当前位置: X-MOL首页全球导师 国内导师 › 吴磊

个人简介

教育及工作经历 2015.1至今,浙江大学地球科学学院,副教授,博导、求是青年学者 2013.12-2014.12,浙江大学地球科学系,讲师 2012.10 - 2013.10,美国加州大学戴维斯分校,访问学者 2011.11 - 2013.12,浙江大学,博士后 2011.7 - 2011.10,中海油上海分公司研究员 2006.9 - 2011.6,浙江大学地球科学系,构造地质,博士 2003.9 - 2006.3,浙江大学竺可桢学院,工程教育高级班 2003.7-2006.6,浙江大学地球科学系 ,地质学专业,理学学士 2002.10 - 2003.6,浙江大学计算机学院,工业设计专业,本科 教学与课程 《地学数据统计分析》,本科大三,主讲 《地质综合实习》(北祁连地区),本科生大三,主讲 《沉积学与岩相古地理》,本科大二,合讲 《沉积岩石学》,本科大二,合讲 科研 2020.1 - 2024.12,多相介质超重力相演变(青藏高原东缘岩石圈流变作用的浅部构造响应及地质灾害形成机制)(国家自然科学基金基础科学中心项目,参与) 2020.1 - 2023. 12,阿尔金断裂沿线受阻双弯曲的形成过程与机制:以茫崖地区为例(国家自然科学基金面上项目,主持) 2019.12-2021.12,柴达木盆地构造演化与差异性研究 (青海油田企业委托项目,主持) 2019.1- 2021.12, 环青藏高原地质数据库(浙江大学地球科学学院基金,主持) 2018.1 - 2021. 12, 先存岩石圈薄弱带对阿尔金断裂系新生代运动学过程的控制作用研究(国家自然科学基金面上项目,主持) 2017.9 - 2018. 12, 柴达木盆地燕山构造运动对油气成藏的控制(青海油田企业委托项目,主要参与) 2017.1 - 2020.12,鄂尔多斯盆地中新元古界沉积--构造演化研究(国家科技重大专项,主持) 2016.1 - 2020.12,中国西部前陆褶皱冲断带多阶段演化过程与构造变形(国家科技重大专项,主要参与) 2015.1 - 2017.12,柴达木盆地西部英雄岭背斜带的结构特征和变形机制模拟(国家自然科学基金青年基金,主持) 2014. 1 - 2017. 12,青藏高原北缘库木库里-祁曼塔格-柴达木西南地区的新生代差异隆升过程及机制 (国家自然科学基金项目,主要参与) 2012.5 - 2013. 11,阿尔金断裂中段EW 向与NEE 向隆起的热年代学特征及意义(中国博士后科学基金面上项目,主持) 2011.11 - 2012. 5,鄂尔多斯盆地中西部地区古生代构造演化特征及其对奥陶系沉积层序发育的影响(中石油课题,主要参与者) 2008.8-2010.1,柴达木盆地典型剖面解析(中石油课题,主要参与者) 2009.9-2010.5,全球含油气盆地构造研究(中石油课题,参与者) 2009.04-2009.07,四川盆地东缘构造特征及对油气聚集的影响(中石油课题,参与者) 奖励荣誉 1. 2017年浙江省自然科学二等奖(2/5) 2. 以第一作者撰写的论文获2014年《中国科学:地球科学》热点论文三等奖 3. 2020年,仲英青年学者 4. 2019年浙江石油学会先进个人 学术交流(讲座报告) 2019.9, Middle Miocene onset of rapid river incision along the central Altyn Tagh fault system (Northern Tibetan Plateau) in response to tectonic reorganization, GSA Meeting 2019 (Pheonix, USA), oral presentation 2019.3,地表过程与气候、构造变形相互作用的定量评估:以柴达木盆地风蚀作用为例,第二届地质学与地球动力学青年学术论坛(南京) 2018.12,Middle Miocene reorganization of the Altyn Tagh fault system, northern Tibetan Plateau (Poster),Washington DC 2018.11,四川盆地早古生代构造演化及机制,中石油杭州地质研究院 2018.11,阿尔金左旋走滑断裂系:深、浅层结构及演化,浙江大学地球科学学院 2018.3,柴达木盆地第四纪风蚀作用及其构造和气候意义,第一届地质学与地球动力学青年学术论坛(昆明) 2018.3, 青藏高原北缘阿尔金左旋走滑断裂系中中新世构造调整:来自柴达木盆地沉积和变形的证据, 西湖地学沙龙(杭州) 2017.11,Middle Miocene reorganization of the left-slip Altyn Tagh fault system, Northern Tibetan Plateau,ZJU-UIUC workshop (Hangzhou) 2017.10,青藏高原北缘新生代生长过程的时空规律:来自造山带剥露和盆地构造变形的约束,中国地球科学联合学术年会(北京) 2017.10,阿尔金断裂系中段中-新生代走滑历史重建,中国地球科学联合学术年会(北京) 2017.10,柴达木盆地西北缘新生代变形特征:对阿尔金断裂系走滑过程的启示,中国地球科学联合学术年会(北京) 2017.6,柴达木盆地第四纪风蚀作用,兰州大学 2017.6,阿尔金断裂系中-新生代走滑历史探讨,甘肃地震局地质所 2016.11,柴达木盆地第四纪风蚀作用及其对盆地构造变形和地貌的影响,西湖地学沙龙(杭州) 2016.10,柴达木盆地第四纪风蚀速率及其构造和气候意义,中国地球科学联合学术年会(北京) 2016.10,阿尔金断裂中段南侧中新生代隆升历史研究 --来自沉积学和热年代学的证据,中国地球科学联合学术年会(北京) 2016.7,现代盆地构造分析--发展前沿和面临挑战,浙江大学地球科学学院 2016.3,宇宙成因核素定年:14C和10Be,浙江大学地球科学学院 2015.10,阿尔金断裂中段15Ma左右的应变集中:来自高精度地震反射的证据,中国地球科学联合学术年会(北京) 2014.12,Alternating Wind and Fluvial Erosion during the Quaternary in the Qaidam Basin, NE Tibetan Plateau,AGU fall meeting 2014.10,青藏高原北缘祁曼塔格与柴达木盆地的构造耦合,中国地球科学联合学术年会(北京) 2013.12,盆地构造分析中的细节问题:定量化、负荷作用和地表过程--以柴达木盆地为例,浙江大学地球科学学院 2012.12, From basal shear to left-slip: two-stage evolution of the Cenozoic Altyn Tagh Fault evidenced by sedimentary and structural features in Qaidam Basin, NW China,AGU Fall Meeting 2012.11,The Cenozoic Altyn Tagh Fault:From Basal Shear to Left-slip, Brown bag talk in Department of Geology, University of California at Davis

研究领域

1. 盆地分析:重点关注中国中西部盆地(如柴达木盆地、鄂尔多斯盆地等)的构造变形与沉积演化特征,在此基础上分析其成盆机制和油气勘探意义,研究方法包括地震数据解释、野外地质考察、沉积学分析、构造物理和数值模拟等。 2. 造山带与盆地构造耦合:重点关注青藏高原北缘主要的造山带(如祁连山、阿尔金山、昆仑山等)与相邻沉积盆地之间的沉积、构造耦合分析,研究方法包括地震数据解释、野外地质考察、沉积分析、热年代学、物理和数值模拟等。 3. 地表作用与深部过程耦合分析:重点关注中国中西部地区的风蚀作用与深部构造变形之间的响应关系,研究方法包括宇宙成因核素定年、高精度地形分析、地震数据解释、数值模拟等。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

2020年 33.Huang,K.,Wu,Lei*,Zhang,J.,Zhang,Y.,Xiao,A.,Lin,X.,Wang,L.,&Chen,H.,2020.Structural coupling between the Qiman Tagh and the Qaidam Basin,northern Tibetan Plateau:a perspective from the Yingxiong Range by integrating field mapping,seismic imaging and analogue modelling.Tectonics.https://doi.org/10.1029/2020TC006287 32.Wang,Y.,Chen,L.,Yang,G.,Wu,Lei*,Xiao,A.*,Zhou,Y.,Sun,L.,Zhang,C.,Yang,S.,&Chen,H.,2020.The late Paleoproterozoic to Mesoproterozoic rift system in the Ordos Basin and its tectonic implications:Insight from analyses of Bouguer gravity anomalies.Precambrian Research,105964.https://doi.org/10.1016/j.precamres.2020.105964 31.Zhang,C.,Wu,Lei*,Chen,W.,Zhang,Y.,Xiao,A.,Zhang,J.,Chen,S.,and Chen,H.,2020.Early Cretaceous foreland-like Northeastern Qaidam Basin,Tibetan Plateau and its tectonic implications:Insights from sedimentary investigations,detrital zircon U–Pb analyses and seismic profiling.Palaeogeography,Palaeoclimatology,Palaeoecology 557,109912.DOI:10.1016/j.palaeo.2020.109912. 30.Zhang,Y.,Zhang,F.*,Cheng,X.*,Lin,X.*,Chen,H.*,Wyrwoll,K.H.,Wu,Lei*,Chen,J.,Krapež,B.,Lu,Y.,Ding,W.,An,K.,Chen,Y.,and Li,C.,2020.Delimiting the eastern extent of the Altyn Tagh Fault:Insights from structural analyses of seismic reflection profiles.Terra Nova.DOI:10.1111/ter.12484. 29.Chen,S.,Zhang,Y.,Wu,Lei*,Zhang,J.,Wang,L.,Xiao,A.and Shen,Y.,2020.Cenozoic structural deformation in the Yuqia-Jiulongshan Region,Northern Qaidam Basin.Petroleum Exploration and Development,47(1):114-123.(陈思远,张永庶,吴磊*,张军勇,汪立群,肖安成and沈亚,2020.柴达木盆地北缘鱼卡—九龙山地区新生代构造变形特征.石油勘探与开发,47(1):110-119.) 28.An,K.,Lin,X.*,Wu,Lei,Yang,R.,Chen,H.,Cheng,X.,Xia,Q.,Zhang,F.,Ding,W.,Gao,S.,Li,C.,and Zhang,Y.,2020.An immediate response to the Indian-Eurasian collision along the northeastern Tibetan Plateau:Evidence from apatite fission track analysis in the Kuantan Shan-Hei Shan.Tectonophysics,774,228278.DOI:https://doi.org/10.1016/j.tecto.2019.228278. 2019年 27.王彦博,张永庶,肖安成,汪立群,沈亚,吴磊*.2019.柴达木盆地北缘南八仙背斜深、浅断裂系统耦合分析.高校地质学报,25(5):741-747. 26.Wu,Lei*,V.Prush,X.Lin,A.Xiao,L.Zhang,N.Chen,R.Yang,and H.Chen,2019,Quantifying wind erosion during the late Quaternary in the Qaidam Basin,Central Asia,Geophysic Research Letters,46(12):6378-6387,doi:10.1029/2019GL082992. 25.Cao,T.,Xiao,A.*and Wu,Lei,2019.Stress and strain analysis of interlayer slip from fractures and minor folds by Terrestrial Laser Scanning data.Journal of Structural Geology,124:112-119. 24.Wu,Lei*,Lin,X.,Cowgill,E.,Xiao,A.,Cheng,X.,Chen,H.,Zhao,H.,Shen,Y.,and Yang,S.,2019.Middle Miocene reorganization of the Altyn Tagh fault system,northern Tibetan Plateau.GSA Bulletin,131(7-8):1157-1178.DOI:10.1130/B31875.1. 2018年 23.Chen,X.,Chen,H.,Lin,X.,Cheng,X.,Yang,R.,Ding,W.,Gong,J.,Wu,Lei,Zhang,F.,Chen,S.,Zhang,Y.,and Yan,J.,2018.Arcuate Pamir in the Paleogene?Insights from a review of stratigraphy and sedimentology of the basin fills in the foreland of NE Chinese Pamir,western Tarim Basin.Earth-Science Review,180,1-16. 22.An,K.,Lin,X.*,Wu,Lei,Cheng,X.,Chen,H.,Ding,W.,Zhang,F.,Gong,J.,Yang,R.,Zhu,K.,Li,C.,Zhang,Y.,and Gao,S.,2018.Reorganization of sediment dispersal in the Jiuxi Basin at~17 Ma and its implications for uplift of the NE Tibetan Plateau.Palaeogeography,Palaeoclimatology,Palaeoecology 511,558-576. 21.黄凯,陈力琦,肖安成,沈亚,and吴磊*,2018.柴达木盆地西北缘咸水泉背斜新生代变形特征及意义.高校地质学报24,761-768. 2017年 20.Long Yu,Ancheng Xiao,Lei Wu,Yuntao Tian,Xiaotian Pan,Martin Rittner.Provenance evolution of the Jurassic northern Qaidam Basin(West China)and its geological implications:evidence from detrital zircon geochronology.2017.International Journal of Earth Sciences,106(8):2713-2726 19.Cheng,X.,Chen,H.,Lin,X.,Wu,Lei&Gong,J.2017.Geometry and Kinematic Evolution of the Hotan-Tiklik Segment of the Western Kunlun Thrust Belt:Constrained by Structural Analyses and Apatite Fission Track Thermochronology.Journal of Geology,125,65-82. 18.Mao,L.,Xiao,A.,Zhang,H.,Wu,Z.,Liufu,Y.,Wu,Lei&Zhao,X.2017.Structural patterns of the late Mesozoic crustal detachment system in the Raoyang Sag,Bohai Bay Basin,eastern China:New insights from 3D seismic data.Marine and Petroleum Geology,84,215-224. 17.Cao,T.,Xiao,A.,Wu,Lei&Mao,L.2017.Automatic fracture detection based on Terrestrial Laser Scanning data:A new method and case study.Computers&Geosciences,106,209-216. 2016年 16.Yanyan Wei,Ancheng Xiao,Lei Wu*,Liguang Mao*,Haifeng Zhao,Ya Shen and Liqun Wang.Temporal and spatial patterns of the Cenozoic deformation across the Qaidam Basin,Northern Tibetan Plateau.Terra Nova.2016,doi:10.1111/ter.12234 15.Mao Liguang,Xiao Ancheng,Zhang Hongwei,Wu Zhankui,Wang Liqun,Shen Ya and Wu Lei.2016.Structural deformation pattern within the NW Qaidam Basin in the Cenozoic era and its tectonic implications.Tectonophysics,687:78-93 14.Zhao,H.,Wei,Y.,Shen,Y.,Xiao,A.*,Mao,L.,Wang,L.,Guan,J.,and Wu,Lei*,2016,Cenozoic tilting history of the south slope of the Altyn Tagh as revealed by seismic profiling:Implications for the kinematics of the Altyn Tagh fault bounding the northern margin of the Tibetan Plateau:Geosphere,v.12,p.884-899. 13.Xiaogan Cheng,Xiubin Lin,Lei Wu,et al.,2016.The Exhumation History of North Qaidam Thrust Belt Constrained by Apatite Fission Track Thermochronology:Implication for the Evolution of the Tibetan Plateau.Acta geologica Sinica-English Edition,90(3): 2014年 12.Xu,B.,Xiao,A.,Wu,L.,Mao,L.and Jia,D.,2014.3D seismic attributes for structural analysis in compressional context:a case study from western Sichuan Basin.Journal of Earth Science,25(6):985-990 11.Wu,L.,Xiao,A.and Yang,S.,2014.Impact of wind erosion on detecting active tectonics from geomorphic indexes in extremely arid areas:a case study from the Hero Range,Qaidam Basin,NW China.Geomorphology,224:39-54. 10.Wu,L.,A.Xiao,D.Ma,H.Li,B.Xu,Y.Shen,and L.Mao,2014,Cenozoic fault systems in southwest Qaidam Basin,northeastern Tibetan Plateau:geometry,temporal development and significance for hydrocarbon accumulation:AAPG Bulletin,v.98,p.1213-1234,doi:10.1306/11131313087.【PDF】(ZJU100) 2013年 9.吴磊,巩庆霖,覃素华.2013.阿尔金断裂新生代大规模走滑起始时间的厘定.岩石学报,29(8):2837-2850. 8.肖安成,吴磊,李洪革,汪立群.2013.阿尔金断裂新生代活动方式及其与柴达木盆地的耦合分析.岩石学报,29(8):2826-2836. 7.徐波,肖安成,吴磊,毛黎光,董有浦,贾丹,管俊亚.2013.阿尔金断裂新生代构造活动的两阶段性——来自地震属性分析的证据.岩石学报,29(8):2859-2866. 6.贾丹,肖安成,唐永,吴磊,沈亚,徐波,吴占奎.2013.利用三维地震属性分析识别阿尔金断裂新生代早期构造活动.岩石学报,29(8):2851-2858. 5.毛黎光,肖安成,王亮,吴磊,楼谦谦,沈亚,张宏伟.2013.柴达木盆地西北缘始新世晚期古隆起与阿尔金断裂的形成.岩石学报,29(8):2876-2882. 2012年 4.Wu,L.,Xiao,A.,Yang,S.,Wang,L.,Mao,L.,Wang,L.,Dong,Y.and Xu,B.,2012.Two-stage evolution of the Altyn Tagh Fault during the Cenozoic:new insight from provenance analysis of a geological section in NW Qaidam Basin,NW China.Terra Nova,v.24,p.387-395,doi:10.1111/j.1365-3121.2012.01077.x.[PDF] 3.Wu,L.,Xiao,A.C.,Wang,L.Q.,Mao,L.G.,Wang,L.,Dong,Y.P.and Xu,B.,2012.EW-trending uplifts along the southern side of the central segment of the Altyn Tagh Fault,NW China:insight into the rising mechanism of the Altyn Mountain during the Cenozoic.Science China Earth Science,55(6):926-939.(吴磊,肖安成,汪立群,毛黎光,王亮,董有浦and徐波,2012.阿尔金断裂中段南侧东西向隆起的形成及对阿尔金山新生代隆升机制的启示.中国科学:地球科学,42(12):1863-1876.) 2011年 2.Wu,L.,Xiao,A.C.,Wang,L.Q.,Shen,Z.Y.,Zhou,S.P.,Chen,Y.Z.,Wang,L.,Liu,D.and Guan,J.Y.,2011.Late Jurassic–Early Cretaceous Northern Qaidam Basin,NW China:implications for the Earliest Cretaceous intracontinental tectonism.Cretaceous Research,32(4):552-564. 1.吴磊,钱俊锋,肖安成,沈中延,王亮,魏国齐,张林.2011.扬子地块西侧米仓山基底卷入式冲断带的结构分析.岩石学报,27(3):681-688.

推荐链接
down
wechat
bug