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首页> 外文期刊>Sedimentary geology >Giant calcite concretions in aeolian dune sandstones; sedimentological and architectural controls on diagenetic heterogeneity, mid-Cretaceous Iberian Desert System, Spain
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Giant calcite concretions in aeolian dune sandstones; sedimentological and architectural controls on diagenetic heterogeneity, mid-Cretaceous Iberian Desert System, Spain

机译:风沙丘砂岩中的大型方解石凝结;西班牙白垩纪伊比利亚沙漠系统成岩非均质性的沉积学和建筑控制

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摘要

Aeolian dune sandstones of the Iberian erg system (Cretaceous, Spain) host giant calcite concretions that constitute heterogeneities of diagenetic origin within a potential aeolian reservoir. The giant calcite concretions developed in large-scale aeolian dune foresets, at the transition between aeolian dune toeset and damp interdune elements, and in medium-scale superimposed aeolian dune sets. The chemical composition of the giant concretions is very homogeneous. They formed during early burial by low Mg-calcite precipitation from meteoric pore waters. Carbonate components with yellow/orange luminescence form the nuclei of the poikilotopic calcite cement. These cements postdate earlier diagenetic features, characterized by early mechanical compaction, Fe-oxide cements and clay rims around windblown quartz grains resulting from the redistribution of aeolian dust over the grain surfaces. The intergranular volume (IGV) in friable aeolian sandstone ranges from 73 to 15.3%, whereas in cemented aeolian sandstone it is 18.6 to 25.3%. The giant-calcite concretions developed during early diagenesis under the influence of meteoric waters associated with the groundwater flow of the desert basin, although local (e.g. activity of fluid flow through extensional faults) and/or other regional controls (e.g. variations of the phreatic level associated with a variable water influx to the erg system and varying sea level) could have favoured the local development of giant-calcite concretions. The spatial distribution pattern of carbonate grains and the main bounding surfaces determined the spatial distribution of the concretions. In particular, the geometry of the giant calcite concretions is closely associated with main bounding aeolian surfaces. Thus, interdune, superimposition and reactivation surfaces exerted a control on the concretion geometries ranging from flat and tabular ones (e.g. bounded by interdunes) to wedge-shaped concretions at the dune foresets (e.g. bounded by superimposition and reactivation surfaces) determining the spatial distribution of the heterogeneities of diagenetic origin in the aeolian reservoir.
机译:伊比利亚erg系统(西班牙白垩纪)的风沙丘砂岩拥有巨大的方解石成因,构成了潜在风成藏中成岩成因的异质性。方解石巨型结石在大型风沙丘前兆,风沙丘前兆和潮湿的中度元素之间的过渡以及中等规模的风沙丘集合中发展。巨型混凝土的化学成分非常均匀。它们是由埋藏在陨石孔隙水中的低镁方解石沉淀形成的。具有黄色/橙色发光的碳酸盐成分形成了方解石方解石水泥的核。这些水泥的形成早于成岩作用,其特征是早期的机械压实,风化石英颗粒周围的铁氧化物水泥和粘土边缘,这是由于风尘在颗粒表面的重新分布所致。易碎的风积砂岩的粒间体积(IGV)为73%至15.3%,而胶结的风积砂岩的粒间体积为18.6%至25.3%。尽管在局部(例如,通过伸展断层的流体流动活动)和/或其他区域控制(例如,潜水位的变化)下,在与沙漠盆地地下水流动相关的流域水的影响下,在早成岩过程中形成了巨大的方解石凝结物。 erg系统的水量变化和海平面的变化可能会导致当地方解石的发展。碳酸盐颗粒和主要边界面的空间分布模式决定了固结物的空间分布。尤其是,方解石大块体的几何形状与主要的风成面密切相关。因此,中间,叠加和再活化表面控制着固结的几何形状,从平坦的和板状的(例如,由中间突界界定)到沙丘前额的楔形凝结物(例如,由叠加和再活化表面界定)决定了空间的空间分布。风成岩储层成岩成因的非均质性。

著录项

  • 来源
    《Sedimentary geology》 |2012年第1期|p.130-147|共18页
  • 作者单位

    Departamento de Petrologla y Geoquimica-lnstituto de Geociencias (UCM-CSIC), Facultad de Ciencias Geologicas, Universidad Complutense de Madrid, Ciudad Universitaria,28040 Madrid, Spain;

    Grupo de Analisis de Cuencas Sedimentarias (UCM-CAM), Departamento de Estratigrafia, Facultad de Ciencias Geoldgicas, Universidad Complutense de Madrid, Ciudad Universitaria, 28040 Madrid, Spain;

    Crupo de Analisis de Cuencas Sedimentarias (UCM-CAM), Departamento de Estratigrafia-Instituto de Geociencias (UCM-CSIC), Facultad de Ciencias Geologicas, Universidad Complutense de Madrid, Ciudad Universitaria, 28040 Madrid, Spain;

    Crupo de Analisis de Cuencas Sedimentarias Continentales (DGA), Departamento de Ciencias de la Tierra, Facultad de Ciencias, Universidad de Zaragoza, C/Pedro Cerbuna 12, 50009, Zaragoza, Spain;

    Sedimentology Group, Department of Earth Sciences, Utrecht University, Budapestlaan 4, 3584 CD Utrecht, The Netherlands;

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

    giant calcite concretions; aeolian sandstones; porosity; reservoir; carbonate cements; heterogeneity;

    机译:方解石大块风沙岩孔隙率水库碳酸盐水泥;异质性;

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