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Architectural characterization of a delta-front reservoir analogue combining ground penetrating radar and electrical resistivity tomography: Roda Sandstone (Lower Eocene, Graus-Tremp basin, Spain)

机译:结合地面穿透雷达和电阻率层析成像技术的三角洲前缘储层模拟物的建筑特征:Roda砂岩(下始新世,西班牙格劳斯-特伦普盆地)

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摘要

Three-dimensional reconstruction of reservoir analogues can be improved combining data from different geophysical methods. Ground Penetrating Radar (GPR) and Electrical Resistivity Tomography (ERT) data are valuable tools, since they provide subsurface information from internal architecture and facies distribution of sedimentary rock bodies, enabling the upgrading of depositional models and heterogeneity reconstruction. The Lower Eocene Roda Sandstone is a well-known deltaic complex widely studied as a reservoir analogue that displays a series of sandstone wedges with a general NE to SW progradational trend. To provide a better understanding of internal heterogeneity of a 10m-thick progradational delta-front sandstone unit, 3D GPR data were acquired. In addition, common midpoints (CMP) to measure the sandstone subsoil velocity, test profiles with different frequency antennas (25, 50 and 100MHz) and topographic data for subsequent correction in the geophysical data were also obtained. Three ERT profiles were also acquired to further constrain GPR analysis. These geophysical results illustrate the geometry of reservoir analogue heterogeneities both depositional and diagenetic in nature, improving and complementing previous outcrop-derived data. GPR interpretation using radar stratigraphy principles and attributes analysis provided: 1)tridimensional geometry of major stratigraphic surfaces that define four units in the GPR Prism, 2) image the internal architecture of the units and their statistical study of azimuth and dips, useful for a quick determination of paleocurrent directions. These results were used to define the depositional architecture of the progradational sandbody that shows an arrangement in very-high-frequency sequences characterized by clockwise paleocurrent variations and decrease of the sedimentary flow, similar to those observed at a greater scale in the same system. This high-frequency sequential arrangement has been attributed to the autocyclic dynamics of a supply-dominated delta- front where fluvial and tidal currents are in competition. The resistivity models enhanced the viewing of reservoir quality associated with cement distribution caused by depositional and early diagenetic processes related to the development of transgressive and regressive systems tracts in igh-frequency sequences.
机译:可以结合来自不同地球物理方法的数据来改进储层类似物的三维重建。探地雷达(GPR)和电阻率层析成像(ERT)数据是有价值的工具,因为它们从内部构造和沉积岩体的相分布中提供了地下信息,从而能够改善沉积模型和非均质性重建。下始新世Roda砂岩是著名的三角洲复合体,被广泛研究为储层类似物,显示出一系列砂岩楔形,具有从NE到SW的总体发展趋势。为了更好地理解厚度为1000万的渐进三角洲前砂岩单元的内部非均质性,获取了3D GPR数据。此外,还获得了用于测量砂岩底土速度的公共中点(CMP),具有不同频率天线(25、50和100MHz)的测试剖面以及地形数据,以便随后对地球物理数据进行校正。还获取了三个ERT配置文件,以进一步限制GPR分析。这些地球物理结果说明了自然界中沉积和成岩作用的储层类似物异质性的几何形状,改善并补充了以前的露头衍生数据。使用雷达地层学原理和属性分析进行GPR解释:1)在GPR Prism中定义四个单元的主要地层表面的三维几何形状; 2)对单元的内部结构及其方位角和倾角的统计研究进行成像,有助于快速完成确定古流向。这些结果被用于定义渐进砂体的沉积构造,该构造显示了以极高频率序列排列的特征,其特征是顺时针古电流变化和沉积流量减少,类似于在同一系统中较大规模观察到的那些。这种高频顺序排列归因于以供应为主的三角洲的自循环动力学,在该三角洲河流和潮流之间存在竞争。电阻率模型可以更好地了解与沉积和早期成岩作用有关的水泥分布,这些沉积作用与海侵序列和海退序列的发展有关。

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