Multi-stage micrite diagenesis in the late Jurassic of the Eastern Paris Basin: petrophysical and mechanical properties for engineering purposes

Benoit Vincent, C. Rigollet, Jean Cochard, Sara Khalil, Andrés Felipe Mejia-Durán, D. Grégoire, Nicolas E. Beaudoin, B. Brigaud, Thomas Blaise, Thierry Reuschle, P. Pellenard, P. Landrein
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Abstract

The “Calcaires du Barrois” Formation is a succession of dominantly micritic limestone of Kimmeridgian to Tithonian age, outcropping in the eastern part of the Paris Basin. This is an active karstic aquifer of main interest for the Andra (French National Agency for Radioactive Waste Management) who study the feasibility of a deep geological repository of radioactive waste in an Underground Research Laboratory (URL) located approximately 450m below the surface. Surface installations of the CIGEO (Industrial Centre for Geological Disposal) project are planned to be located in the upstream recharge zone of the aquifer. It is of primary interest to characterise the “Calcaires du Barrois” Formation to provide guidelines for the planning and the sizing of these facilities, with the objective of minimising the impact on the aquifer system. An integrated study was designed for this purpose linking petrography (thin section, and SEM, Scanning Electron Microscope), C & O stable isotope geochemistry, XRD (X-Ray Diffraction), petrophysics and geomechanics, and based on the analysis of three key cored wells penetrating the formation at different relative depths. The “Calcaires du Barrois” underwent several stages of diagenesis that defined the current properties. Unconformities associated with the Jurassic-Cretaceous transition led to prolonged early subaerial exposures during which freshwater flowed efficiently through the upper half of the formation. Through mineralogical stabilisation, among other processes, microporosity was preserved in micrites in this interval consisting of clean limestone with thin marl layers. The lower half of the formation, more argillaceous, was not or only slightly affected by this early meteoric diagenesis and recrystallization and cementation of micrites occurred during burial diagenesis, involving chemical compaction. Later, during the return to the surface associated to the Cenozoic orogens, another phase of meteoric diagenesis affected the uppermost few metres below the outcropping portions of the formation, but without modifying significantly the previously acquired petrophysical properties. Consequently, an intra-formational boundary was progressively developed at around 75m (from the top reference). This boundary separates (1) a lower half of the “Calcaires du Barrois” with dense and tight micrites, showing high Young's Modulus values, and a moderate intensity of fractures, from (2) a upper half with microporous micrites showing low Young's Modulus values, and almost devoid of fractures. A transitional zone of about 30m-thick, with intermediate properties, sitting above this boundary and below the only thin metre-scale macroporous grainstone level of the formation, accommodated most of the deformation linked to the Cenozoic west-European orogens and is intensively fractured. The current hydrogeological model considers a purely sedimentological boundary to delimit two sub-aquifers within the “Calcaires du Barrois” Formation, but will have to be reappraised since it is here demonstrated that the real boundary is located significantly higher in the formation and is inherited from a multi-stage diagenetic history. These findings will complement and influence planning for engineering of the CIGEO project.
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东巴黎盆地晚侏罗世的多阶段微岩成岩作用:用于工程目的的岩石物理和力学性质
Calcaires du Barrois "地层是以微砂岩为主的石灰岩层,属金美里纪至提托尼纪,出露于巴黎盆地东部。这是一个活跃的岩溶含水层,是法国国家放射性废物管理局(Andra)研究放射性废物深层地质储存库可行性的主要关注点,该储存库位于地下约 450 米处的地下研究实验室(URL)。CIGEO(地质处置工业中心)项目的地表设施计划位于含水层的上游补给区。对 "Calcaires du Barrois "地层的特征进行研究,为规划和确定这些设施的规模提供指导,目的是最大限度地减少对含水层系统的影响。为此,我们设计了一项综合研究,将岩相学(薄片和扫描电子显微镜)、C 和 O 稳定同位素地球化学、X 射线衍射(X-Ray Diffraction)、岩石物理学和地质力学联系起来,并以对穿透该地层不同相对深度的三口关键取芯井的分析为基础。Calcaires du Barrois "经历了几个阶段的成岩作用,确定了目前的性质。与侏罗纪-白垩纪过渡时期相关的不整合地貌导致了长期的早期次生暴露,在此期间,淡水有效地流经地层的上半部分。通过矿物质稳定等过程,微孔被保留在了这一区间的微晶石中,微晶石由带有薄泥灰岩层的洁净石灰岩组成。地层的下半部分,更多的是霰石,没有受到或仅受到这种早期流星成因的轻微影响,在埋藏成因过程中,微晶发生了再结晶和胶结,包括化学压实。后来,在与新生代造山运动相关的回归地表过程中,另一阶段的流星成岩作用影响了地层露头部分以下的最上层几米,但没有明显改变之前获得的岩石物理特性。因此,在大约 75 米处(从顶部参考点算起)逐渐形成了一个岩层内部边界。该边界将(1) 下半部分的 "Calcaires du Barrois "与(2) 上半部分的 "Calcaires du Barrois "分隔开来,下半部分的微晶致密而紧密,杨氏模量值高,裂缝强度适中,上半部分的微晶多孔,杨氏模量值低,几乎没有裂缝。厚度约为 30 米的过渡带具有中间性质,位于该边界之上,地层中唯一的米级大孔薄粒岩层之下,容纳了与新生代西欧造山运动有关的大部分变形,断裂密集。目前的水文地质模型认为,"Calcaires du Barrois "地层中的两个亚水层是以纯粹的沉积学边界划分的,但这一模型必须重新评估,因为它证明了真正的边界位于地层中明显更高的位置,并且是从多阶段成岩历史中继承下来的。这些发现将补充并影响 CIGEO 项目的工程规划。
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