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中国地质大学(武汉)导师教师师资介绍简介-王军鹏

本站小编 Free考研考试/2021-07-31

姓 名 王军鹏 性 别 男
出生年月 1986年11月 籍贯
民 族 汉族 政治面貌 中共党员
最后学历 博士研究生毕业 最后学位
技术职称 副教授 导师类别 博导
行政职务 Email wangjp@cug.edu.cn
工作单位 中国地质大学(武汉) 邮政编码 430074
通讯地址 鲁磨路388号
单位电话
个人主页 http://grzy.cug.edu.cn/wangjunpeng/zh_CN/index/6934/list/index.htm


个人简介
主要从事华北克拉通前寒武纪大地构造演化、蛇绿岩、混杂岩和造山带演化研究。擅长结合野外构造解析(多期构造叠加的区分和构造运动学解析)、关键区域(露头)高精度大比例尺岩石-构造填图、地质年代学等多学科方法,综合研究古老造山带的形成和大地构造演化史。对赞皇地体进行了详细野外地质考察、构造地质解析、岩石地球化学和地质年代学的综合研究,对区域地质现状具有较深的认识。识别出一条新太古代的构造混杂岩带,厘定了混杂岩形成时代、弧陆碰撞时限和俯冲极性,提出华北克拉通中部造山带东缘早前寒武纪大地构造演化模式,为太古宙板块构造运动的存在和造山带早期演化提供了关键证据。以第一作者发表在国际SCI杂志GSA Bulletin,Precambrian Research,Tectonophysics和Lithos杂志15篇。获湖北省优秀博士学位论文、国家创新性实习实验竞赛特等奖、中国地质大学(武汉)“青年优秀人才”、“摇篮计划”、学术创新人才奖等荣誉称号。主持国家自然科学基金面上项目1项,青年基金1项,主持中国博士后科学基金面上资助和特别资助各1项,参与自然科学基金委重点项目1项、面上项目2项。

工作经历
2018.12-至今 中国地质大学(武汉)副教授
2015.07-2018.12中国地质大学(武汉)讲师
2015.07-2017.10 中国地质大学(武汉)师资博士后

教育经历
2014.09-2015.09 加州大学洛杉矶分校(UCLA)联合培养
2010.09-2015.06 中国地质大学(武汉)构造地质学博士
2006.09-2010.07 中国地质大学(武汉)地质学(基地班)理学学士

获奖、荣誉称号
湖北省优秀博士学位论文
湖北省自然科学二等奖(第三)

研究领域
前寒武纪地质学
造山带演化和构造解析
蛇绿岩;构造混杂岩
岩石大地构造
花岗岩类地球化学

科研项目
2018-2020:主持中国地质大学(武汉)中央高校“摇篮计划”
2018-2010:主要参加中国地质大学(武汉)“地学长江计划”核心项目群
2018-2021:主要参加国家自然科学基金重点项目
2017-2019:主持国家自然科学基金青年基金
2015-2018:主持中国博士后科学基金特别资助和面上项目各一项
2016-2017:主持中央高校新青年教师计划

发表论文
Wang J.P., Deng H., Li X.W., Ning W.B., Kusky T.M., Wang L., Polat A., and Deng H., 2019. Geology of a Neoarchean suture: Evidence from the Zunhua ophiolitic melange of the Eastern Hebei Province, North China Craton. Geological Society of America Bulletin, In press.
Wang J.P., Deng H., Kusky T.M., A. Polat, 2018. Comments on “Paleoproterozoic arc-continent collision in the North China Craton: Evidence from the Zanhuang Complex” by Li et al. (2016), Precambrian Research 286: 281–305, Precambrian Research, 304: 171-173.
Wang J.P., Kusky T.M., Wang L., Polat A., Deng H., Wang C., Wang S.J., 2017a. Structural relationship along a Neoarchean arc-continental collision zone, North China Craton. Geological Society of America Bulletin, 129: 59-75.
Wang J.P., Kusky T.M., Wang L., Polat A., Wang S.J., Deng H., Fu J.M., Fu D., 2017b. Petrogenesis and geochemistry of circa 2.5 Ga granitoids in the Zanhuang Massif: Implications for magmatic source and Neoarchean metamorphism of the North China Craton. Lithos, 268-271: 149-162.
Wang J.P., Deng H., Kusky T.M., Polat A., 2017c. Comments to “Paleoproterozoic meta-carbonates from the central segment of the Trans-North China Orogen: Zircon U-Pb geochronology, geochemistry, and carbon and oxygen isotopes” by Tang et al., 2016, Precambrian Research 284:4-29. Precambrian Research, 294: 344-349.
Wang J.P., Kusky T.M., Wang L., Polat A., Deng H., 2015. A Neoarchean subduction polarity reversal event in the North China Craton, Lithos, 220-223: 133-146.
Wang J.P., Kusky T.M., Polat A., Wang L., Deng H., Wang S.J.,2013. A late Archean tectonic mélange belt in the Central Orogenic Belt, North China Craton. Tectonophysics, 608: 929-946.
Wang J.P., Kusky T.M., Polat A., Wang L., et al., 2012. Sea-floor Metamorphism Recorded in Epidosites from the ca.1.0 Ga Miaowan Ophiolite, Huangling Anticline, China. Journal of Earth Science, 23(5): 696-704.
Kusky T.M., Ye M.H., Wang J.P., Wang L., 2010. Geological Evolution of Longhushan World Geopark in Relation to Global Tectonics. Journal of Earth Science, 21(1):1-18.
Wang L., Kusky T.M., Polat A. Wang S.J., Jiang X.F., Zong K.Q.,Wang J.P., Deng H., Fu J.M., 2014. Partial Melting of deeply subducted eclogite from the Sulu orogen in China. Nature Communication, 5:5604.
Kusky, T.M., Polat, A., Windley, B.F., Burke, K.C., Dewey, J.F., Kidd, W.S.F., Maruyama, S., Wang, J.P., Deng, H., Wang, Z.S., Wang, C., Fu, D., Li, X.W., Peng, H.T., 2016. Insights into the Tectonic Evolution of the North China Craton Through Comparative Tectonic Analysis: A Record of Outward Growth of Precambrian Continents. Earth ScienceReviews,162: 387-432.
Deng, H., Kusky, T.M., Polat, A.,Wang, J.P., et al., 2014. Geochronology, mantle source composition and geodynamic constraints on the origin of Neoarchean mafic dikes in the Zanhuang Complex, Central Orogneic Belt, North China Craton.Lithos 205, 359-378.
Deng H., Kusky T.M.*, Polat A., Wang L.,Wang J.P., Wang S.J., 2013. Geochemistry of Neoarchean mafic volcanic rocks and late mafic dikes in the Zanhuang Complex, Central Orogenic Belt, North China Craton: Implications for geodynamic setting. Lithos, 175-176:193-212.
Deng H., Kusky, T.M., Polat, A., Wang, C., Wang, L., Wang, J.P., 2016. A 2.5 Ga fore-arc subduction-accretion complex in the Dengfeng Granite-Greenstone Belt, Southern North China Craton. Precambrian Research 275: 241-264.
Rao, C.V. D., Santosh M., Purohit R.,Wang J.P.,J iang X.F., Kusky T.M., 2011. LA-ICP-MS U-Pb zircon age constraints on the Paleoproterozoic and Neoarchean history of the Sandmata Complex in Rajasthan within the NW Indian Plate.Journal of Asian EarthSciences, 42(3): 286-305.
Peng S.B., Kusky T.M., Jiang X.F., Wang L.,Wang J.P., Deng H., 2012. Geology, geochemistry, and geochronology of the Miaowan ophiolite, Yangtze craton: Implications forSouth China’s amalgamation history with the Rodinian supercontinent.Gondwana Research, 21: 577-594.
Jiang X.F., Peng S.B., Kusky T.M., Wang L.,Wang J.P., Deng H., 2012. Geological features and deformational ages of the basal thrust belt of the Miaowan ophiolite in the southern Huangling anticline and its tectonic implications.Journal of Earth Science, 23(5): 705-718.
Deng H., Kusky T.M., Wang L., Peng S.B., Jiang X.F.,Wang J.P., Wang S.J., 2012. Discovery of a Sheeted Dike Complex in the Northern Yangtze Craton and Its Implications for Craton Evolution. Journal of Earth Sciences, 23(5): 676-695.
Deng, H., Peng, S.B., Polat, A., Kusky, T.M., Jiang, X.F., Han, Q.S., Wang, L., Huang, Y.,Wang, J.P., Zeng, W., Hu, Z.X., 2017. Neoproterozoic IAT intrusion into Mesoproterozoic MOR Miaowan Ophiolite, Yangtze Craton: Evidence for evolving tectonic settings. Precambrian Research 289: 75-94.
Huang, B., Kusky, T.M., Wang, L., Polat, A., Fu, D., Windley, B., Deng, H., Wang, J.P., 2019, Structural relationships and kinematics of the Neoarchean Dengfeng forearc and accretionary complexes, southern North China craton, Geological Society of America Bulletin, In Press.

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