Hierarchies of stratigraphic discontinuity surfaces in siliciclastic, carbonate and mixed siliciclastic-bioclastic tidalites: Implications for fluid migration in reservoir quality assessment

IF 1.9 3区 地球科学 Q1 GEOLOGY
Domenico Chiarella, Sergio G. Longhitano, Luigi Spalluto, Allard W. Martinius
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Abstract

The hierarchies of the stratigraphic discontinuity surfaces observed in ancient tidalites are qualitatively assessed, aiming to evaluate their role as possible preferential conduits for fluid migration. Three outcrop examples are presented from microtidal settings of southern Italy: (i) siliciclastic tidalites consisting of quartz-rich cross-stratified sandstones generated by strong two-directional tidal currents flowing along a tidal strait; (ii) carbonate tidalites, which accumulated in a Cretaceous lagoon and tidal flat where peritidal cycles formed vertically-stacked sequences of biopeloidal and fenestral packstones, wackestones and bindstones during repeated phases of Milankovitch-scale sea-level changes; (iii) mixed, siliciclastic-bioclastic tidalites, deposited in a bay and recording offshore-transition, to shoreface wave-dominated and tide-influenced environments. Observations made during this study suggest that fluid movement can be controlled by the presence of main bounding surfaces that occur at different dimensions, from large (hectometre)-scale, to medium (decametre)-scale, to smaller (metre)-scales. These surfaces produced either by depositional or erosional processes, are characterised by different features and geometries in siliciclastic, carbonate and mixed siliciclastic-bioclastic tidalites arguably revealing complex internal pathways for fluid flows. These results suggest that fluids propagating along the main discontinuities follow a dominant sub-horizontal direction of propagation, associated with minor sub-vertical movements, due to local internal surface geometries and interconnections and a general lack of fractures. This surface-based approach to the study of fluid-flow transmission within stratified rocks represents a conceptual attempt to predict fluid mobility and reservoir potential in tidalite-bearing siliciclastic, carbonate and mixed reservoir rocks.

Abstract Image

硅屑、碳酸盐和混合硅屑-生物碎屑潮岩的地层不连续面等级:储层质量评价中流体运移的意义
对古潮岩中观测到的地层不连续面等级进行了定性评价,旨在评价其作为流体运移可能的优先通道的作用。在意大利南部的微潮环境中提出了三个露头例子:(i)由沿潮汐海峡流动的强双向潮流产生的富含石英的交叉层状砂岩组成的硅屑潮岩;(ii)碳酸盐潮岩,在米兰科维奇尺度海平面变化的重复阶段,沉积于白垩纪泻湖和潮滩,潮滩周围的潮汐旋回形成了生物脉状和门脉状的砾岩、尾流岩和黏结岩的垂直堆叠序列;(iii)沉积在海湾的混合硅-生物碎屑潮岩,记录了向滨面波主导和潮汐影响环境的过渡。在这项研究中进行的观察表明,流体运动可以通过出现在不同维度上的主要边界面的存在来控制,从大(百米)尺度到中(十米)尺度,再到小(米)尺度。这些表面由沉积或侵蚀过程产生,在硅屑、碳酸盐和混合硅屑-生物碎屑潮汐岩中具有不同的特征和几何形状,可以说揭示了流体流动的复杂内部途径。这些结果表明,由于局部内表面几何形状和相互连接以及普遍缺乏裂缝,流体沿着主要不连续面沿主要的亚水平方向传播,并伴有较小的亚垂直运动。这种以表面为基础的研究层状岩石内流体传输的方法代表了一种概念上的尝试,即预测含潮岩的硅屑岩、碳酸盐和混合储层岩石中的流体流动性和储层潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.10
自引率
16.70%
发文量
42
审稿时长
16 weeks
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