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Tracking triggering mechanisms for soft-sediment deformation structures in the Late Cretaceous Uberaba Formation, Bauru Basin, Brazil

机译:追踪软泥沙变形结构中的触发机制,Bauru盆地,巴西

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Soft-sediment deformation (SSD) structures are widespread in the sedimentary record, and numerous triggering mechanisms can induce its development, including glaciation, earthquakes, overloading, ground-water fluctuations, and wave movement. The Late Cretaceous Uberaba Formation preserves SSD structures as small- and large-scale load casts and associated flame structures, pseudonodules, and convolute laminations observed in the contact of three well-defined intervals among fine- to coarse-grained lithic and conglomeratic sandstone with fine-grained arkose and mudstone beds. Based on the morphology of the SSD structures, sedimentary facies of the Uberaba Formation, and similarities with previous observations in the geological record and laboratory models, these features are assigned to liquefaction-fluidization processes as the major deformational mechanism triggered by seismic and aseismic agents. We propose that a deformation occurred just after the sedimentation triggered by seismic shock waves and overloading, induced by the sudden deposition of coarse-grained sandy debris on fine-grained sediments. Some of these structures can be classified as seismites, providing evidence of intraplate seismicity within the inner part of the South American Platform during the Late Cretaceous. This seismic activity is likely related to the uplift of the Alto Paranaíba High along reactivations of regional structures inherited from Proterozoic crustal discontinuities and coeval explosive magmatism of the Minas-Goiás Alkaline Province.
机译:软沉积物变形(SSD)结构在沉积记录的广泛,以及众多的触发机制能促使其发展,包括冰川,地震,超载,地下水波动,波浪运动。白垩纪晚期乌贝拉巴形成蜜饯SSD结构为小型和大型负载类型转换和相关联的火焰结构,pseudonodules,并在三个明确定义的间隔中细粒到与细粗粒岩屑和砾砂岩接触观察回旋叠片-grained长石砂岩和泥岩床。基于SSD的结构中,乌贝拉巴组沉积相分析,并与在地质记录和实验室模型以前的意见相似的形态,这些功能被分配到液化流化过程由地震和抗震剂发生重大变形机制。我们建议,变形刚地震的冲击波和超载,由粗粒砂质碎屑的细颗粒沉积物突然沉淀引起的触发沉淀后发生。一些结构可以划分为震,南美平台的晚白垩世期间内部分内提供板内地震活动的证据。这种地震活动可能与奥拓巴拉那伊巴高的沿元古代地壳的不连续性和米纳斯 - 戈亚斯碱性省同时代的爆炸性岩浆继承了区域结构的重新激活的隆起。

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