首页> 外文期刊>Journal of structural geology >The interaction between strike-slip dominated fault zones and thrust belt structures: Insights from 4D analogue models
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The interaction between strike-slip dominated fault zones and thrust belt structures: Insights from 4D analogue models

机译:走滑为主的断裂带与逆冲带结构之间的相互作用:来自4D模拟模型的见解

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Strike-slip motion is a fundamental tectonic process around the globe often resulting in prominent surface expressions. The full reconstruction and comprehension of strike-slip dominated structures can be a major challenge due to the complexity of the associated fault patterns. Further complexities occur when strike-slip dominated structures in the foreland interact with thrust belt fronts. Starting from a well-studied natural example (the Sciacca Fault Zone in the Sicilian Channel, Italy) we ran a set of analogue models simulating the interaction between strike-slip dominated fault zones and thrust structures using quartz sand as the analogue material and X-Ray Computed Tomography as a technique to carry out a 4D analysis of model internal structures. During a first phase, a thrust belt was created in our models, which was subsequently affected by a perpendicular fault system that underwent either pure strike-slip, 10 degrees-, 20 degrees-, 30 degrees-transtensional, or 10 degrees-, 20 degrees-, 30 degrees-transpressional motion. In general, transpressional models form pop-up structures, while the pure strike-slip model develops one sub-vertical fault bounded by two converging reverse faults. The 10 degrees-transtensional model generates a set of Riedel shear faults, which merge during the later stages of deformation. This model also shows a positive elevation change along the strike-slip dominated structures near the intersection with the thrust belt. The 20 degrees-transtensional model contains some Riedel shear faulting as well, but is dominated by two normal faults with steep dip angles and some minor sub-vertical strike-slip faults in between. This fault architecture is also observed in our 30 degrees-transtensional model. Three different tectonic regimes interacting with pre-existing and newly formed thrust front led to very different structural settings. These results were of help in better defining the tectonic regime that controlled the strike-slip dominated part of the Sciacca Fault Zone, but they show a fair match with other natural examples as well.
机译:滑移运动是全球性的基本构造过程,通常会导致突出的表面表情。由于相关断层模式的复杂性,对走滑为主的结构进行全面的重建和理解可能是一个重大挑战。当前陆中以走滑为主的结构与逆冲带前缘相互作用时,会进一步加剧复杂性。从经过充分研究的自然实例(意大利西西里海峡的Sciacca断裂带)开始,我们运行了一组模拟模型,这些模拟模型使用石英砂作为模拟材料并利用X-射线计算机断层扫描是一种对模型内部结构进行4D分析的技术。在第一阶段,在我们的模型中创建了一条冲断带,随后受到垂直断层系统的影响,该系统经历了纯走滑,10度,20度,30度张性或10度,20度度,30度压迫运动。一般而言,超压模型形成了弹出结构,而纯走滑模型则形成了一个亚垂直断层,该断层由两个收敛的反向断层限定。 10度拉伸模型生成一组Riedel剪切断层,这些断层在变形的后期阶段合并。该模型还显示了沿与冲断带相交处的走滑为主的结构正高程变化。 20度张拉模型也包含一些Riedel剪切断层,但以两个具有陡倾角的正断层和介于两者之间的一些次垂直的走滑断层为主导。在我们的30度跨度模型中也观察到了这种断层构造。与先前存在的和新形成的逆冲锋相互作用的三种不同的构造方式导致了截然不同的结构环境。这些结果有助于更好地确定控制夏卡断裂带走滑为主的构​​造构造,但也显示出与其他自然实例的合理匹配。

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