首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >A new Triassic shortening-extrusion tectonic model for Central-Eastern Asia: Structural, geochronological and paleomagnetic investigations in the Xilamulun Fault (North China)
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A new Triassic shortening-extrusion tectonic model for Central-Eastern Asia: Structural, geochronological and paleomagnetic investigations in the Xilamulun Fault (North China)

机译:中亚新的三叠纪缩短-挤压构造模型:西拉木伦断层(华北)的构造,年代学和古地磁研究

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摘要

At the northern margin of the North China Block (NCB), the Xilamulun Fault (XMF) is a key belt to decipher the tectonic evolution of Central-Eastern Asia, as it records the Paleozoic final closure of the Paleo-Asian Ocean, and localizes a Late Triassic intracontinental deformation. In this study, structural analysis, Ar-40-Ar-39 dating, and paleomagmetic studies were performed to investigate the kinematics of the XMF and to further discuss its Triassic geodynamic significance in the Central-Eastern Asia framework after the Paleozoic Central Asian Orogenic evolution. The structural analyses reveal two phases of ductile deformation. The first one (D1), which displays N-verging and E-W trending folds, is related to the Early Paleozoic collisional event between the NCB and the Songliao-Hunshandake Block (SHB). The second phase (D2) displays a high-angle foliation and a pervasive sub-horizontal E-W stretching lineation with kinematic criteria indicative of dextral strike-slip shearing. The Ar-40-Ar-39 dating on mylonitic granite places the main shearing event around 227-209 Ma. This D2 shearing is coeval with that of the dextral strike-slip Bayan Obo-Chifeng Fault (BCF) and the Chicheng-Fengning-Longhua Fault to the south, which together constitute a dextral shearing fault system on the northern margin of the NCB during the Late Triassic. The paleomagnetic study performed on the Middle Permian Guangxingyuan pluton, located between the XMF and BCF, documents a local clockwise rotation of this pluton with respect to the NCB and SHB. Our multidisciplinary study suggests an NNW-SSE shortening and strike-slip shearing dominated tectonic setting on the northern margin of the NCB during the Late Triassic. Combining the contemporaneous dextral strike-slip movements of the XMF and BCF in northern China and the sinistral strike-slip movement of East Gobi Fault (EGF) in southeastern Mongolia with the large-scale tectonic framework, a Late Triassic NNW-SSE shortening-eastward extrusion tectonic model for Central-Eastern Asia is firstly proposed. The NNW-SSE shortening results in the eastward extrusion of the continental wedge bounded by the BCF and EGF, which is accommodated by the different kinematic patterns of the southern (XMF and BCF) and northwestern (EGF) bounding faults. This shortening-extrusion tectonic framework is tentatively interpreted as the result of the far field forces associated with three Late Triassic lithosphere-scale convergences in East Asia: i) northward intracontinental subduction between the NCB and South China Block, ii) collision of the Qiangtang Block with the Qaidam Block, and iii) southward subduction of the Mongol-Okhotsk Ocean beneath the Mongolia Block. (C) 2015 Elsevier B.V. All rights reserved.
机译:在华北地块(NCB)的北缘,西拉木伦断裂带(XMF)是解释中亚构造演化的关键带,因为它记录了古亚洲洋古生代最终封闭并进行了局部化三叠纪晚期大陆内变形。在这项研究中,进行了结构分析,Ar-40-Ar-39测年和古地貌模拟研究,以调查XMF的运动学,并进一步讨论了古生代中亚造山带演化后中东亚框架中三叠纪的地球动力学意义。 。结构分析显示出延性变形的两个阶段。第一个(D1)显示N阶和E-W趋势褶皱,与NCB和松辽-浑善达克块体(SHB)之间的早古生代碰撞事件有关。第二阶段(D2)显示高角度叶面和普遍的水平亚水平E-W伸展线,其运动学指标表明右旋走滑剪切力。镁铁质花岗岩上的Ar-40-Ar-39测年将主要剪切事件置于227-209 Ma附近。 D2剪切与右旋走滑的巴彦鄂博-赤峰断裂(BCF)和南赤城-凤宁-龙华断裂相吻合,在南北断裂期间,它们共同构成了右旋剪切断层系统。三叠纪晚期。对位于XMF和BCF之间的中二叠纪广兴园岩体进行的古磁研究表明,该岩体相对于NCB和SHB局部顺时针旋转。我们的多学科研究表明,在三叠纪晚期,NNW-SSE缩短和走滑剪切剪切作用主导了NCB北缘的构造环境。将中国北部XMF和BCF的同时右旋走滑运动和蒙古东南部的东戈壁断裂(EGF)的左旋走滑运动与大规模构造框架相结合,将晚三叠世NNW-SSE向东缩短首先提出了中亚挤压构造模型。 NNW-SSE缩短导致由BCF和EGF界定的大陆楔向东挤压,这由南部(XMF和BCF)和西北(EGF)界定断裂的不同运动学模式提供。该缩短-挤压构造构造框架被初步解释为与东亚三晚三叠纪岩石圈尺度辐合有关的远场力的结果:i)NCB和华南地块之间的北大陆内俯冲,ii)tang塘地块碰撞与柴达木地块,以及iii)蒙古地块下方的蒙古-鄂霍次克海向南俯冲。 (C)2015 Elsevier B.V.保留所有权利。

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