首页> 外文OA文献 >Birth, life, and demise of the Andean-syn-collisional Gissar arc: Late Paleozoic tectono-magmatic-metamorphic evolution of the southwestern Tian Shan, Tajikistan
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Birth, life, and demise of the Andean-syn-collisional Gissar arc: Late Paleozoic tectono-magmatic-metamorphic evolution of the southwestern Tian Shan, Tajikistan

机译:安第斯同冲碰撞吉萨尔弧的诞生,生命和灭亡:塔吉克斯坦西南天山的晚古生代构造-岩浆-变质演化

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摘要

The amalgamation of the Central Asian Orogenic Belt in the southwestern Tian Shan in Tajikistan is represented by tectono-magmatic-metamorphic processes that accompanied late Paleozoic ocean closure and collision between the Karakum-Tarim and Kazakh-Kyrgyz terranes. Integrated U-Pb geochronology, thermobarometry, pseudosection modeling, and Hf geochemistry constrain the timing and petro-tectonic nature of these processes. The Gissar batholith and the Garm massif represent an eastward, along-strike increase in paleodepth from upper-batholith (similar to 21-7km) to arc-root (similar to 36-19km) levels of the Andean-syn-collisional Gissar arc, which developed from similar to 323-288Ma in two stages: (i) Andean, I-type granitoid magmatism from similar to 323-306Ma due to northward subduction of the Gissar back-arc ocean basin under the Gissar microcontinent, which was immediately followed by (ii) syn-collisional, I-S-type granitoid magmatism in the Gissar batholith and the Garm massif from similar to 304-288Ma due to northward subduction/underthrusting of Karakum marginal-continental crust under the Gissar microcontinent. A rapid isotopic pull-up from similar to 288-286Ma signals the onset of juvenile, alkaline-syenitic, post-collisional magmatism by similar to 280Ma, which was driven by delamination of the Gissar arclogite root and consequent convective asthenospheric upwelling. Whereas M-HT/LP prograde metamorphism in the Garm massif (650-750 degrees C/6-7kbar) from similar to 310-288Ma was associated with subduction-magma inundation and crustal thickening, HT/LP heating and decompression to peak-metamorphic temperatures (similar to 800-820 degrees C/6-4kbar) at similar to 2886Ma was driven by the transmission of a post-collisional, mantle-derived heat wave through the Garm-massif crust.
机译:塔吉克斯坦西南天山中亚造山带的合并以构造-岩浆-变质作用为代表,伴随着古生代晚期海洋封闭以及Karakum-Tarim和哈萨克-吉尔吉斯人之间的碰撞。集成的U-Pb地质年代学,热压法,伪剖面建模和Hf地球化学约束了这些过程的时间和岩石构造性质。吉萨尔岩基和加尔姆断层代表古安第斯-同碰撞吉萨尔弧线的古深度从上蝙蝠石阶(约21-7km)到弧根(约36-19km)向东沿古深度增加,它从类似于323-288Ma的两个阶段发展:(i)由于吉萨尔微大陆下的吉萨尔弧后洋盆向北俯冲,安第斯山脉I型花岗岩岩浆从类似于323-306Ma形成。 (ii)由于在Gissar微大陆下Karakum边缘大陆陆壳向北俯冲/俯冲作用,在Gissar岩基和Garm断层中发生了同碰撞的IS型花岗岩岩浆,距304-288Ma相似。同位素从288-286Ma迅速拉升,表明少年,碱性亚硒酸盐岩,碰撞后的岩浆活动开始于280Ma,这是由Gissar弧铁矿层的分层和随后的对流软流圈上升引起的。 Garm断层(650-750摄氏度/ 6-7kbar)中与310-288Ma相似的M-HT / LP变质作用与俯冲岩浆浸没和地壳增厚,HT / LP加热和减压至峰变质有关。温度(类似于800-820摄氏度/ 6-4kbar)接近2886Ma,是由碰撞后,地幔衍生的热波通过Garm-massif地壳传播所驱动的。

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