...
首页> 外文期刊>Marine and Petroleum Geology >Burrowed matrix powering dual porosity systems - A case study from the Maastrichtian chalk of the Gullfaks Field, Norwegian North Sea
【24h】

Burrowed matrix powering dual porosity systems - A case study from the Maastrichtian chalk of the Gullfaks Field, Norwegian North Sea

机译:挖洞的矩阵供电双孔隙度系统 - 来自挪威北海的古桥田Maastrichtian粉笔的案例研究

获取原文
获取原文并翻译 | 示例
           

摘要

Chalk reservoirs are commonly modelled as dual-porosity systems, in which a very porous but low permeable matrix is intersected by highly permeable vugs and fractures from which oil and gas can be produced. The Gullfaks Field in the Norwegian North Sea contains such a reservoir, which is producing from Maastrichtian chalk in addition to the conventional Triassic and Jurassic siliciclastic reservoirs. However, in comparison to the prolific chalk fields in the southern North Sea (e.g. Ekofisk, Valhall), chalk reservoirs in the northern part (e.g. Oseberg and Gullfaks fields) experience challenged production due to reservoir presence and quality related to depositional facies and structural conditions. Analyses of cores from three wells in the Maastrichtian Shetland Group of the Gullfaks Field reveal that this interval is completely bioturbated during several stages, e.g. mottling with diffuse bioturbated texture in an early softground stage that became subsequently overprinted by more discrete burrows with active and passive fill and different rock properties during the stiffground and firmground stages of the ooze. A rich and moderately diverse trace-fossil assemblage consists of abundant Zoophycos, common Chondrites, Taenidium, Thalassinoides and Virgatchnus, and rare Nereites, Planolites, Spirophyton and Teichichnus. Ichnological features allow the differentiation of five recurrent ichnofabrics (Thalassinoides, Zoophycos, Chondrites, Nereites and Zoophycos-Taenidium ichnofabrics) with variable influence on porosity and permeability. The Thalassinoides ichnofabric in chalk has the highest impact on improving reservoir quality, whereas Zoophycos and partly Chondrites ichnofabrics, in marly chalk and chalky marlstone respectively, contribute to creating potential reservoir zones if burrow density is high enough. Thin-section analysis of the different ichnofabrics illustrates the negative or positive effect of burrows on porosity distribution, whereas micro CT imaging reveals an intriguing system of partly open micro-burrows (e.g. Virgaichnus) within the matrix, which serves as source for porosity. This burrow porosity provides a connection in the matrix that hosts open vugs and fractures, thus improving oil production.
机译:粉笔储存器通常是为双孔隙度系统建模的,其中通过高渗透的Vug和裂缝可以产生非常多孔但低渗透性基质。挪威北海的Gullfaks领域包含这样的水库,除了传统的三叠系和侏罗纪硅质水库之外,还从Maastrichtian粉笔生产。然而,与北海南海(例如Ekofisk,Valhall)的多产粉笔领域相比,北部的粉笔储存器(例如Oseberg和Gullfaks领域)由于储层存在和与沉积面和结构条件相关的质量而受到挑战的产量。来自Maastrichtian Shetland小组的三个井中的核心分析揭示了这种间隔在几个阶段中完全生物化,例如,在早期的软阶段中散布漫反射的纹理,随后被更多的离散洞穴在漏斗和渗漏的固有填充和不同的岩石属性中叠印。丰富和中等多样化的痕量化石组合包括丰富的血症,常见的细胞菌,鸟癣,丘脑骨和维氏菌,以及稀有的内部,普莱斯,螺旋膜和Teichichnus。 Ichnological特征允许分化五种复发性ICHNOFABRICS(丘脑骨,Zroophycos,Chondrites,基础和Zoophycos-Taenidium Ichnofabrics的分化,对孔隙率和渗透性的可变影响。 Chalk中的丘脑骨甲基诺骨谱对改善水库质量的影响最高,而Zoophycos和部分Chondrites Ichnofabrics分别在Marly Chalk和Chalky Marlstone中有助于创建潜在的水库区域,如果洞穴密度足够高,有助于创造潜在的水库区域。不同ICHNOFABRICS的薄剖视分析说明了沟槽对孔隙率分布的负面或正效应,而微型CT成像揭示了基质内部的部分开放的微颊(例如VIRGAICHNUS)的有趣系统,其用作孔隙率的源极。这种洞穴孔隙度在托管打开的Vug和骨折的基质中提供了连接,从而改善了石油生产。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号