东格陵兰古近系火山裂谷边缘硅质和火山碎屑砂岩成岩作用对储层物性的影响

IF 2 4区 地球科学 Q1 GEOLOGY Journal of Sedimentary Research Pub Date : 2023-08-08 DOI:10.2110/jsr.2021.127
R. Weibel, H. Vosgerau, M. Larsen, P. Guarnieri, T. Kokfelt, K. Dideriksen, T. Balić-Žunić, B. Bell
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引用次数: 0

摘要

火山裂谷边缘序列中的硅屑和火山碎屑沉积物在埋藏过程中经历了复杂的成岩历史,对砂岩储层物性有较大影响。为了了解这种变化,研究人员对东格陵兰岛Kangerlussuaq地区一个古近系类似露头进行了初始沉积物组成和随后成岩作用变化的研究。基性火山-含砂序列由火山内砂岩组成,位于富含石英的火山前河流砂岩之上,其性质与最近在大西洋共轭边缘法罗-设得兰盆地发现的产烃砂岩的环境相当。地球化学和x射线衍射分析支持了我们对火山前和火山内砂岩的岩相学和物源研究。火山内砂岩沉积于浅海相环境,硅质碎屑和火山碎屑混合输入,火山碎屑中富含长英质至铁质火山岩碎片和长石颗粒。火山前和火山内砂岩的锆石年龄分布相似,表明在火山活动开始后,同一硅质碎屑沉积物来源继续供应。初始碎屑颗粒和孔隙流体(新鲜到海相)组成的变化导致了火山前和火山内砂岩成岩作用的不同变化。然而,当硅屑砂岩被火山碎屑岩而不是块状熔岩流覆盖时,成岩变化与火山内砂岩相似。胶结相主要为石英、伊利石(可能是钝化高岭石)和稀有锐钛矿。绿泥石、方解石、沸石/长石、蛋白石/石英和钛矿是火山内砂岩的特征自生相。火山前和火山内砂岩中不同矿物的沉淀表明,碎屑组成(以及较小程度的沉积环境)在深埋(达6-8 km)后的早期和晚期成岩作用中起主要作用。当喷发间的硅质碎屑单元由硅质碎屑和火山碎屑混合组成时,它们可能被证明是具有很高价值的储层。在地层最年轻的火山内砂岩和由透明碎屑岩或凝灰岩覆盖的火山前砂岩中,由于早期绿泥石边缘和早期沸石胶结溶解后产生的次生孔隙,在埋藏(小于5 km)期间具有较高的颗粒间孔隙保存潜力。
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Diagenetic effect on reservoir quality of siliciclastic and volcaniclastic sandstones from a Palaeogene volcanic rifted margin, East Greenland
Siliciclastic and volcaniclastic sediments in a volcanic rifted margin succession may experience a complex diagenetic history during burial that can have a large impact on sandstone reservoir properties. To understand such changes, variations in initial sediment composition and succeeding diagenetic changes have been studied for a Palaeogene outcrop analogue in the Kangerlussuaq area, East Greenland. The nature of mafic volcanic-bearing succession, which consists of intra-volcanic sandstones, accommodated over quartz-rich pre-volcanic fluvial sandstones, are comparable to the settings of recently discovered hydrocarbon-producing sandstones in the Faroe-Shetland Basin on the conjugate Atlantic margin. Our petrographic and provenance investigations of the pre- and intra-volcanic sandstones are supported by geochemical and X-ray diffraction analyses. The intra-volcanic sandstones were deposited in shallow marine environments with mixed siliciclastic and volcaniclastic input, the latter rich in felsic to m afic volcanic rock fragments and feldspar grains. Similar zircon age distributions of pre- and intra-volcanic sandstones support a continued supply from the same siliciclastic sediment source after the onset of volcanism. Variations in initial detrital grain and pore-fluid (fresh to marine) compositions resulted in different diagenetic changes in the pre- and intra-volcanic sandstones. However, where siliciclastic sandstones were overlain by volcaniclastic rocks rather than massive lava flows, the diagenetic changes resemble those of the intra-volcanic sandstones. The cementing phases are typically quartz, illite (probably illitized kaolinite), and rare anatase in the pre-volcanic sandstones. Chlorite, calcite, zeolite/feldspar, opal/quartz and titanite are characteristic authigenic phases in the intra-volcanic sandstones. Precipitation of different minerals in the pre- and intra-volcanic sandstones show that the detrital composition (and to a lesser extent depositional environment) played a major role du ring early and late diagenesis after deep burial (up to 6–8 km). Inter-eruptive siliciclastic units may prove to form highly valuable reservoirs when they are composed of mixed siliciclastic and volcaniclastic material. In the stratigraphically youngest intra-volcanic sandstones and pre-volcanic sandstones overlain by hyaloclastite or tuff, there is a high potential for interparticle porosity preservation during burial (less than 5 km) due to early chlorite rims and the generation of secondary porosity after the dissolution of early zeolite cement.
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来源期刊
CiteScore
3.80
自引率
5.00%
发文量
50
审稿时长
3 months
期刊介绍: The journal is broad and international in scope and welcomes contributions that further the fundamental understanding of sedimentary processes, the origin of sedimentary deposits, the workings of sedimentary systems, and the records of earth history contained within sedimentary rocks.
期刊最新文献
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