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首页> 外文期刊>Journal of Asian earth sciences >Mesozoic-Cenozoic evolution of the Zoige depression in the Songpan-Ganzi flysch basin, eastern Tibetan Plateau: Constraints from detrital zircon U-Pb ages and fission-track ages of the Triassic sedimentary sequence
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Mesozoic-Cenozoic evolution of the Zoige depression in the Songpan-Ganzi flysch basin, eastern Tibetan Plateau: Constraints from detrital zircon U-Pb ages and fission-track ages of the Triassic sedimentary sequence

机译:青藏高原东部松潘-甘孜蝇sch盆地若尔盖凹陷的中,新生代演化:碎屑锆石U-Pb年龄和三叠纪沉积序列裂变径迹年龄的约束

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摘要

The Zoige depression is an important depocenter within the northeast Songpan-Ganzi flysch basin, which is bounded by the South China, North China and Qiangtang Blocks and forms the northeastern margin of the Tibetan Plateau. This paper discusses the sediment provenance and Mesozoic-Cenozoic evolution of the Zoige depression in the Songpan-Ganzi flysch basin, eastern Tibetan Plateau, using the detrital zircon U-Pb ages and apatite fission-track data from the Middle to Late Triassic sedimentary rocks in the area. The U-Pb ages of the Middle to Late Triassic zircons range from 260-280 Ma, 429-480 Ma, 792-974 Ma and 1800-2500 Ma and represent distinct source region. Our new results demonstrate that the detritus deposited during the Middle Triassic (Ladinian, T(2)zg) primarily originated from the Eastern Kunlun and North Qinling Orogens, with lesser contributions from the North China Block. By the Late Triassic (early Carnian, T(3)z), the materials at the southern margin of the North China Block were generally transported westward to the basin along a river network that flowed through the Qinling region between the North China and South China Blocks: this interpretation is supported by the predominance of the bimodal distribution of 1.8 Ga and 2.5 Ga age peaks and a lack of significant Neoproterozoic zircon. Since the Late Triassic (middle Carnian, T(3)zh), considerable changes have occurred in the source terranes, such as the cessation of the Eastern Kunlun Orogen and North China Block sources and the rise of the northwestern margin of the Yangtze Block and South Qinling Orogen. These drastic changes are compatible with a model of a sustained westward collision between the South China and North China Blocks during the late Triassic and the clockwise rotation of the South China Block progressively closed the basin. Subsequently, orogeny-associated folds have formed in the basin since the Late Triassic (late Carnian), and the study area was generally subjected to uplifting and cooling stages during 200-160 Ma, 90-120 Ma, 20-40 Ma and 10 Ma as evidenced by the apatite fission track data and the thermal history modeling. According to the regional background, we conclude that these stages are as follows, from oldest to youngest: the E-W extrusion across the entire Chinese mainland at the beginning of the Yanshanian period (200-160 Ma), the interaction among the North China, Yangtze and India plates during the Late Jurassic-Early Cretaceous, the collision between the Indian and Eurasian plates since the Paleogene, and the rapid uplift simultaneous with the formation of the Tibetan Plateau since 10 Ma.
机译:佐伊格凹陷是松潘—甘孜蝇fly盆地东北部的重要沉积中心,该盆地以华南,华北和and塘地块为边界,形成了青藏高原的东北边缘。本文利用碎屑锆石U-Pb年龄和中,晚三叠世沉积岩的磷灰石裂变径迹资料,探讨了青藏高原东部松潘-甘孜蝇sch盆地若尔盖凹陷的物源和中,新生代演化。该地区。中三叠世至晚三叠世锆石的U-Pb年龄范围为260-280 Ma,429-480 Ma,792-974 Ma和1800-2500 Ma,代表了不同的源区。我们的新结果表明,中三叠世(Ladinian,T(2)zg)沉积的碎屑主要来源于东昆​​仑和北秦岭造山带,而华北地块的贡献较小。到晚三叠世(早期Carnian,T(3)z),华北地块南缘的物质通常沿着流经华北和华南之间的秦岭地区的河网向西输送到盆地。区块:这种解释得到了1.8 Ga和2.5 Ga年龄峰双峰分布的优势以及缺乏明显的新元古代锆石的支持。自晚三叠世以来(中Carnian,T(3)zh),源地层发生了相当大的变化,例如东昆仑造山带和华北地块源的停止以及扬子地块和扬子地块西北缘的上升。南秦岭造山带。这些剧烈的变化与三叠纪晚期华南和华北地块之间持续的向西碰撞的模型相吻合,而华南地块的顺时针旋转逐渐关闭了盆地。随后,自晚三叠世(晚Carnian)以来,在盆地中形成了与造山运动有关的褶皱,研究区域通常在200-160 Ma,90-120 Ma,20-40 Ma和10 Ma期间经历隆升和冷却阶段。磷灰石裂变径迹数据和热历史模型证明了这一点。根据区域背景,我们认为这些阶段从最老到最年轻如下:燕山时期初期(200-160 Ma),整个中国大陆的EW挤压,华北,扬子之间的相互作用。侏罗纪至早白垩世时期的印度和印度板块,自古近纪以来印度和欧亚板块之间的碰撞,以及自10 Ma以来青藏高原形成的同时迅速隆升。

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