Huangfu Pengpeng
huangfu@ucas.ac.cn
Chinese, English
Beijing
University of Chinese Academy of Sciences
Earth sciences
  • Recipient of the National Science Fund for Distinguished Young Scholars
  • Secretary-General of the Geodynamics Committee of the Chinese Society of Mechanics
  • Member of the Earthquake Numerical Prediction Committee of the Seismological Society of China
  • Current - University of Chinese Academy of Sciences - Associate Professor, Doctoral Supervisor
  • 2023: Outstanding Individual of the Year, University of Chinese Academy of Sciences
  • 2022: Outstanding Individual of the Year, University of Chinese Academy of Sciences
  • 2021: Outstanding Individual of the Year, University of Chinese Academy of Sciences
  • 2018: Outstanding Postdoctoral Individual of the Year, University of Chinese Academy of Sciences
  • 2018: First Prize, Postdoctoral Academic Forum, University of Chinese Academy of Sciences
  • 2012: First Prize, Scientific and Technological Progress, Chinese Society for Rock Mechanics and Engineering
Continental collision dynamics
Himalayan-Tibetan orogenic belt
Crust-mantle structure evolution of the Tibetan Plateau
Far-field effects of the Indo-Tibetan collision
Differential evolutionary mechanisms of collisional orogenic belts
  • Tarim rotation mechanism and the differential deformation responses along the Tian Shan, Cui, Q., Huangfu, P.*, Li, Z.-H., Zhao, J., Pei, X., & Shi, Y., 2024
  • Linkage between the India–Asia collision and far-field reactivation of the Altai mountains, Huangfu, P., Fan, W., Li, Z.-H., Zhang, H., Zhao, J., & Shi, Y., 2023
  • High-temperature altered oceanic crust recycling into ocean island basalt-like mantle produces alkaline continental crust driven by mélange diapirs: Insights from isotopic tracing and numerical modeling, Liu, H., Huangfu, P.*, & Zhu, G., 2023
  • Continental Deep Subduction Versus Subduction Cessation: The Fate of Collisional Orogens, Wang, Y., Li, Z.-H., & Huangfu, P., 2023
  • Linking Pacific Plate formation and Early Cretaceous metallogenic response on the circum-Pacific continental margins, Wu, C., Chen, H., Chiaradia, M., Huangfu, P., & Li, Z., 2023
  • Numerical constraints on the one-stage and two-stage Greater India collision models, Li, Q., Li, Z.-H., & Huangfu, P., 2023
  • Low-velocity anomaly in the lithosphere of eastern Central Tianshan imaged with seismic waveform fitting, Cui, R., Cui, Q., Li, G., Huangfu, P., & Zhou, Y., 2023
  • Contrasting collision-induced far-field orogenesis controlled by thermo-rheological properties of the composite terrane, Huangfu, P., Li, Z.-H., Fan, W., Zhang, K.-J., & Shi, Y., 2022
  • Effects of Plate Velocity Slowdown on Altering Continental Collision Patterns and Crustal-Lithospheric Deformation During the Collision Process, Liu, M., Yang, D., & Huangfu, P., 2022
  • Late Cretaceous post-orogenic delamination in the western Gangdese arc: Evidence from geochronology, petrology, geochemistry, and Sr–Nd–Hf isotopes of intermediate–acidic igneous rocks, Li, Q.-H., Lu, L., Zhang, K.-J., Yan, L.-L., Huangfu, P., Hui, J., & Ji, C., 2022
  • 为何塔里木盆地独立于青藏高原整体变形之外而柴达木盆地却并入其中?, 裴旭, 皇甫鹏鹏, 李忠海, & 石耀霖, 2022
  • India-Tarim Lithospheric Mantle Collision Beneath Western Tibet Controls the Cenozoic Building of Tian Shan, Huangfu, P., Li, Z.-H., Zhang, K.-J., Fan, W., Zhao, J., & Shi, Y., 2021
  • Craton destruction links to the interaction between subduction and mid-lithospheric discontinuity: Implications for the eastern North China Craton, Shi, Y.-N., Niu, F., Li, Z.-H., & Huangfu, P., 2020
  • Development of contrasting folding styles in the western Yangtze block, South China: Insights from numerical modeling, Huang, G., Zhang, Z., Zhang, H., Huangfu, P., & Li, Z.-H., 2020
  • Continental lithospheric-scale subduction versus crustal-scale underthrusting in the collision zone: Numerical modeling, Huangfu, P., Li, Z.-H., Fan, W., Zhang, K.-J., & Shi, Y., 2019
  • Dynamics of crustal overthrust versus underthrust in the continental collision zones: Numerical modelling, Huangfu, P., Li, Z.-H., Fan, W., & Shi, Y., 2019
  • Differentiation of Continental Subduction Mode: Numerical Modeling, Yang, T., Huangfu, P., & Zhang, Y., 2019
  • Geochemistry of high-Nb basalt-andesite in the Erguna Massif (NE China) and implications for the early Cretaceous back-arc extension, Liu, H., Li, Y., Wu, L., Huangfu, P., & Zhang, M., 2019
  • 大陆碰撞过程中的多地体变形模式, 皇甫鹏鹏, 李忠海, & 范蔚茗, 2019
  • 海洋板块俯冲作用下上覆大陆岩石层减薄机制的动力学模拟, 史亚男, 魏东平, 皇甫鹏鹏, 李忠海, & 刘梦雪, 2019
  • Multi-terrane structure controls the contrasting lithospheric evolution beneath the western and central–eastern Tibetan plateau, Huangfu, P., Li, Z.-H., Gerya, T., Fan, W., Zhang, K.-J., Zhang, H., & Shi, Y., 2018
  • Geodynamics of the Indosinian orogeny between the South China and Indochina blocks: Insights from latest Permian–Triassic granitoids and numerical modeling, Liu, H., Wang, Y., Huangfu, P., Li, Z., & Zi, J.-W., 2018
  • Break-away of South China from Gondwana: Insights from the Silurian high-Nb basalts and associated magmatic rocks in the Diancangshan-Ailaoshan fold belt (SW China), Liu, H., Xia, X., Lai, C.-K., Gan, C., Zhou, Y., & Huangfu, P., 2018
  • Two-phase southward subduction of the Mongol-Okhotsk oceanic plate constrained by Permian-Jurassic granitoids in the Erguna and Xing'an massifs (NE China), Liu, H., Li, Y., He, H., Huangfu, P., & Liu, Y., 2018
  • Early cretaceous lower crustal reworking in NE China: insights from geochronology and geochemistry of felsic igneous rocks from the Great Xing’an range, Li, Y., Liu, H., Huangfu, P., He, H., & Liu, Y., 2018
  • 地幔柱影响大陆板块漂移速率的数值模拟研究——对印度板块晚白垩世快速漂移的启示, 周永智, 张玉芝, 王岳军, 皇甫鹏鹏, & 李忠海, 2018
  • 地壳放射性生热效应对大陆俯冲过程影响的数值模拟研究, 宋菁菁, 王岳军, 范蔚茗, 皇甫鹏鹏, & 周永智, 2018
  • Dynamics of unstable continental subduction: Insights from numerical modeling, Huangfu, P., Wang, Y., Fan, W., Li, Z., & Zhou, Y., 2017
  • Thermo-mechanical controls of flat subduction: Insights from numerical modeling, Huangfu, P., Wang, Y., Cawood, P. A., Li, Z.-H., Fan, W., & Gerya, T. V., 2016
  • Effects of crustal eclogitization on plate subduction/collision dynamics: Implications for India-Asia collision, Huangfu, P., Wang, Y., Li, Z., Fan, W., & Zhang, Y., 2016
  • 大陆不稳定俯冲的动力学研究, 皇甫鹏鹏, 王岳军, 范蔚茗, 李忠海, & 周永智, 2016
  • 大洋平板俯冲的数值模拟再现:洋-陆汇聚速率影响
Continental Collision Dynamics Himalayan-Tibetan Orogenic Belt Crust-Mantle Structure Evolution Tibetan Plateau Far-Field Effects Indo-Tibetan Collision Evolutionary Mechanisms

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