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首页> 外文期刊>Gondwana research: international geoscience journal >Topographic evolution of the Tianshan Mountains and their relation to the Junggar and Turpan Basins, Central Asia, from the Permian to the Neogene
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Topographic evolution of the Tianshan Mountains and their relation to the Junggar and Turpan Basins, Central Asia, from the Permian to the Neogene

机译:天山山脉的地形演变及其与中亚Junggar和Turpan盆地的关系,从互联网到Neogene

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摘要

The modern Tianshan Mountains and their surrounding basins have mainly been shaped by the far field effects of the Cenozoic India-Asia collision. However, precollision topographic evolution of the Tianshan Mountains and its impacts on the Junggar and Turpan Basins remain unclear due to the scarcity of data. Detrital zircon U-Pb dating of 14 new and 23 published samples from Permian to Neogene strata in the northern Western Tianshan Mountains, northern and southern Bogda Mountains and Central Turpan Basin, are combined with sedimentary characteristics (lithofacies, petrofacies and paleocurrent data) to investigate the temporal and spatial changes in sediment provenances. Based on the age characteristics of the source rocks in the Tianshan Mountains, the detrital zircons are divided into three groups: pre-Carboniferous zircons, mainly from the Central Tianshan Mountains; Carboniferous to Permian zircons, mainly from the North Tianshan and Bogda Mountains; and Mesozoic zircons, mainly from syn-depositional volcanic activity. The topographic evolution of the Tianshan Mountains and their relation to the Junggar and Turpan Basins can be generally divided into six stages. (1) Positive-relief Tianshan and Bogda Mountains and a rifted marine basin formed during the Early Permian to early Middle Permian following late Carboniferous orogenesis, as evidenced by interbedded alluvial fan conglomerates and postcollisional extension-related volcanic rocks along the basin margins, by marine deposits far from the basin margins and by the predominance of Carboniferous to Permian detrital zircons. (2) Fluvial to lacustrine deposits in the modern southern Junggar and Turpan Basins are characterized by abundant pre-Carboniferous zircons and consistently northward-flowing paleocurrents, indicating the submergence of the Bogda Mountains and a contiguous Junggar-Turpan continental depression basin during the late Middle Permian to the Triassic. (3) The Bogda Mountains began to uplift in the
机译:现代天山山脉及其周边盆地主要是由新生代印度 - 亚洲碰撞的远场影响。然而,由于数据稀缺,天山山脉的预测地形演变及其对准噶尔和吐鲁番盆地的影响仍不明确。 DEDRITAL ZIRCON U-PB约会14个新的和23个发布的二叠系中的样品到北部天山北部和南方波格达山脉和中部突厥盆地北部和南部博冈山脉和中央龟盆地,与沉积特点(岩石遗传症,岩石和古电流数据)相结合调查沉积物中的时间和空间变化。基于天山山脉源岩的年龄特征,邪恶的锆石分为三组:预油锆石,主要来自天山山脉;石炭系到二叠纪锆石,主要来自北天山和波哥达山脉;和中生代锆龙,主要来自同步沉积的火山活动。天山山脉的地形演变及其与Junggar和Tutpan盆地的关系通常可以分为六个阶段。 (1)积极浮雕天山和波哥达山脉和一座裂口的海洋盆地,在晚期石炭系奥发生后早期二叠系初二叠系,如腹部冲积风扇集团和盆地边缘的后期覆盖的冲积风扇集团和后期延伸相关的火山岩。远离盆地边缘的存放,并通过石炭系的优势占多种碎屑锆石。 (2)现代南部Junggar和Tutpan盆地的狼吞虎咽沉积物的特征在于富含石炭丰富的锆石,始终是向北流动的古电流,表明Bogda山脉和中间后期连续的Junggar-Turpan Continente抑郁盆盆地二叠纪到三叠纪。 (3)波格达山开始升起

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