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The paleotectonic and paleogeography reconstructions of the Tarim Basin and its adjacent areas (NW China) during the late Early and Middle Paleozoic

机译:塔里木盆地及其邻近地区(中国西北地区)早期和中古生代晚期的古构造和古地理重建

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Tarim Basin is the large, very complex, oil-bearing basin in China, surrounded by the Tianshan-Beishan, West Kunlun and Altyn Tagh mountain belts to the north, south, and southeast, respectively. Understanding the processes and evolution of this complex superimposed basin, especially with respect to the effects of single tectonic movements, is a difficult challenge, which concerns the tectonic and dynamic interrelationships between the basin and the orogenic belts during the different stages of the Paleozoic in the Paleo-Asian and Tethyan tectonic systems and for the evaluation of the resource potentials in Tarim Basin. In this study, we focused on 3-dimensional, basin-scale structural architecture and the properties of two regional unconformities that occur within the basin and its adjacent areas. Here, we outline the structural deformations underlying the unconformity, the structural architecture styles and the distributions of the unconformity, and the stratigraphic sequence and nature of the sedimentary rocks immediately overlying the unconformity. During the late Early and Middle Paleozoic tectonic movements, disconformities developed mainly in the northern and the central parts of the basin, and angular unconformities which beneath layers were monocline and faulted-fold deformations developed in the southern, or the southern and northern parts of the basin, respectively. Before the Silurian, the Low Hotian Uplift, the NE-trending faulted-folded belts of the Tangguzibas Depression and the southern Tazhong Uplift underwent intense deformation related to SE-NW-directed tectonic compression. In addition, the NE-trending faults in the Tangguzibas Depression developed during periods of activity on the South Altyn Tagh Fault. The structural deformation, as well as the depositional fades, formed in response to the subduction and closure of the South Altun Ocean and West Kunlun-Kudi Ocean, and the resulting collisional orogeny. Prior to deposition of Upper Devonian sediments, structural deformation and erosion occurred in two marginal parts of the basin. The extent and intensity of deformation on the NE-trending faults in the Tangguzibas Depression were also reduced, whereas the NE-trending folds developed in the Manjiaer Depression. The Tabei Uplift experienced uplift and deformation. The closure of the North Altun Ocean and the eastern part of the South Tianshan Ocean with south-subduction may be the main driving forces for the tectonic activity. Extensive areas in the northern and southern margins of the basin were uplifted and denudated by orogenic activity as a prelude to the molasse basin that developed in the early Late Devonian in the northeastern and southeastern parts of the basin. The structural architecture of the unconformities reveals the geometry and dynamics of the basin-orogen system in single tectonic movements. (C) 2015 International Association for Gondwana Research. Published by Elsevier B.V. All rights reserved.
机译:塔里木盆地是中国大型,非常复杂的含油盆地,北,南,东南分别被天山-北山,西昆仑和阿尔金·塔格山地带所环绕。了解这一复杂的叠合盆地的过程和演化,特别是关于单个构造运动的影响,是一项艰巨的挑战,涉及到盆地中古生代不同阶段盆地与造山带之间的构造和动力相互关系。古亚洲和特提斯构造系统以及塔里木盆地的资源潜力评估。在这项研究中,我们专注于盆地尺度的3维结构构造以及盆地及其邻近区域内发生的两个区域不整合的性质。在此,我们概述了不整合面的构造变形,不整合面的结构构造样式和分布,以及紧邻不整合面的沉积岩的地层序列和性质。在早,中古生代晚期构造运动中,不整合面主要发生在盆地的北部和中部,而层下为单斜线的角不整合面则在盆地的南部,南部和北部发生了断层褶皱变形。盆地。在志留纪之前,低和田隆起,Tangguzibas and陷和北塔中隆起的北东向断裂褶皱带经历了与东南向西北构造方向有关的强烈变形。此外,Tangguzibas凹陷的NE向断裂在南Altyn Tagh断裂活动期间发育。结构变形以及沉积的衰落是由于南阿尔敦海和西昆仑-库迪海的俯冲和封闭以及由此形成的碰撞造山作用而形成的。在上泥盆纪沉积物沉积之前,该盆地的两个边缘部分发生了结构变形和侵蚀。塘沽子巴斯De陷NE向断裂的变形程度和强度也有所降低,而曼加尔De陷NE向褶皱发展。塔北隆起经历隆起和变形。北俯冲带和南俯冲带对南俯冲的封闭可能是构造活动的主要动力。造山活动使盆地北部和南部边缘的广大地区隆起并剥蚀,以此作为该盆地东北部和东南部泥盆纪晚期晚期发育的糖蜜盆地的前奏。不整合面的结构构造揭示了单一构造运动中盆地-造山带系统的几何形状和动力学。 (C)2015年冈瓦纳国际研究协会。由Elsevier B.V.发布。保留所有权利。

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