Impact of sediment provenance and depositional setting on chlorite content in Cretaceous turbiditic sandstones, Norway

IF 2.8 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Basin Research Pub Date : 2024-05-14 DOI:10.1111/bre.12867
Fares Azzam, Thomas Blaise, Patricia Patrier, Daniel Beaufort, Jocelyn Barbarand, Ahmed Abd Elmola, Benjamin Brigaud, Eric Portier, Sylvain Clerc
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Abstract

Chlorite minerals, mainly in the form of clay coats, play a critical role in determining the reservoir quality of siliciclastic rocks. They can positively influence reservoir quality by preserving porosity during deep burial, but they can also play a negative role by reducing permeability through pore filling. The main aim of this research is to determine the optimal conditions for chlorite growth in sedimentary basins. This study investigates the Lower Cretaceous turbidite sandstone of the Agat Formation in the North Sea. We used a source-to-sink approach to investigate the impact of sediment source composition, chemical weathering and depositional environment on chlorite formation. Understanding the interplay between these processes can help refine exploration and exploitation strategies, optimise hydrocarbon recovery, and reduce exploration risks. Representative samples from two hydrocarbon fields (the Duva and Agat fields) were investigated using petrography, geochemistry, heavy mineral identification and quantification, and U–Pb geochronology of detrital zircons. Our results show a strong heterogeneity in the sediment provenance between the two turbidite systems. In the Duva field, the sandstone is derived from a mixture of mafic and felsic sources, producing Fe-rich sediments. Intense chemical weathering generates fine fraction materials rich in kaolinite, vermiculite, and hydroxy-interlayered clays, which are transported into shallow marine settings. Subsequent interaction with seawater results in the formation of glauconitic materials, Fe-illite, and phosphatic concretions. These Fe-rich materials are remobilised into deep marine settings, providing precursors for the development of authigenic Fe-clays such as berthierine and chlorite. Conversely, in the Agat field, the sandstone is predominantly sourced from felsic rocks that underwent low chemical weathering, producing sediment rich in quartz and feldspar with a low amount of clays. With few Fe-rich materials transported into the basin, the development of chlorite in the Agat field was less pervasive. Basin configuration and depositional environment exerted additional control on chlorite distribution. In the confined turbidite system (e.g. Duva field), chlorite is typically found as coating, whereas in less confined turbidite systems (e.g. Agat field) chlorite shows complex distribution related to depositional environment and dewatering processes. Our findings demonstrate the importance of considering the entire sediment routing system, from source to sink, when predicting chlorite occurrence and its impact on reservoir quality in deep marine settings. This integrated approach can guide exploration and development efforts in deepwater clastic reservoirs.

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挪威白垩纪浊积砂岩中沉积物来源和沉积环境对绿泥石含量的影响
绿泥石矿物主要以粘土包衣的形式存在,在决定硅质岩储层质量方面起着至关重要的作用。它们可以在深埋过程中保持孔隙度,从而对储层质量产生积极影响,但也可以通过孔隙填充降低渗透率,从而起到消极作用。本研究的主要目的是确定沉积盆地中绿泥石生长的最佳条件。本研究调查了北海阿加特地层的下白垩统浊积砂岩。我们采用了从源到汇的方法来研究沉积物源成分、化学风化和沉积环境对绿泥石形成的影响。了解这些过程之间的相互作用有助于完善勘探和开采战略、优化碳氢化合物回收并降低勘探风险。我们利用岩石学、地球化学、重矿物鉴定和定量以及脆性锆石的铀-铅地质年代,对两个油气田(杜瓦油气田和阿加特油气田)的代表性样本进行了研究。我们的研究结果表明,两个浊积岩系统的沉积物来源具有很强的异质性。在杜瓦岩田,砂岩来自黑云母和长石的混合来源,产生富含铁的沉积物。强烈的化学风化作用产生了富含高岭石、蛭石和羟基夹层粘土的细粒物质,这些物质被输送到浅海环境中。随后与海水发生作用,形成了褐铁矿物质、铁闪长岩和磷凝块。这些富含铁的物质被重新移动到深海环境中,为自生铁质粘土(如贝铁矿和绿泥石)的形成提供了前体。相反,在阿加特油田,砂岩主要来源于化学风化程度较低的长英岩,沉积物富含石英和长石,粘土含量较低。由于运入盆地的富铁物质较少,因此阿加特油田的绿泥石发育不太普遍。盆地构造和沉积环境对绿泥石的分布有额外的控制作用。在封闭的浊积岩系统(如杜瓦岩田)中,绿泥石通常以包裹体的形式存在,而在封闭性较弱的浊积岩系统(如阿加特岩田)中,绿泥石的分布则与沉积环境和脱水过程有关。我们的研究结果表明,在预测深海环境中绿泥石的出现及其对储层质量的影响时,考虑从源到汇的整个沉积路由系统非常重要。这种综合方法可以指导深水碎屑岩储层的勘探和开发工作。
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来源期刊
Basin Research
Basin Research 地学-地球科学综合
CiteScore
7.00
自引率
9.40%
发文量
88
审稿时长
>12 weeks
期刊介绍: Basin Research is an international journal which aims to publish original, high impact research papers on sedimentary basin systems. We view integrated, interdisciplinary research as being essential for the advancement of the subject area; therefore, we do not seek manuscripts focused purely on sedimentology, structural geology, or geophysics that have a natural home in specialist journals. Rather, we seek manuscripts that treat sedimentary basins as multi-component systems that require a multi-faceted approach to advance our understanding of their development. During deposition and subsidence we are concerned with large-scale geodynamic processes, heat flow, fluid flow, strain distribution, seismic and sequence stratigraphy, modelling, burial and inversion histories. In addition, we view the development of the source area, in terms of drainage networks, climate, erosion, denudation and sediment routing systems as vital to sedimentary basin systems. The underpinning requirement is that a contribution should be of interest to earth scientists of more than one discipline.
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