- 姓名: 李鵬飛
- 性別: 男
- 職務(wù):
- 職稱(chēng): 研究員
- 學(xué)歷: 博士研究生
- 電子郵件: pengfeili@gig.ac.cn
李鵬飛,研究員,博士生導(dǎo)師。2007年與2009年分獲東北大學(xué)學(xué)士及碩士學(xué)位,2013年獲澳大利亞昆士蘭大學(xué)構(gòu)造地質(zhì)學(xué)/大地構(gòu)造學(xué)博士學(xué)位,曾在香港大學(xué)地球科學(xué)系從事博士后研究工作,國(guó)家海外高層次人才計(jì)劃入選者,德國(guó)洪堡學(xué)者。長(zhǎng)期從事造山帶大地構(gòu)造學(xué)研究,重點(diǎn)關(guān)注匯聚板塊邊緣動(dòng)力學(xué)過(guò)程——包括山彎構(gòu)造的形成、地體的碰撞拼貼以及俯沖板片的側(cè)向遷移,并在這些領(lǐng)域形成了系統(tǒng)性成果。近年來(lái),研究視野進(jìn)一步拓展至“構(gòu)造-環(huán)境-生命”協(xié)同演化這一交叉領(lǐng)域。已在Earth and Planetary Science Letters、Communications Earth & Environment、Earth-Science Reviews、Tectonics、GSA Bulletin、Journal of Structural Geology等地學(xué)權(quán)威期刊發(fā)表SCI論文60余篇,Google Scholar引用2100余次。現(xiàn)任Geological Society of America Bulletin副主編、Tectonophysics編委、《大地構(gòu)造與成礦學(xué)》編委,并擔(dān)任歐洲變形-流變-構(gòu)造學(xué)會(huì)理事會(huì)成員,中國(guó)地質(zhì)學(xué)會(huì)構(gòu)造地質(zhì)與地球動(dòng)力學(xué)專(zhuān)業(yè)委員會(huì)委員。
簡(jiǎn) 歷:
社會(huì)任職:
·?造山帶大地構(gòu)造與地球動(dòng)力學(xué)(澳洲Tasmanides、中亞造山帶、青藏高原)
·?變形構(gòu)造解析與顯微構(gòu)造學(xué)
·?構(gòu)造-地貌-氣候耦合機(jī)制
·?構(gòu)造過(guò)程與成礦作用
研究方向:
2022年:廣東省首屆青年地質(zhì)科技獎(jiǎng)(共5人獲獎(jiǎng))
2019年:廣東省珠江人才計(jì)劃青年拔尖人才
2017年:國(guó)家海外高層次人才項(xiàng)目
獲獎(jiǎng)及榮譽(yù):
詳細(xì)內(nèi)容可見(jiàn)Google Scholar Page:https://scholar.google.com/citations?user=cpQuy5gAAAAJ&hl=en&oi=sra
Li, Z., Li, P., Rosenbaum, G., Cawood, P., Wang, Q., Yuan, C., Shen, J., 2025. Rivers of change: How the Gondwanide orogeny altered Late Triassic global climate, Earth and Planetary Science Letters, 671, 119687.
Ling, J., Li, P., Yuan, C., Narantsetseg, T., 2025. Decoupling between Nd-Hf isotopic evolution of Permian to Triassic granitoids and crustal thickness variation in the westernmost Mongol-Okhotsk Orogen. Geological Magazine, 162, e16.
Ling, J., Li, P., Yuan, C., Rosenbaum, G., Sun, M., Li, Zhen., Narantsetseg, T., 2024, The bending of a supra-subduction zone produced crustal thickening and arc migration of the Mongolian Orocline. Communications Earth & Environment 5 (1), 329.
Hu, W., Li, P., Yuan, C., Sun, M., Jiang, Y., Cai, K., Zhang, C., 2023. Structural and Geochronological Constraints on the Collision Between the Chinese Altai and the West Junggar in Central Asia: Implication for Deformation Response and Geodynamic Evolution of Arc-Arc Collision in 4D. Tectonics 42, e2023TC007770.
Li, P., Sun, M., Narantsetseg, T., Jourdan, F., Hu, W., Yuan, C., 2022. First structural observation around the hinge of the Mongolian Orocline (Central Asia): Implications for the geodynamics of oroclinal bending and the evolution of the Mongol-Okhotsk Ocean. Geological Society of America Bulletin 134, 1994-2006.
Hu, W., Li, P., Sun, M., Safonova, I., Jiang, Y., Yuan, C., Kotler, P., 2021. Provenance of late Paleozoic sedimentary rocks in eastern Kazakhstan: Implications for the collision of the Siberian margin with the Kazakhstan collage. Journal of Asian Earth Sciences, 104978.
Li, P., Sun, M., Yuan, C., Jourdan, F., Hu, W., Jiang, Y., 2021. Late Paleozoic tectonic transition from subduction to collision in the Chinese Altai and Tianshan (Central Asia): new geochronological constraints. American Journal of Science 321, 178-205.
Ling, J., Li, P., Yuan, C., Sun, M., Zhang, Y., Narantsetseg, T., Wang, X., Jiang, Y., Hu, W., 2021. Ordovician to Devonian granitic plutons in the Hangay Range, Central Mongolia: Petrogenesis and insights into the Paleozoic tectonic evolution of the westernmost Mongol-Okhotsk Orogen. LITHOS 404-405, 106463.
Hu, W.,?Li, P., Rosenbaum, G., Liu, J., Jourdan, F., Jiang, Y., Wu, D., Zhang, J., Yuan, C., and Sun, M., 2020, Structural evolution of the eastern segment of the Irtysh Shear Zone: Implications for the collision between the East Junggar Terrane and the Chinese Altai Orogen (northwestern China): Journal of Structural Geology, 139, 104126.
Li, P., Sun, M., Rosenbaum, G., Cai, K., Yuan, C., Jourdan, F., Xia, X., Jiang, Y., Zhang, Y., 2020. Tectonic evolution of the Chinese Tianshan Orogen from subduction to arc-continent collision: Insight from polyphase deformation along the Gangou section, Central Asia.?Geological Society of America Bulletin,?132, 2529-2552.
Li, P., Sun, M., Shu, C., Yuan, C., Jiang, Y., Zhang, L., Cai, K., 2019. Evolution of the Central Asian Orogenic Belt along the Siberian margin from Neoproterozoic-Early Paleozoic accretion to Devonian trench retreat and a comparison with Phanerozoic eastern Australia.?Earth-Science Reviews?198, 102951.
Li, P., Sun, M., Rosenbaum, G., Yuan, C., Safonova, I., Cai, K., Jiang, Y., and Zhang, Y., 2018, Geometry, kinematics and tectonic models of the Kazakhstan Orocline, Central Asian Orogenic Belt,?Journal of Asian Earth Sciences?153, 42-56.
Li, P., Sun, M., Rosenbaum, G., Jourdan, F., Li, S., Cai, K, 2017. Late Paleozoic closure of the Ob-Zaisan Ocean along the Irtysh Shear Zone (NW China), Central Asian Orogenic Belt. Geological Society of American Bulletin. 129, 547-569.
Li, P., Sun, M., Rosenbaum, G., Cai, K. Chen, M., He, Y., 2016. Transpressional deformation, strain partitioning and fold superimposition in the southern Chinese Altai, Central Asian Orogenic Belt, Journal of Structural Geology, 87, 64-80.
Li, P., Sun, M., Rosenbaum, G., Jiang, Y., Cai, K., 2016. Structural evolution of zonal metamorphic sequences in the southern Chinese Altai and relationships to Permian transpressional tectonics in the Central Asian Orogenic Belt. Tectonophysics, doi: 10.1016/j.tecto.2015.11.035.
Li, P., Rosenbaum, G., Yang, J-H, Hoy, D., 2015. Australian-derived detrital zircons in the Permian-Triassic Gympie terrane (eastern Australia): evidence for an autochthonous origin. Tectonics 34, doi:10.1002/2015TC003829.
Li, P., Sun, M., Rosenbaum, G., Cai, K., Yu, Y., 2015. Structural evolution of the Irtysh Shear Zone (northwestern China) and implications for the amalgamation of arc systems in the Central Asian Orogenic Belt. Journal of Structural Geology?80, 142-156.
Li, P., Rosenbaum, G. and Vasconcelos, P., 2014, Chronological constraints on the Permian geodynamic evolution of eastern Australia, Tectonophysics 617, 20-30.
Li, P., Rosenbaum, G., 2014. Does the Manning Orocline exist? New structural evidence from the inner hinge of the Manning Orocline (eastern Australia). Gondwana Research 25, 1599-1613.
Li, P., Rosenbaum, G. and Donchak P.J.T., 2012. Structural Evolution of the Texas Orocline, eastern Australia, Gondwana Research 22, 279-289.
Li, P., Yuan, C., Sun, M., Long, X, Cai, K, 2015, Thermochronological constraints on the late Paleozoic tectonic evolution of the southern Chinese Altai, Journal of Asian Earth Science 113, 51-60.
Li, P., Rosenbaum, G. and Rubatto, D., 2012, Triassic asymmetric subduction rollback in the southern New England Orogen (eastern Australia): the end of the Hunter-Bowen orogeny, Australian Journal of Earth Sciences 59, 965-981.
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