王信水

基本信息Personal Information

教授(特聘) 博士生导师 硕士生导师

性别 : 男

出生年月 : 1990年07月16日

毕业院校 : 中国科学院地质与地球物理研究所

学历 : 博士研究生

学位 : 理学博士学位

在职信息 : 在职

所在单位 : 地球科学学院

入职时间 : 2019年10月01日

学科 : 地球化学

办公地点 : 主楼206B

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个人简介Personal Profile

王信水,男,博士,1990年7月生,特任教授。2011年本科毕业于中南大学地质工程专业,2016年博士毕业于中科院地质与地球物理研究所矿物学、岩石学、矿床学专业。2016-2019年在中国科学院地质与地球物理研究所开展博士后研究。2019年10月起任我校地球科学学院特任教授。

主要围绕造山带演化与成矿这个科学主题,选取中亚造山带西南缘的天山造山带和华南的新元古代江南造山带为研究对象,对蛇绿岩、增生杂岩、岩浆岩等开展系统的野外填图、岩石学、年代学和地球化学等研究,旨在重建造山带构造演化历史并限定相关成矿作用的地球动力学背景。目前在Journal of Geophysical Research: Solid Earth、Precambrian Research、Lithos、Ore Geology Reviews等地学期刊以第一作者身份发表论文8篇。主持基金委青年基金、支持“率先行动”联合资助和博士后面上一等资助等项目各一项。


发表论文:

1       Wang, X.S., Klemd, R., Gao, J., Jiang, T., Li, J.L., Xue, S.C., 2018. Final assembly of the southwestern Central Asian Orogenic Belt as constrained by the evolution of the South Tianshan Orogen: Links with Gondwana and Pangea. Journal of Geophysical Research: Solid Earth 123, 7361–7388.

2       Wang, X.S., Gao, J., Klemd, R., Jiang, T., Li, J.L., Zhang, X., Tan, Z., Li, L., Zhu, Z., 2014. Geochemistry and geochronology of the Precambrian high-grade metamorphic complex in the Southern Central Tianshan ophiolitic mélange, NW China. Precambrian Research, 254, 129–148.

3       Wang, X.S., Gao, J., Klemd, R., Jiang, T., Zhai, Q.G., Xiao, X.C., 2015. Early Neoproterozoic multiple arc-back-arc system formation during subduction-accretion processes between the Yangtze and Cathaysia Blocks: New constraints from the supra-subduction zone NE Jiangxi ophiolite (South China). Lithos, 236, 90–105.

4       Wang, X.S., Gao, J., Klemd, R., Jiang, T., Li, J.L., Zhang, X., Xue, S.C., 2017. The Central Tianshan Block: A microcontinent with a Neoarchean- Paleoproterozoic basement in the southwestern Central Asian Orogenic Belt. Precambrian Research 295, 130–150.

5       Wang, X.S., Zhang, X., Gao, J., Li, J.L., Jiang, T., Xue, S.C., 2018. A slab break-off model for the submarine volcanic-hosted iron mineralization in the Chinese Western Tianshan: Insights from Paleozoic subduction-related to post-collisional magmatism. Ore Geology Reviews 92, 144–160.

6       Wang, X.S., Gao, J., Li, J.L., Jiang, T., Xue, S.C., 2018. Petrogenesis and Geodynamic Implications of late Jurassic Diorite Porphyry in the Neoproterozoic Ophiolitic Mélange of NE Jiangxi (South China). Acta Geologica Sinica (English edition), 92, 1008–1023.

7       Wang, X.S., Gao, J., Klemd, R., Jiang, T., Zhai, Q.G., Li, J.L., Liang, X.Q., 2019. From arc accretion to continental collision in the eastern Jiangnan Orogen: Evidence from two phases of S-type granites. Precambrian Research 321, 199-211.

8       王信水, 江拓, 高俊, 高强, 李继磊, 张喜, 2019. 中天山地块南缘两类混合岩的成因及其地质意义. 岩石学报 35, 3233-3261.

9       Gao, J., Wang, X.S., Klemd, R., Jiang, T., Qian, Q., Mu, L.X., Ma, Y.Z., 2015. Record of assembly and breakup of Rodinia in the Southwestern Altaids: evidence from Neoproterozoic magmatism in the Chinese Western Tianshan Orogen. Journal of Asian Earth Sciences, 113, 173–193.

10    Li, J.L., Schwarzenbach, E.M., John, T., Ague, J.J., Huang, F., Gao, J., Klemd, R., Whitehouse, M.J., Wang, X.S., 2020. Uncovering and quantifying the subduction zone sulfur cycle from the slab perspective. Nature Communications 11, 514.

11    Gao, J., Klemd, R., Zhu, M.T., Wang, X.S., Li, J.L., Wan, B., Xiao, W.J., Zeng, Q.D., Shen, P., Sun, J.G., Qin, K.Z., Campos, E., 2018. Large-scale porphyry-type mineralization in the Central Asian metallogenic domain: A review. Journal of Asian Earth Sciences 165, 7–36.

12    Li, J.L., Gao, J., Wang, X.S., 2016. A subduction channel model for exhumation of oceanic-type high-pressure to ultrahigh-pressure eclogite-facies metamorphic rocks in SW Tianshan, China. Science China Earth Sciences 59, 2339–2354.

13    高俊, 朱明田, 王信水, 洪涛, 李光明, 李继磊, 肖文交, 秦克章, 曾庆栋, 申萍, 徐兴旺, 张招崇, 周建波, 赖勇, 张晓晖, 孙景贵, 万博, 王博. 2019. 中亚成矿域斑岩大规模成矿特征: 大地构造背景、流体作用与成矿深部动力学机制. 地质学报 93(1), 24-71.

14    李继磊, 高俊, 王信水, 2017. 西南天山洋壳高压-超高压变质岩石的俯冲隧道折返机制. 中国科学: 地球科学 47, 23-29.

15    Li, J.L., John, T., Gao, J., Klemd, R., Wang, X.S., 2017. Subduction channel fluid–rock interaction and mass transfer: Constraints from a retrograde vein in blueschist (SW Tianshan, China). Chemical Geology 456, 28–42.

16    Tan, Z., Agard, P., Gao, J., John, T., Li, J.L., Jiang, T., Bayet, L., Wang, X.S., Zhang, X., 2017. P–T–time-isotopic evolution of coesite-bearing eclogites: Implications for exhumation processes in SW Tianshan. Lithos 278–281, 1–25.

17    Tan, Z., Gao, J., Jiang, T., Wang, X.S., Zhang, X., 2018. P–T–time (phengite Ar closure) history of spatially close-outcropping HP and UHP oceanic eclogites (southwestern Tianshan): implication for a potential deep juxtaposing process during exhumation? International Geology Review, 1-24.

18    Hong, T., Klemd, R., Gao, J., Xiang, P., Xu, X.W., You, J., Wang, X.S., Wu, C., Li, H., Ke, Q., 2017. The tectonic evolution of the Irtysh tectonic belt: New zircon U–Pb ages of arc-related and collisional granitoids in the Kalaxiangar tectonic belt, NW China. Lithos 272–273, 46–68.

19    Li, J.L., Gao, J., Klemd, R., John, T., Wang, X.S., 2016. Redox processes in subducting oceanic crust recorded by sulfide-bearing high-pressure rocks and veins (SW Tianshan, China). Contributions to Mineralogy and Petrology, 171, 72.

20    Zhang, X., Klemd, R., Gao, J., Dong, L.H., Wang, X.S., Haase, K., Jiang, T., Qian, Q., 2015. Metallogenesis of the Zhibo and Chagangnuoer volcanic iron oxide deposits in the Awulale Iron Metallogenic Belt, Western Tianshan orogen, China. Journal of Asian Earth Sciences, 113, 151–172.

21    Jiang, T., Gao, J., Klemd, R., Qian, Q., Zhang, X., Wang, X.S., Tan, Z., Zhu, Z., 2015. Genetically and geochronologically contrasting plagiogranites in South Central Tianshan ophiolitic mélanges: implications for the breakup of Rodinia and subduction zone processes. Journal of Asian Earth Sciences, 113, 266–281.

22    Jiang, T., Gao, J., Klemd, R., Qian, Q., Zhang, X., Xiong, X.M., Wang, X.S., Tan, Z., Chen, B.X., 2014. Paleozoic ophiolitic mélanges from the South Tianshan Orogen, NW China: Geological, geochemical and geochronological implications for the geodynamic setting. Tectonophysics 612, 106–127.

23    Xue, S.C., Qin, K.Z., Li, C.S., Tang, D.M., Wang, Q.F., Wang, X.S., 2018. Permian bimodal magmatism in the southern margin of the Central Asian Orogenic Belt, Beishan, Xinjiang, NW China: Petrogenesis and implication for post-subduction crustal growth. Lithos 314–315, 617–629.

24    Zang, Z.J., Dong, L.L., Liu, W., Zhao, H., Wang, X.S., Cai, K.D., Wan, B., 2019. Garnet U-Pb and O isotopic determinations reveal a shear-zone induced hydrothermal system. Scientific Reports 9, 10382.

25    Tan, Z., Agard, P., Monié, P., Gao, J., John, T., Bayet, L., Jiang, T., Wang, X.S., Hong, T., Wan, B., Caron, B., 2019. Architecture and P-T-deformation-time evolution of the Chinese SW-Tianshan HP/UHP complex: Implications for subduction dynamics. Earth-Science Reviews 197, 102894.


  • 教育经历Education Background
  • 工作经历Work Experience
  • 研究方向Research Focus
  • 社会兼职Social Affiliations
  • 1. 造山带的构造演化
    2. 岩浆演化与成矿作用