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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Diagenetic Evolution and Reservoir Quality of Sandstones in the North Alpine Foreland Basin: A Microscale Approach
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Diagenetic Evolution and Reservoir Quality of Sandstones in the North Alpine Foreland Basin: A Microscale Approach

机译:北部高寒前陆盆地砂岩成岩演化与储层质量的微观研究

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Siliciclastic reservoir rocks of the North Alpine Foreland Basin were studied focusing on investigations of pore fillings. Conventional oil and gas production requires certain thresholds of porosity and permeability. These parameters are controlled by the size and shape of grains and diagenetic processes like compaction, dissolution, and precipitation of mineral phases. In an attempt to estimate the impact of these factors, conventional microscopy, high resolution scanning electron microscopy, and wavelength dispersive element mapping were applied. Rock types were established accordingly, considering Poro/Perm data. Reservoir properties in shallow marine Cenomanian sandstones are mainly controlled by the degree of diagenetic calcite precipitation, Turonian rocks are characterized by reduced permeability, even for weakly cemented layers, due to higher matrix content as a result of lower depositional energy. Eocene subarkoses tend to be coarse-grained with minor matrix content as a result of their fluvio-deltaic and coastal deposition. Reservoir quality is therefore controlled by diagenetic clay and minor calcite cementation.Although Eocene rocks are often matrix free, occasionally a clay mineral matrix may be present and influence cementation of pores during early diagenesis. Oligo-/Miocene deep marine rocks exhibit excellent quality in cases when early cement is dissolved and not replaced by secondary calcite, mainly bound to the gas-water contact within hydrocarbon reservoirs.
机译:对北部高寒前陆盆地的硅质碎屑岩储集岩进行了研究,重点是孔隙填充研究。常规的石油和天然气生产需要一定的孔隙率和渗透率阈值。这些参数由晶粒的大小和形状以及成岩过程(如压实,溶解和矿物相沉淀)控制。为了估计这些因素的影响,应用了常规显微镜,高分辨率扫描电子显微镜和波长色散元件图。考虑到Poro / Perm数据,相应地确定了岩石类型。浅海海洋Cenomanian砂岩的储层性质主要受成岩方解石沉淀程度控制,Turonian岩石的特征是渗透率降低,即使对于弱胶结层也是如此,这是由于较低的沉积能导致较高的基质含量。始新世次黑糖由于其河三角洲和沿海沉积而趋于粗粒化,基质含量较少。因此,储层质量受成岩粘土和少量方解石胶结作用的控制。尽管始新世岩石通常不含基质,但有时可能存在粘土矿物基质,并在成岩初期影响孔隙的胶结作用。在早期水泥溶解且不被次方解石取代的情况下,低聚/中新世深海岩石表现出优异的质量,次生方解石主要与油气藏内部的气水接触有关。

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