Abu Dhabi海上下Lekhwair组新认识:了解Lithocodium/bacinella浮石在大规模储层质量变化中的关键作用

A. Tendil, L. Galluccio, C. Breislin, Jawaher Alsabeai, A. Lavenu, Hidenori Obara
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引用次数: 1

摘要

下白垩统Lekhwair组是阿联酋陆上和海上最多产的油藏之一,但关于该层段的现有文献仍然有限。基于最近与ADNOC Offshore合作开展的一项研究,本文为理解原生沉积和次生成岩控制对储层动态的相互作用提供了新的见解,这对改进静态和动态模型至关重要。在阿布扎比海上,下Lekhwair组的特点是相对较厚的泥质(致密带)和清洁的灰岩(储集带)交替存在。储层由基底、低至中等能量的内斜坡沉积组成,向上递变为厚的内斜坡和中斜坡沉积。Lithocodium/Bacinella是体积上占主导地位的骨骼异形体,可以形成m厚、堆叠的浮石单位。由于可容纳空间的增加,这种富含岩芯/ bacinella的浮岩被解释为起源于中斜坡沉积环境。相比之下,岩石科/Bacinella浮岩在斜坡内的贡献显著减少,这些浮岩往往形成厘米至厘米尺度的横向不连续互层。沉积学研究结果与成岩数据的结合,增强了对下Lekhwair组储层质量的起源和变化的理解。更详细地说,最好的储层质量发生在胶结不良、富含Lithocodium/ bacinella的浮岩中,这些浮岩具有颗粒支撑基质,有利于保存以大孔为主的孔隙系统,从而使流体有效流动。相比之下,由于大孔隙的孤立性和其周围相对致密的泥晶基质,仅罕见和局部出现毫米至厘米尺度的岩心/Bacinella团块的泥质支撑结构表现出最差的储层质量。在大尺度上,下Lekhwair组储层物性呈上升趋势,与富Lithocodium/ bacinella浮岩的丰度和厚度呈上升趋势一致。下Lekhwair组沉积特征与成岩覆印相结合,显示了富岩心/ bacinella的颗粒支撑基质浮岩对储层物性分布的基础性作用。以前从未研究过Lithocodium/Bacinella浮石基质对储层性能的影响,因此它代表了一种创新元素,也是预测储层最佳性能区域分布的有力工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Insights on the Lower Lekhwair Formation offshore Abu Dhabi: Understanding the Key Role of Lithocodium/bacinella Floatstones on Large Scale Reservoir Quality Variations
The Lower Cretaceous Lekhwair Formation is one of the most prolific oil reservoirs in onshore and offshore UAE, yet the available literature on this interval remains limited. Based on a recent study carried out in collaboration with ADNOC Offshore, the present paper provides new insights into the comprehension of the interplay between primary depositional and secondary diagenetic controls on the reservoir performance, which is of crucial importance for the refinement of the static and dynamic models. In offshore Abu Dhabi, the Lower Lekhwair Formation is characterised by an alternation of relatively thick argillaceous (dense zones) and clean limestones (reservoir zones). Reservoir zones consist of basal, low to moderate energy inner ramp deposits, grading upward into thick inner and mid-ramp sediments. Lithocodium/Bacinella is the volumetrically dominant skeletal allochem and can form m-thick, stacked floatstone units. Such Lithocodium/Bacinella-rich floatstones are interpreted to originate from a mid-ramp depositional setting as a result of an increase in the accommodation space. By contrast, the contribution of Lithocodium/Bacinella floatstones is significantly reduced in inner ramp settings where these tend to form cm- to dm-scale, laterally discontinuous interbeds. The combination of sedimentological findings with diagenetic data provided an enhanced understanding of the origin and variations of the reservoir quality across the Lower Lekhwair Formation. In more detail, the best reservoir quality occurs within poorly cemented, Lithocodium/Bacinella-rich floatstones with grain-supported matrices, which favoured the preservation of a macropore-dominated pore system allowing an effective fluid flow. By contrast, the mud-supported textures with only rare and localised occurrence of mm- to cm-scale Lithocodium/Bacinella clumps, present the poorest reservoir quality due to the isolated nature of the macropores and the relatively tight micrite matrix surrounding them. At the large scale, the Lower Lekhwair shows an upward increase in reservoir quality, consistently with the upward increase in abundance and thickness of the Lithocodium/Bacinella-rich floatstones. The integration of depositional features with diagenetic overprint in the Lower Lekhwair Formation shows the fundamental role played by Lithocodium/Bacinella-rich floatstones with grain-supported matrices on the reservoir quality distribution. The impact of the Lithocodium/Bacinella floatstone matrices on the reservoir performance was never investigated before and hence represents an element of innovation and a powerful tool to predict the distribution of the areas hosting the best reservoir properties.
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