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首页> 外文期刊>Journal of South American earth sciences >Patterns and origins of the porosity in the productive reservoirs of the upper part of the Chubut Group, southern flank of the Golfo de San Jorge Basin, Patagonia Argentina
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Patterns and origins of the porosity in the productive reservoirs of the upper part of the Chubut Group, southern flank of the Golfo de San Jorge Basin, Patagonia Argentina

机译:阿根廷巴塔哥尼亚Golfo de San Jorge盆地南翼Chubut Group上部生产储层的孔隙模式和成因

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摘要

The Mina del Carmen, Bajo Barreal and Cailaclon Seco Formations bear the most important Cretaceous reservoirs in the southern flank of the Golfo de San Jorge Basin, in which the porosity is mainly secondary in origin. Primary porosity is about 4% in average and can be divided in intergranular and intercrystalline porosity, the former is better preserved where chlorite rim cement is abundant, and the second occurs among crystals of the clay cement (main kaolinite). Secondary porosity comprises dissolution of feldspar, ductile fragments, clay cements, lithic grains, and carbonate-zeolite cements.Dissolution of feldspar produces the formation of authigenic kaolinite and secondary porosity; this mechanism dominates in the western area of the southern flank due to sandstones show higher amounts of plagioclase grains, which were very reactive to diagenetic dissolution. Ductile fragments, composed of tuffaceous mudstones (probably of intrabasinal origin), were strongly deformed during the compaction reducing the primary porosity and closing the pore system. Nevertheless, in sandstones containing similar proportions of intrabasinal and extrabasinal clasts, some ductile grains suffered massive dissolution increasing the secondary porosity. Another source of secondary porosity comprises the dissolution of tuff fragments, and locally, carbonate and zeolite cements.The secondary porosity includes the types redistributional (RDS) and pervasive (PVS). This division can be related to previous diagenetic model for the Bajo Barreal Formation. In this way, redistributional secondary porosity is linked to the first and the second events of diagenetic dissolution, while the pervasive secondary porosity to the third dissolution event, which likely had a telogenetic origin.
机译:Mina del Carmen,Bajo Barreal和Cailaclon Seco地层是Golfo de San Jorge盆地南部侧面最重要的白垩纪储层,其中孔隙度主要来自次生。一次孔隙度平均约为4%,可以分为晶间孔隙度和结晶间孔隙度,前者在绿泥石边缘水泥含量丰富的地方保存得更好,而第二次发生在粘土水泥(主要是高岭石)的晶体中。次生孔隙包括长石的溶解,韧性碎片,黏土水泥,岩性颗粒和碳酸盐-沸石水泥。长石的溶解会导致自生高岭石的形成和次生孔隙。由于砂岩显示出更多的斜长石颗粒,这些机制对成岩作用非常敏感,因此这种机制在南部侧翼的西部占主导。由凝灰质泥岩组成的延性碎片(可能是基底内起源)在压实过程中发生了强烈变形,从而降低了主要孔隙度并封闭了孔隙系统。然而,在含相似比例的基底内和基底外碎屑的砂岩中,一些韧性颗粒遭受大量溶解,从而增加了次生孔隙度。次生孔隙的另一个来源包括凝灰岩碎片的溶解以及碳酸盐和沸石水泥的局部溶解。次生孔隙包括再分布类型(RDS)和渗透型(PVS)。该划分可能与Bajo Barreal组的先前成岩模型有关。这样,再分布的次生孔隙度与成岩作用的第一和第二个事件相关,而普遍的次生孔隙度与成岩作用的第三次溶解事件有关。

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