谭平川副研究员

出生年月:1987年 10 月

学位学历:博士研究生

研究方向:海洋地质与地球物理

电       话: 0571-81963153

教育背景及工作经历

2019.08~至今 自然资源部第二海洋研究所 副研究员
2023.08-2023.11 德国地球科学研究中心(GFZ-Potsdam)访问学者
2014.11-2018.10 挪威奥斯陆大学(University of Oslo) 海洋地质与地球物理 博士
2017.07-2017.09 北极斯瓦尔巴岛大学 (UNIS) 海洋地质与地球物理 访问博士
2016.01-2016.08 德国地球科学研究中心(GFZ-Potsdam)三维重力模拟 访问博士
2013.06-2013.08 挪威国家石油公司(Equinor)石油地质 暑假实习生
2012.08-2014.06 挪威奥斯陆大学(University of Oslo) 石油地质与地球物理 硕士
2006.09-2010.06 成都理工大学  资源勘探工程 本科


研究领域:通过多道地震,海底地震仪,重力,磁力,数值模拟等方法探讨大洋岩石圈的形成机制及其演化史,主持多项国家自然科学基金和人才基金项目。担任Earth Science Reviews, Geophysical Research Letters, Journal of Geophysical Research: Solid Earth , Tectonophysics等期刊和基金审稿人

科研项目及荣誉奖励

 主持项目:
(1)国家海洋局南海调查中心横向项目 “北极典型海域海底沉积物与地形地貌底质物理数据分析” 2024.06-2025.12 ,CG2024012,主持,在研
(2)国家自然科学面上基金项目 “扩张速率是否仍然是超慢速扩张洋中脊岩石圈结构变化的主控因素:以 北冰洋加克洋中脊为例”,42376065,2024.01-2027.12, 主持,在研
(3)自然资源部第二海洋研究所所基本项目基金 “冰岛地幔柱与洋中脊相互作用机制研究” 2023.01-2024.12,SZ2302, 主持,在研
(4)浙江省钱江人才计划项目 “通过岩石圈三维地热模拟探讨浙江省地热资源 分布” 2021.01-2022.12 ,QJD2002033,主持,结题
 (5)国家自然科学青年基金项目“转换断层对洋中脊和地幔柱相互作用的影响:以冰岛以北的西扬马延转换断层为例” ,4006072, 2021.01-2023.12,主持,结题
 (6)自然资源部第二海洋研究所“海洋骨干人才计划”基金 “冰岛地幔柱与西扬马延转换断层的相互作用”,SZ2004, 2019.09-2022.09, 主持,结题


参与项目:
 (1)国家重点研发计划 “太平洋-欧亚-印度多板块汇聚对地球宜居性的影响” 2023YFF0803400, 2023.12-2028.11,参与,在研
 (2)国家自然科学重点项目 “基于冰下海底深部探测的北极加克洋中脊地壳增生的动力学机制”, 42330308, 2024.01-2018.12, 参与,在研

荣誉:
(1)自然资源部第二海洋研究所青年拔尖B                 2023
(2)浙江省省级人才                                                       2022
(3)浙江省钱江人才                                                       2021
(4)自然资源部第二海洋研究所海洋骨干人才            2019
(5)德国地球科学研究中心PhD day比赛第一名          2016
(6)挪威奥斯陆大学博士全额奖学金                            2014

代表性科研成果(论文专著、专利及软件)

Nature, NSR, JGR-solid earth, G-cube, Tectonophysics , MPG等国际学术期刊发表论文19篇。第一作者/通讯作者论文8篇,其中5篇论文发表在Nature Index期刊。

第一作者和通讯作者:
Tan, P*., Breivik, A. J., Ding, W., Zhang, T., Niu, X., & Li, J*. (2024). Unexpectedly High Magma Productivity Inferred From Crustal Roughness and Residual Bathymetry on the Eastern Part of the Ultra‐Slow Spreading Gakkel Ridge Since ∼45 Ma, Eurasian Basin, Arctic Ocean. Journal of Geophysical Research: Solid Earth, 129, e2023JB028470. https://doi.org/10.1029/2023JB028470

Tan, P*., & Breivik, A. J. (2022). Formation of the Igneous Logi Ridge, NE Atlantic. Journal of Geophysical Research: Solid Earth, 127(3). https://doi.org/10.1029/2021JB023891

Tan, P*., Ding, W., & Li, J. (2022). Exhumation history of the Hengchun Ridge and its implications for Taiwan orogenic processes. Frontiers in Earth Science, 10, 941040. https://doi.org/10.3389/feart.2022.941040
Niu, X., Tan, P*., Ding, W*., Wang, W., Wei, Y., Wei, X., et al. (2022). Oceanic crustal structure and tectonic origin of the southern Kyushu-Palau Ridge in the Philippine Sea. Acta Oceanologica Sinica, 41(1), 39–49. https://doi.org/10.1007/s13131-021-1978-9

Tan, P*., Johan Breivik, A., & Mjelde, R. (2019). Dynamic Topography Development North of Iceland from Subaerial Exposure of the Igneous Logi Ridge, NE Atlantic. Journal of Geophysical Research: Solid Earth, 124(11), 10799–10822. https://doi.org/10.1029/2019JB017603
Tan, P*., Sippel, J., Breivik, A. J., Meeßen, C., & Scheck‐Wenderoth, M. (2018). Lithospheric Control on Asthenospheric Flow From the Iceland Plume: 3‐D Density Modeling of the Jan Mayen‐East Greenland Region, NE Atlantic. Journal of Geophysical Research: Solid Earth, 123(10), 9223–9248. https://doi.org/10.1029/2018JB015634
Tan, P*., Breivik, A. J., Trønnes, R. G., Mjelde, R., Azuma, R., & Eide, S. (2017). Crustal structure and origin of the Eggvin Bank west of Jan Mayen, NE Atlantic. Journal of Geophysical Research: Solid Earth, 122(1), 43–62. https://doi.org/10.1002/2016JB013495
Tan, P*., Oberhardt, N., Dypvik, H., Riber, L., & Ferrell, R. E. (2017b). Weathering profiles and clay mineralogical developments, Bornholm, Denmark. Marine and Petroleum Geology, 80, 32–48. https://doi.org/10.1016/j.marpetgeo.2016.11.017

合作作者:

Zhang, T., Li, J., Niu, X., Ding, W., Fang, Y., Lin, J., Wang, Y., Zha, C. Tan, P., …& Morgan, J. (2024). Highly variable magmatic accretion at the ultraslow-spreading Gakkel Ridge. Nature. https://doi.org/10.1038/s41586-024-07831-0

Gong, W., Ruan, A., Niu, X., Wang, Z., Tan, P., Wei, X., ... & Li, J. (2024). Preliminary Results of the Seismicity Monitoring Experiment around the 2019 M w5. 4 Earthquake Epicenter in the Central South China Sea Basin. Journal of Earth Science, 35(1), 212-220.

He, E., Zhao, M., Huang, H., Li, Y., Tan, P., Qiu, X., ... & Liu, K. (2023). Seismic structures of Zhenbei and Huangyan seamounts and their postspreading volcanic evolution. Tectonophysics, 869, 230102.

Cheng, L., Fang, Y., Niu, X., Li, T., Dong, C., Zhao, Y., Hu, H., Kong, F., Tan, P., …& Du, X. (2023). Lithospheric velocity structure of South China Sea basin from ocean bottom seismometer ambient noise tomography. Tectonophysics, 864, 230008.

Hao, W., Tan, P., & Ruan, A. (2023). Discussion on the interaction between hot spots and mid-ocean ridge from the axial morphology and the variation of subsidence rate on both sides of the Southwest Indian Ridge. Acta Seismologica Sinica, 45(3), 455-470.

Kong, F., Gao, R., Gao, S. S., Liu, K. H., Ding, W., Niu, X., Ruan, A., Tan, P. …& Li, J. (2023). Mantle flow underneath the South China Sea revealed by seismic anisotropy. National Science Review, 10(10), nwad176. https://doi.org/10.1093/nsr/nwad176

Zhang, J., Li, J., Ding, W., Ruan, A., Wei, X., & Tan, P. (2023). Crustal structure and magmatism of the southern Kyushu-Palau ridge. Tectonophysics, 858, 229862. https://doi.org/10.1016/j.tecto.2023.229862

Ding, W., Niu, X., Zhang, T., Chen, S., Liu, S., Tan, P., …& Li, J. (2022). Submarine wide-angle seismic experiments in the High Arctic: The JASMInE Expedition in the slowest spreading Gakkel Ridge. Geosystems and Geoenvironment, 1(3), 100076. https://doi.org/10.1016/j.geogeo.2022.100076

Wei, X., Ding, W., Christeson, G. L., Li, J., Ruan, A., Niu, X., Zhang, J., Zhang, Y., Tan, P., Wu, Z., Wang, A., & Ding, H. (2021). Mesozoic suture zone in the East China Sea: Evidence from wide-angle seismic profiles. Tectonophysics, 820, 229116. https://doi.org/10.1016/j.tecto.2021.229116

Zhang, J., Li, J., Ruan, A., Ding, W., Niu, X., Wang, W., Tan, P., … & Zhou Z. (2020). Seismic Structure of a Postspreading Seamount Emplaced on the Fossil Spreading Center in the Southwest Subbasin of the South China Sea. Journal of Geophysical Research: Solid Earth, 125(10). https://doi.org/10.1029/2020JB019827

Zhao, M., He, E., Sibuet, J.-C., Sun, L., Qiu, X., Tan, P., & Wang, J. (2018). Postseafloor Spreading Volcanism in the Central East South China Sea and Its Formation Through an Extremely Thin Oceanic Crust. Geochemistry, Geophysics, Geosystems, 19(3), 621–641. https://doi.org/10.1002/2017GC007034