澳大利亚南悉尼盆地Hawkesbury砂岩岩石学、成岩作用及储层物性

F. Algahtani
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引用次数: 1

摘要

利用薄片、扫描电镜和x射线衍射技术对霍克斯伯里砂岩的岩石学进行了描述。霍克斯伯里砂岩以石英为主,含极少量长石、岩屑、云母及重矿物。霍克斯伯里砂岩为石英砂质至次岩屑砂质。石英包括单晶和多晶晶粒,长石包括钾长石和斜长石。火山、沉积岩和燧石岩碎片存在。霍克斯伯里砂岩(Hawkesbury Sandstone),尤其是粗粒砂岩(粗粒砂岩)中存在薄层孔隙。霍克斯伯里砂岩中原生孔隙比次生孔隙更为常见。利用薄片和扫描电镜研究了霍克斯伯里砂岩的成岩蚀变及其对孔隙度的影响。这些成岩蚀变包括压实作用、石英过度生长、自生粘土矿物和碳酸盐胶结物。在整个成岩作用过程中,霍克斯伯里砂岩都发生了压实作用。化学压实作用对霍克斯伯里砂岩薄片孔隙度的影响较大。石英过度生长在霍克斯伯里砂岩中很常见,它们对孔隙度有很强的影响。自生粘土矿物广泛存在于霍克斯伯里砂岩充填孔隙中,并以颗粒包覆形式出现在碎屑和自生颗粒上。当它们覆盖在石英颗粒上时,它们通过防止石英过度生长来保持孔隙度。碳酸盐胶结物充填孔隙降低了孔隙度,而碳酸盐溶蚀导致了次生孔隙度。霍克斯伯里砂岩中没有不稳定长石和岩屑颗粒的溶蚀作用。霍克斯伯里砂岩具有原生孔隙和次生孔隙的特点,具有良好的地下水储集和渗流潜力。霍克斯伯里砂岩中普遍存在中、粗粒砂岩层,但其孔隙度呈纵向变化。霍克斯伯里砂岩中有少量不透水的页岩和粉砂岩单元,形成局部围合层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Petrology, Diagenesis and Reservoir Quality in the Hawkesbury Sandstone,Southern Sydney Basin, Australia
Petrography of the Hawkesbury Sandstone was described by thin section, scanning electron microscope and Xray diffraction techniques. Quartz is dominant in the Hawkesbury Sandstone which contains very minor feldspar, lithic grains, mica and heavy minerals. The Hawkesbury Sandstone is quartzarenite to sublitharenite. Quartz includes monocrystalline and polycrystalline grains while the feldspar includes both K-feldspar and plagioclase. Volcanic, sedimentary and chert rock fragments are present. Thin section porosity occurs in the Hawkesbury Sandstone, particularly the coarse-grained deposits. Primary porosity is more common than secondary porosity in the Hawkesbury Sandstone. Thin sections and scanning electron microscopy were used to describe diagenetic alterations and their influence on porosity in Hawkesbury Sandstone. These diagenetic alterations include compaction, quartz overgrowths, authigenicclay minerals and carbonate cement. Compaction occurred in the Hawkesbury Sandstoneduring throughout diagenesis. The influence of chemical compaction on thin section porosity was greater in the Hawkesbury Sandstone. Quartz overgrowths are common in the Hawkesbury Sandstone where they have a strong influence on porosity. Authigenic clay minerals are the widespread in the Hawkesbury Sandstone filling pores and occurring as grain-coatings on detrital and authigenic grains. Where they coat quartz grains they preserve porosity by preventing growth of quartz overgrowths. Pore-filling carbonate cement reduced porosity whereas dissolution of carbonate resulted in secondary porosity. Dissolution of unstable feldspar and lithic grains is absent in the Hawkesbury Sandstone. The Hawkesbury Sandstone is characterized by primary and secondary porosity, thus it has good groundwater storage and flow potential. Medium- and coarse-grained sandstone beds are common in the Hawkesbury Sandstone but it shows vertical variations in porosity. A few impermeable shale and siltstone units occur in the Hawkesbury Sandstone forming local confining layers.
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