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首页> 外文期刊>Marine and Petroleum Geology >Soft-sediment deformation structures as indicators of tectono-volcanic activity during evolution of a lacustrine basin: A case study from the Upper Triassic Ordos Basin, China
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Soft-sediment deformation structures as indicators of tectono-volcanic activity during evolution of a lacustrine basin: A case study from the Upper Triassic Ordos Basin, China

机译:软沉积物变形结构作为湖泊盆地演化过程中的构成 - 火山活性的指标 - 以中国上三叠系鄂尔多斯盆地为例

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摘要

The Ordos Basin, central China, is a large-scale Late Triassic intracratonic lacustrine basin, and in which the Upper Triassic Yanchang Formation comprises interbedded sandstones, mudstones and tuffs, representing deposits of a complete lacustrine life cycle. Based on observation of extensive well cores, various types of soft-sediment deformation structures have been identified in the lacustrine deposits of the southwest basin, including deformed lamination/bedding, load casts and flame structures, pseudonodules, microfaults, autoclastic brecciation, sand dykes, dyke-sill complexes, and sandy and muddy slumps. Liquefaction and fluidization of unconsolidated permeable sediments, together with brittle fracturing of semi-consolidated sediments, are the major deformation mechanisms that generated these structures. Both the scale and prevalence of the deformed sediments, as well as the geological setting of the lacustrine basin, suggest that seismic events (synsedimentary tectonic activity) were the main trigger to initiate deformation processes, although sedimentary overloading could also have been a minor localized trigger. Many volcanic tuffs preserved in both the primary undisturbed deposits and deformed sediments serve as support for synsedimentary tectono-volcanic activities that induced deformation in these lacustrine sediments. The deformation structures usually form vertical clusters of several different types, representing active syndepositional tectonic periods. Stratigraphic correlation shows three such deformation clusters to be widespread in the area detailed herein, and likely recorded three major tectonic periods during deposition. A thick extensive oil shale, with various deformation structures, also reveals another active tectonic period. These four intervals coincide well with the transition of the sedimentary architecture in the area, indicating four phases of most intense tectonic periods and their influence on lacustrine evolution.
机译:中国中部鄂尔多斯盆地是一个大规模的晚期三叠纪喉咙曲线盆地,其中三叠层延伸地层包括互磨砂砂岩,泥岩和牙龈,代表完整的湖泊生命周期的沉积物。基于对广泛井核的观察,在西南盆地的湖泊沉积物中鉴定了各种类型的软沉积物变形结构,包括变形层压/床上用品,载荷铸造和火焰结构,伪模具,微套,高压塑性布氏,砂堤,堤坝楼梯综合体,沙质和泥泞的坍塌。未溶解的渗透沉积物的液化和流化,以及半固结沉积物的脆性压裂,是产生这些结构的主要变形机制。变形沉积物的规模和患病率,以及湖泊盆地的地质环境,表明地震事件(综合保护部)是启动变形过程的主要触发,但沉积重载也可能是一个小局部触发器。在主要未受干扰的沉积物和变形沉积物中保存的许多火山凝灰岩是支持在这些湖泊沉积物中诱导变形的综合保护巨头 - 火山活性的支持。变形结构通常形成几种不同类型的垂直簇,代表有源二读素构造周期。地层相关示出了三种这样的变形簇在本文详述的区域中普及,并且在沉积期间可能记录了三个主要构造周期。具有各种变形结构的厚厚的油页岩,也揭示了另一种活跃的构造时期。这四个间隔与该地区沉积建筑的过渡吻合良好,表明四个阶段是最强烈的构造周期及其对湖水进展的影响。

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