• 姓名: 刘亮
  • 性别: 男
  • 职务: 
  • 职称: 研究员
  • 学历: 博士研究生
  • 电子邮件: liangliu@gig.ac.cn
    简  历:
  • 刘亮,研究员,博士研究生导师。2013年本科毕业于中国地质大学(武汉),2018年获伦敦大学皇家霍洛威学院博士学位。2019年至2021年在美国伊利诺伊大学从事访问博士后研究。主持国家自然科学基金青年科学基金项目(B类)、国家重点研发计划青年科学家项目等多项科研任务。近年来以第一作者身份在Nat. Commun.Sci. Adv.GeologyEPSL等国际主流期刊发表学术论文十余篇。现任地球与行星深部研究(SEDI)中国委员会委员,长期担任NSRSCESNat. Commun.JGR: SETectonics等国际期刊审稿人。

    社会任职:
    研究方向:
  • 本研究组以地球动力学数值模拟为主要手段,结合地质学、地球化学、地球物理等多学科观测,深入解析地球深部动力学过程与浅表构造、岩浆、地形及宜居性演化之间的耦合关系。

    研究兴趣点包括:地幔对流与地幔柱;构造-岩浆迁移;异常俯冲过程;长期板块汇聚;克拉通演化与破坏;多层级岩浆系统;宜居性演化的深部驱动机制等。

    研究组拥有高性能计算集群和多台高性能工作站,具备开展大规模地球动力学数值模拟的软硬件条件。欢迎具有地学相关专业背景、对解读地球深部动力学演化与深-浅关联效应充满热情的硕士生、博士生及博士后加入团队,欢迎邮件联系。

    获奖及荣誉:
  • 1、深地过程与战略矿产资源全国重点实验室2025年度代表性成果;

    2、中国科学院广州地球化学研究所2024年度代表性成果;

    3、中国科学院广州地球化学研究所2023年度代表性成果;

    4、第七届地球系统科学大会青年学者论坛大会报告;

    5、涂光炽优秀青年学者计划A类(2021)。

    代表论著:
  • https://www.researchgate.net/profile/Liang-Liu-63. Research Gate

    https://scholar.google.com/citations?user=R2bNTuMAAAAJ&hl=en. Google Scholar

    1. Liu, L.*, Cao, Z., Morgan, J.P., Liu, L.J., Long, S.M., Hua, Y.Y., Li, H.Y., Xu, Y.G., 2026. Modulation of intra-oceanic trench bending and along-trench thermochemical transport by mantle toroidal flow. Nat Commun. https://www.nature.com/articles/s41467-026-75061-1.

    2. Liu, L.*, Morgan, J.P.*, Xu, Y.G., Long, S.M., de Montserrat, A., and Mogan, W.J., 2025. Revisiting the Scale of Mantle Plume-Induced Hotspot Swell. Sci Adv. https://www.science.org/doi/10.1126/sciadv.ady1276.

    3. Liu, L.*, Cao, Z., Morgan, J.P., Hua, Y.Y., Liu, L.J.*, Yang, F., Long, S.M., and Xu, Y.G., 2025. Lens effect of remnant blocks on deep mantle upwelling causing anomalous subsidence. Nat Commun. https://www.nature.com/articles/s41467-025-62987-1.

    4. Liu, L.*, Liu, L.J., Xu Y.G., Morgan, J.P.*, 2024c. Intermittent terrane arrival induces pulses of inland tectonic cycles. EPSL. https://doi.org/10.1016/j.epsl.2024.118861.

    5. Liu, L.*, Cao, Z., Morgan, J.P. *, Li, H.Y., Yang, F., and Xu, Y.G., 2024a. Long-lived Northern Hemisphere convergence systems driven by upper-mantle thermal inhomogeneity. Geology. https://doi.org/10.1130/G51948.1.

    6. Liu, L.*, Li, H.Y.*, Liu, L.J., Ryan, J.G., Morgan, J.P., Ren, K.X., Xu, Y.G., 2024b. Horizontally Forced Initiation of the Izu-Bonin-Mariana Subduction Zone. CEE. https://www.nature.com/articles/s43247-024-01263-4.

    7.Liu, L.*, Liu, L.J.*, Morgan, J.P., Xu, Y.G. and Chen, L., 2023. New constraints on Cenozoic subduction between India and Tibet. Nat Commun. https://www.nature.com/articles/s41467-023-37615-5.

    8. Liu, L., Liu, L.J, and Xu, Y.G., 2021b. Intermittent Post-Paleocene continental collision in South Asia. GRL.  https://doi.org/10.1029/2021GL094531.

    9. Liu, L., Liu, L.J., and Xu, Y.G., 2021a. Mesozoic intraplate tectonism of East Asia due to flat subduction of a composite Yanshanian slab. ESR. https://doi.org/10.1016/j.earscirev.2021.103505.

    10. Liu, L., Liu, L.J., Xu, Y.G., Xia, B., Ma, Q. and Menzies, M., 2019. Development of a dense cratonic keel prior to the destruction of the North China Craton: constraints from sedimentary records and numerical simulation. JGR: Solid Earth.  https://doi.org/10.1029/2019JB018595.

    11. Liu, L.*, Morgan, J.P*., Xu, Y. G.*, and Menzies, M., 2018a. Craton Destruction Part I: Cratonic Keel Delamination along a weak Mid‐Lithospheric Discontinuity layer, JGR: Solid Earth.  https://doi.org/10.1029/2017JB015372.

    12. Liu, L.*, Morgan, J.P.*, Xu, Y. G.*, and Menzies, M., 2018b. Craton Destruction Part II: Evolution of Cratonic Lithosphere after a Rapid Keel Delamination Event, JGR: Solid Earth. https://doi.org/10.1029/2017JB015374.

    13. 任可心#; 应鸿煜; 龙时迈; 刘亮*; 杨帆; 华远远; 廖杰; 2026, 南海地区新生代深部动力学演化的数值模拟研究进展, 矿物岩石地球化学通报. In press.

    14. Sun, Y., Yang, T.*, Liu, L.* and Xu, Y.G., 2025. Numerical modeling of melting‐induced decarbonation during the flattening of the subducted slab within the mantle transition zone. JGR: Solid Earth. https://doi.org/10.1029/2024JB029623.

    15. Yang, F., Huang, X.L., Liu, L., Xu, Y.G., Hua, Y., He, P.L., Zhang, L., Zhang, W.F., Yu, Y. and Li, H.Y., 2026. Key New Evidence for the Hainan Mantle Plume Head: Ongoing Formation of a Large Igneous Province?. G3.

    16. Wu, T., Liu, L., Zhang, W., Wilde, S.A., et al., 2026. Implications of unexpectedly young seafloor in the Challenger Deep. Geology.

    17. Wang, C., Qian, Y., Wang, J., Liu, L., …, 2025. The source and thermal driver of young (< 3.0 Ga) lunar volcanism. Sci Adv.

    18. 何玉先; 马萍; 徐沪济; 王晓冰; 王涛; 宋宝安; 王学路; 蒋建军; 宋成; 沈健; 谢心澄; 周忠和; 徐义刚; 刘亮; 张旭辉; 徐书华; Science2024年十大科学突破解读, 中国科学基金, 2025, 39(2): 345-359.

    19. Yang, F., Huang, X.L., Xu, Y.G., … Liu, L., 2024. Excessive subsidence of oceanic basins caused by recycled oceanic crust in the mantle source: A new perspective on the oceanic topography within Southeast Asia. Geology.

    20. Zou, Z.Y., Ma, Q., Xu, Y.G., Liu, L., et al., 2024. Stratigraphic and U-Pb zircon age constraints on the timing of the Yanliao Biota in northern China. GSAB.

    21. Sun, M.D., Lin, Q., Ramezani, J., Liu, J.S., Lu, Z.A., Yang, H.Q., Bai, J.H., Cai, S.X., Chen, J.C., Chen, X.Y. and Cui, H., 2025. Terrestrial ecosystem response to Early Cretaceous global environmental change: A calibrated, high-resolution Aptian record from Northeast China. EPSL.

    22. Wu, X., Hu, J., Chen, L., Liu, L. and Liu, L., 2023. Paleogene India-Eurasia collision constrained by observed plate rotation. Nat Commun.

    23. Xin, J., Zhang, H., Orellana‐Rovirosa, F., Li, Z.H., Liu, L., Xu, Y.G., Zhang, Z. and Shi, Y., 2023. Dynamics of Oceanic Slab Tearing During Transform‐Fault Horizontally‐Oblique Subduction: Insights From 3D Numerical Modeling. JGR: Solid Earth.

    24. Li, H.Y., Xie, C., Ryan, J.G., Spencer, C.J., Liu, L. and Xu, Y.G., 2023. Pb-Sr isotopes of the Kurile arc provide evidence for Indian-type oceanic crust in the Pacific basin. Lithos.

    25. Peng, L., Liu L.J., and Liu, L., 2022. The Fate of Delaminated Cratonic Lithosphere. EPSL.

    26. Liu, L.J., Peng, D., Liu, L., Chen, L., Li, S., Wang, Y., Cao, Z. and Feng, M., 2021. East Asian lithospheric evolution dictated by multistage Mesozoic flat-slab subduction. ESR.

    27. Liu, H.Q., Xu, Y.G., Wei, G.J., Wei, J.X., Yang, F., Chen, X.Y., Liu, L. and Wei, X., 2016. B isotopes of Carboniferous‐Permian volcanic rocks in the Tuha basin mirror a transition from subduction to intraplate setting in Central Asian Orogenic Belt. JGR: Solid Earth.

    承担科研项目情况:
  • 1、国家自然科学基金青年科学基金项目(B类),在研,项目负责人。

    2、国家重点研发计划青年科学家项目,在研,项目负责人。

    3、国家重点研发计划常规项目,在研,专题负责人。