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首页> 外文期刊>Sedimentary geology >Using high-resolution stratigraphy and structural analysis to constrain polyphase tectonics in wedge-top basins: Inferences from the late Tortonian Scillato Basin (central-northern Sicily)
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Using high-resolution stratigraphy and structural analysis to constrain polyphase tectonics in wedge-top basins: Inferences from the late Tortonian Scillato Basin (central-northern Sicily)

机译:使用高分辨率地层学和结构分析来约束楔顶盆地的多相构造:来自Tortonian Scillato盆地晚期(西西里中北部)的推论

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摘要

The present paper aims to show, both from a stratigraphic and structural points of view, the main features of a wedge-top syntectonic basin which evolved recording polyphase and non-coaxial tectonics. The study area is the Scillato Basin (SB), a roughly N-S-oriented structural depression located in the central-northern sector of the Sicililian Maghrebides. There, an approximately 1300 m-thick upper Serravallian to upper Tortonian succession of clastic units outcrops as a portion of the Neogene syntectonic covers of the Sicilian fold and thrust belt. Within the outcropping succession the upper Tortonian Terravecchia Fm represents the main topic of this paper. A multidisciplinary approach was carried out through an integration of sedimentology, fades, stratal pattern and structural analyses; this was applied to the formation enabling one to recognize in the Scillato Basin a fining to coarsening upward succession, deposited recording an early transgressive and a late regressive depositional stage. In our model these two main depositional stages developed and are directly relatable to a two-step structural evolution of the basin. During the first step, a NW-SE-oriented structural depression existed, enclosed between structural highs and accommodating the lower and middle portion of the upper Tortonian succession. Subsequently, during the second step, the NW-SE depression was non-coaxially deformed by superimposition of high-angle transpressive faults (many of which were SE-dipping), developed in response to the upward propagation of structures enucleated at deeper structural levels. This step was recorded in the basin by development of both depositional and structural interferences recognizable along the upper portion of the Scillato Basin succession. A comparison between field data and deep geophysical data interpreted at the preliminary stage, raises questions about the late Miocene geological evolution of this sector of the Sicilian chain, including: (i) the syn-tectonic deposition of the Terravecchia Fm. in the Scillato Basin clearly recorded the interference of two main and non-coaxial tectonic events; (ii) the younger of these two events has a clear tranpressional character and was active during the very late Tortonian; (iii) as also indicated by many authors in neighboring orogenic wedges, the main control on the location, geometry and depositional evolution of the Scillato wedge-top Basin was carried out by com-pressional and transpressional structures developed at a deeper structural level. Their deformation propagated upward both into the shallow structural level and sedimentary covers; therefore (iv) the late Miocene structural scenario here depicted is not consistent either with the back-arc-related extension or with the late orogenic gravitational collapse models previously invoked by other authors with regard to this sector of the Sicilian thrust belt.
机译:本文旨在从地层和构造角度显示楔顶构造盆地的主要特征,该盆地演化为记录多相和非同轴构造。研究区域是Scillato盆地(SB),这是一个位于北西西里马格里布德群岛中北部的大致为N-S定向的构造凹陷。在那里,大约有1300 m厚的上塞拉瓦利阶到上托土阶的碎屑岩层系露头,是西西里褶皱和逆冲带新近纪构造覆盖的一部分。在露头层序中,上层的Tortonian Terravecchia Fm代表了本文的主题。通过整合沉积学,褪色,地层模式和结构分析,采取了多学科的方法。这被应用于地层,使人们能够在Scillato盆地中识别出一种精细化作用,以使上行演替变粗化,并记录了海侵早期和海退晚期的沉积阶段。在我们的模型中,这两个主要的沉积阶段发展了,并且与盆地的两步结构演化直接相关。在第一步中,存在着一个以西北西向为导向的构造凹陷,该凹陷被圈闭在构造高点之间,并容纳了上托尔统的下部和中部。随后,在第二步中,NW-SE凹陷通过叠加大角度超压断层(其中许多为SE倾角)而非同轴变形,这种断层响应于深层次结构中去核结构的向上传播而发展。通过沿Scillato盆地演替的上部可识别的沉积和结构干扰的发展,在盆地中记录了这一步骤。初步解释的现场数据与深层地球物理数据之间的比较提出了有关西西里链条这一区域中新世晚期地质演化的问题,其中包括:(i)Terravecchia Fm的同构造沉积。在Scillato盆地清楚地记录了两个主要和非同轴构造事件的干扰。 (ii)这两个事件中较年轻的一个具有明显的转录特征,并且在后期的Tortonian时期很活跃; (iii)正如许多作者在邻近的造山楔中指出的那样,对Scillato楔顶盆地的位置,几何形状和沉积演化的主要控制是通过在较深的构造水平上发育的压缩和超压构造来进行的。它们的变形向上传播到浅层结构和沉积层。因此(iv)这里描述的中新世晚期构造情景与后弧相关的扩展或先前由其他作者针对西西里逆冲带的这一段所引用的晚期造山重力塌陷模型不一致。

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