首页> 外文期刊>Geological Society of America Bulletin >Bedding-parallel stylolites as a tool to unravel maximum burial depth in sedimentary basins: Application to Middle Jurassic carbonate reservoirs in the Paris basin, France
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Bedding-parallel stylolites as a tool to unravel maximum burial depth in sedimentary basins: Application to Middle Jurassic carbonate reservoirs in the Paris basin, France

机译:床上用品平行的曲线作为沉积盆地解开最大埋藏深度的工具:在法国巴黎盆地中侏罗纪碳酸盐储层的应用

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摘要

In recent years stylolites, which are rough dissolution surfaces commonly found in carbonates, have been used for paleopiezometry estimates. The Stylolite Roughness Inversion Technique (SRIT) applied on sedimentary bedding-parallel stylolites (BPS) grants access to the maximum principal vertical stress experienced by the host carbonates and thus to their maximum burial paleo-depth. This study reports the results of SRIT applied to a BPS population hosted in carbonate platform reservoirs of the Paris basin subsurface (France). Middle Jurassic carbonates from two well cores from the depocenter and margin of the basin, for which the burial and thermal history are known, based on a thermally calibrated 3-D basin model, were analyzed. By defining a consistency criterion and using two signal treatment methods, we propose a new approach to select which BPS can be reliably used to reconstruct the maximum vertical stress undergone by the host carbonates, which then can be converted into maximum burial depth. The study of a BPS population shows that there is a control operated by the host rock texture and the stylolite morphology on the burial depth recorded. Especially suture and sharp peak BPS are better suited to estimate the real maximum depth, whereas seismogram pinning BPS record preferentially intermediate depths. Median values of maximum depth derived from our data set (1300 and 1650 m for the margin and depocenter cores, respectively) are in line with maximum burial estimates provided by conventional basin modeling (1450 and 1800 m, respectively), thus showing that SRIT is a standalone robust depth gauge in sedimentary basins, provided sample selection and data treatment are carried out in a rigorous and thoughtful manner.
机译:近年来,碳酸盐常见的粗溶解表面是古偶象测量估计。施加在沉积床上用品的型粗糙度反转技术(SRIT)并联曲线(BPS)授予宿主碳酸酯经历的最大主垂直应力,从而达到其最大埋藏古深度。本研究报告了SRIT的结果适用于托管在巴黎盆地地下(法国)的碳酸盐平台储存器中托管的BPS人口。分析了来自两个井中的侏罗克碳酸核,来自盆地的凹凸和裕度,其中墓穴和热历史是已知的,基于热校准的3-D盆地模型。通过定义一致性标准和使用两个信号处理方法,我们提出了一种新方法来选择可以可靠地用于重建宿主碳酸盐的最大垂直应力,然后可以转换为最大粗底部深度。对BPS人口的研究表明,通过宿主岩石纹理和记录的埋藏深度的牙岩形态运行的控制。特别是缝合和尖峰BPS更适合估计真实的最大深度,而地震图固定BPS记录优先中间深度。来自我们的数据集的最大深度的最大深度的值(分别为余量和距离和凹凸内核的1300和1650 m)符合常规盆地建模(分别为1450和1800m)提供的最大埋地估计,从而显示SRIT是在沉积盆地中的独立稳健深度计,提供了样本选择和数据处理,以严谨和周到的方式进行。

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    Univ Pau &

    Pays Adour Lab Fluides Complexes &

    Leurs Reservoirs IPRA E2S UPPA Total CNRS UMR5150 Pau France;

    IFP Energies Nouvelles 1&

    4 Av Bois Preau F-92852 Rueil Malmaison France;

    IFP Energies Nouvelles 1&

    4 Av Bois Preau F-92852 Rueil Malmaison France;

    Sorbonne Univ CNRS INSU ISTeP UMR 7193 F-75005 Paris France;

    Univ Glasgow Sch Geog &

    Earth Sci Gregory Bldg Glasgow G12 8QQ Lanark Scotland;

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  • 正文语种 eng
  • 中图分类 地质学;
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