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范建军
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( 教授 )
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性别 :
男
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博士研究生毕业
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博士
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在职
所在单位 :
地球科学学院
学科 :
构造地质学
办公地点 :
长春市建设街2199号鸽子楼303
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[1] The Meso-Tethys Ocean: The nature, extension and spatial-temporal evolution. Earth-Science Reviews. 2024
[2] Middle–Late Jurassic subduction erosion caused by intra-oceanic arc subduction in central Tibet. GSA Bulletin. 2024
[3] Tracing the sedimentary response to the rifting and opening of the Meso-Tethys Ocean. Sedimentology. 2024
[4] Hotspot–subduction zone interactions and their resource effects at ~120 Ma on the central Tibetan Plateau. Lithos. 2024,482–483 (107721)
[5] Late Jurassic–Early Cretaceous Rebangco ophiolite, Tibet: Constraints on the Meso-Tethys Ocean tectonic evolution. Journal of Asian Earth Sciences. 2024,268 (106173)
[6] Resolving the nature and evolution of the Bangong–Nujiang Tethyan Ocean: New perspectives from the intraplate oceanic-island fragments preserved in Northern Tibet. GSA Bulletin. 2024,136 (3/4)
[7] Genetic pattern of the Albian volcanic rocks in the Ziruco area, Northern Tibet: Implications for A-type granites. Lithos,436–437 (106970)
[8] Tectonic evolution of the Meso-Tethys Ocean in the Jurassic: Birth, growth, and demise of a missing intra-oceanic arc. Gondwana Research. 2023
[9] Late Eocene palaeogeomorphology and uplift process of the Central Tibetan Plateau: Constraints from intermediate-felsic magmatic rocks. Lithos. 2022,408–409 (106569)
[10] The frst identifed oceanic core complex in the Bangong–Nujiang suture zone, central Tibet: New insights into the early Mesozoic tectonic evolution of the Meso-Tethys Ocean. Journal of Asian Earth Sciences,233 (105248)
[11] Terminal stage of divergent double subduction: Insights from Early Cretaceous magmatic rocks in the Gerze area, central Tibet. Lithos. 2022,420–421 (106713)
[12] Cretaceous uplift history of the Tibetan Plateau: Insights from the transition of marine to terrestrial facies in central Tibet. Palaeogeography, Palaeoclimatology, Palaeoecology. 2022
[13] Timing of the Meso-Tethys Ocean opening: Evidence from Permian sedimentary provenance changes in the South Qiangtang Terrane, Tibetan Plateau. Palaeogeography Palaeoclimatology Palaeoecology. 2021
[14] Aptian Flysch in Central Tibet: Constraints on the Timing of Closure of the Bangong‐Nujiang Tethyan Ocean. Tectonics. 2020,39 (12)
[15] Timing of closure of the Meso-Tethys Ocean: Constraints from remnants of a 141–135 Ma ocean island within the Bangong–Nujiang Suture Zone, Tibetan Plateau. GSA Bulletin
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