首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Effect of basement structure and salt tectonics on deformation styles along strike: An example from the Kuqa fold-thrust belt, West China
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Effect of basement structure and salt tectonics on deformation styles along strike: An example from the Kuqa fold-thrust belt, West China

机译:地下室结构与盐构造对罢工变形风格的影响:西部Kuqa折叠带的示例

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摘要

The Kuqa fold-thrust belt (KFTB) has a complex thrust-system geometry and comprises basement-involved thrusts, decollement thrusts, triangle zones, strike-slip faults, transpressional faults, and pop-up structures. These structures, combined with the effects of Paleogene salt tectonics and Paleozoic basement uplift form a complex structural zone trending E-W. Interpretation and comprehensive analysis of recent high-quality seismic data, field observations, boreholes, and gravity data covering the KFTB has been performed to understand the characteristics and mechanisms of the deformation styles along strike. Regional sections, fold-thrust system maps of the surface and the sub-salt layer, salt and basement structure distribution maps have been created, and a comprehensive analysis of thrust systems performed. The results indicate that the thrust-fold system in Paleogene salt range can be divided into five segments from east to west: the Kela-3, Keshen, Dabei, Bozi, and Awate segments. In the easternmost and westernmost parts of the Paleogene salt range, strike-slip faulting and basement-involved thrusting are the dominant deformation styles, as basement uplift and the limits of the Cenozoic evaporite deposit are the main controls on deformation. Salt-core detachment fold-thrust systems coincide with areas of salt tectonics, and pop-up, imbricate, and duplex structures are associated with the main thrust faults in the sub-salt layer. Distribution maps of thrust systems, basement structures, and salt tectonics show that Paleozoic basement uplift controlled the Paleozoic foreland basin morphology and the distribution of Cenozoic salt in the KFTB, and thus had a strong influence on the segmented structural deformation and evolution of the fold-thrust belt. Three types of transfer zone are identified, based on the characteristics of the salt layer and basement uplift, and the effects of these zones on the fault systems are evaluated. Basement uplift and the boundary of th
机译:Kuqa折叠推力带(KFTB)具有复杂的推力系统几何形状,包括地下室涉及的推力,解序推力,三角形区域,防撞故障,塌陷故障和弹出结构。这些结构与古雄盐构造和古生代地下室隆起的效果组合形成复杂的结构区趋势E-W。对近期高质量地震数据,现场观测,钻孔和覆盖KFTB的重力数据的解释和综合分析,以了解沿着击球的变形风格的特点和机制。已经创建了区域部分,表面和亚盐层,盐和地下室结构分布图的折叠推力系统映射,并进行了对推力系统的综合分析。结果表明,古代盐范围中的推力折叠系统可分为从东到西部的五个区段:Kela-3,Keshen,Dabei,Bozi和污水段。在古代盐范围的最大和西方最根本的部分中,防滑断裂和地下室推动是主要的变形样式,因为新生代蒸发矿床的基底隆起和限制是变形的主要控制。盐芯脱离折叠式推力系统与盐构造的区域一致,弹出,丝毫和双工结构与亚盐层中的主推力故障相关联。推力系统,地下室结构和盐构造的分布图表明,古生代地下室隆起控制古生代前陆盆地形态和kftb中新生代盐的分布,从而对折叠的分段结构变形和演变产生了强烈影响 - 推力带。基于盐层和地下室隆起的特性,鉴定了三种类型的转移区,评估这些区域对故障系统的影响。地下室隆起和th的边界

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