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首页> 外文期刊>Sedimentary geology >Microporous and tight limestones in the Urgonian Formation (late Hauterivian to early Aptian) of the French Jura Mountains: Focus on the factors controlling the formation of microporous facies
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Microporous and tight limestones in the Urgonian Formation (late Hauterivian to early Aptian) of the French Jura Mountains: Focus on the factors controlling the formation of microporous facies

机译:法国侏罗山Urgonian组(晚欧特里夫期至Aptian早期)的微孔致密石灰岩:重点研究控制微孔相形成的因素

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摘要

Microporous and tight limestones, with contrasting porosity and permeability values directly related to the microfabric of the micritic matrix, outcrop in the Urgonian Formation of the French Jura Mountains. This study investigates the factors controlling the differentiation between the microporous and tight facies, and proposes a diagenetic model for the development and preservation of the microporosity in these limestones. The petrophysical properties are not related to the depositional texture, the petrographical content or the mineralogical composition. However, the tight layers contain indications of emersion (e.g.: bird eyes, keystone vugs, and desiccation cracks). The sedimentation in very shallow conditions up to emersion is confirmed by the covariant more positive values of oxygen and carbon isotopes. The microporous intervals systematically occur a few meters below the tight layers affected by emersion. This position strongly suggests the importance of meteoric water input rapidly after sedimentation in the differentiation between tight and microporous limestones.rnThe diagenetic model proposed for the development and preservation of the microporous facies involves partial early cementation of the interstitial mud, mainly composed of low-Mg calcite crystals (sedimentation during a calcite sea period), inside a meteoric phreatic lens by in situ dissolution-reprecipitation processes ("hybrid Ostwald ripening"). This early cementation partly preserves the original microfabric and intercrystalline microporosity and allows the carbonate sediment to resist compaction during burial. The identification of the conditions favorable to the development of microporosity in these Urgonian limestones may improve the knowledge and modeling of some microporous carbonate reservoir rocks.
机译:微孔和致密的石灰石,其孔隙率和渗透率值与微晶基质的微结构直接相关,露头在法国侏罗山的Urgonian组中露头。这项研究调查了控制微孔相和致密相之间差异的因素,并为这些石灰岩中的微孔发育和保存提出了成岩模型。岩石物理特性与沉积质地,岩石学含量或矿物组成无关。但是,紧密层包含发芽迹象(例如:鸟瞰,梯形孔洞和干燥裂纹)。氧和碳同位素的正态协方差更大,证实了在很浅的条件下直至发芽的沉积。微孔间隔系统性地出现在受渗出影响的致密层以下几米处。这个位置强烈表明,沉积后快速注入的水对于致密和微孔石灰岩的区分具有重要意义。rn为发育和保存微孔相而提出的成岩模型涉及间隙泥的部分早期胶结,主要由低镁组成通过原位溶解-再沉淀过程(“混合奥斯特瓦尔德熟化”)在流线型潜水镜内部的方解石晶体(方解石海时期的沉淀)。这种早期的胶结作用部分保留了原始的微结构和晶间微孔性,并允许碳酸盐沉积物在埋藏期间抵抗压实。确定这些Urgonian石灰岩中有利于微孔发展的条件可能会改善一些微孔碳酸盐岩储层的知识和建模。

著录项

  • 来源
    《Sedimentary geology》 |2010年第2期|P.21-34|共14页
  • 作者单位

    University of Geneva, Earth and Environmental Sciences, Department of Geology and Paleontology, Rue des Maraichers 13, 1205 Geneve, Switzerland;

    rnUniversity of Geneva, Earth and Environmental Sciences, Department of Geology and Paleontology, Rue des Maraichers 13, 1205 Geneve, Switzerland;

    rnUniversity of Bourgogne, UMR CNRS 5561 Biogeosciences, Blvd Gabriel 6, 21000 Dijon, France;

    rnCh. des Champs d'Amot 24, 74140 Messery, France;

    rnUniversity of Geneva, Earth and Environmental Sciences, Department of Geology and Paleontology, Rue des Maraichers 13, 1205 Geneve, Switzerland;

    rnTotal Exploration and Production, CSTJF, Avenue Larribau, 64000 Pau, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    microporosity; micrite; carbonate; reservoir; urgonian;

    机译:微孔微晶石碳酸盐水库乌克兰语;

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