巴黎盆地东部始新世高原表层构造成因及其对地貌形成的影响

GeoResJ Pub Date : 2017-06-01 DOI:10.1016/j.grj.2017.04.002
Guillaume Pierre, Alain Devos, Nicolas Bollot
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引用次数: 0

摘要

表面构造的概念是指既不是由构造变形决定,也不是由严格意义上的地表地貌过程决定的表面变形。这项工作解决了导致巴黎盆地东部始新世高原卢德田地层结构表面扰动的两种机制。第一,第四纪河谷下切过程中与应力释放相关的机械释放。这导致了中鲁特梯灰岩的横向扩张,随后下伏砂的次侵蚀可能导致谷侧弯曲。其次,潜水带的鬼岩岩溶作用导致上鲁特盖层的地表崩塌。地质构造(中鲁特梯灰岩的厚度和孔隙度)和河谷斜坡地层(上伊波斯砂的位置)控制了这些过程的空间分布。受构造节理制约的鬼岩岩溶作用局限于西部;在东部,上波斯砂含水层和冲积含水层连接的地方发生弯曲作用。在第四纪,冰周条件解释了弯曲过程,也解释了位于活动层的含水层内的第二阶段岩溶作用,以及机械释放节理。由此产生的形态特征随后被继承,而隆起甚至是一个化石过程,在这个过程中,上波斯的沙子在谷底之上生长。因此,由表层构造形成的大规模地貌基本上是不活跃的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Origin and influence of the superficial structure on the morphogenesis (Eocene plateaux of the eastern Paris Basin)

The concept of superficial structure relates to surficial deformations that are determined neither by tectonic deformation nor by surface geomorphic processes sensu stricto. This work addresses two mechanisms leading to structural surface disturbances in the Lutetian strata of the Eocene plateaux of the eastern Paris Basin. Firstly, mechanical release which is associated with stress-relief during Quaternary valley downcutting. It results in lateral spreading of the middle Lutetian limestone, and subsequent sub-erosion of underlying sands may cause valley-side cambering. Secondly, ghost-rock karstification in the phreatic zone which is leading to surficial collapse of the upper Lutetian cover. Geological structure (thickness and porosity of the middle Lutetian limestone) and valley-side slopes stratigraphy (position of the upper Ypresian sand) control the spatial distribution of these processes. Ghost-rock karstification, conditioned by tectonic joints is confined to the west; to the east, cambering processes occur where upper Ypresian sand aquifer and alluvial aquifer are connected. During the Quaternary, periglacial conditions account for cambering processes and also for a second phase of karstification within an aquifer perched in the active layer, and from mechanical release joints. Resultant morphological features are then inherited and cambering is even a fossil process where upper Ypresian sand crops out above the valley floor. Consequently, large-scale landforms, derived from the superficial structure, are essentially inactive.

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