层间断层系及其形成机制分析: 大地构造与成矿学, v. 34, p. 299-307. 李林, 王彬, 雷超, 任建业, 张远泽, 高圆圆, 李丽, 刘博文, 2021. 西沙海域盆地构造格局及其差异演化过程分析. 地球科学 46, 3321-3337. 任建业, 罗盼, 高圆圆, 王后金, 雷超, 巢鹏, 2022. 南海西南次海盆地壳岩石圈伸展破裂过程的构造、沉积和岩浆作用记录. 地球科学 47, 2287-2302.

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