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首页> 外文期刊>Journal of geophysics and engineering >Pore facies analysis: incorporation of rock properties into pore geometry based classes in a Permo-Triassic carbonate reservoir in the Persian Gulf
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Pore facies analysis: incorporation of rock properties into pore geometry based classes in a Permo-Triassic carbonate reservoir in the Persian Gulf

机译:孔隙相分析:在波斯湾二叠系-三叠纪碳酸盐岩储层中将岩石性质纳入基于孔隙几何的类中

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Pore facies analysis is a useful method for the classification of reservoir rocks according to pore geometry characteristics. The importance of this method is related to the dependence of the dynamic behaviour of the reservoir rock on the pore geometry. In this study, pore facies analysis was performed by the quantification and classification of the mercury injection capillary pressure (MICP) curves applying the multi-resolution graph-based clustering (MRGC) method. Each pore facies includes a limited variety of rock samples with different depositional fabrics and diagenetic histories, which are representative of one type of pore geometry. The present pore geometry is the result of the interaction between the primary rock fabric and its diagenetic overprint. Thus the variations in petrographic properties can be correlated with the pore geometry characteristics. Accordingly, the controlling parameters in the pore geometry characteristics were revealed by detailed petrographic analysis in each pore facies. The reservoir rock samples were then classified using the determined petrographic properties which control the pore system quality. This method is proposed for the classification of reservoir rocks in complicated carbonate reservoirs, in order to reduce the incompatibility of traditional facies analysis with pore system characteristics. The method is applicable where enough capillary pressure data is not available.
机译:孔隙相分析是一种根据孔隙几何特征对储层岩石进行分类的有用方法。该方法的重要性与储层岩石动力学行为对孔隙几何形状的依赖性有关。在这项研究中,通过使用基于多分辨率图的聚类(MRGC)方法对汞注入毛细管压力(MICP)曲线进行定量和分类,进行了孔隙相分析。每个孔相都包括有限种类的岩石样品,这些样品具有不同的沉积构造和成岩史,它们代表一种类型的孔隙几何形状。当前的孔隙几何形状是原始岩石织物与其成岩覆盖物相互作用的结果。因此,岩石学性质的变化可以与孔隙几何特征相关。因此,在每个孔隙相中通过详细的岩相分析揭示了孔隙几何特征中的控制参数。然后使用确定的岩石学性质(控制孔隙系统质量)对储层岩石样品进行分类。提出该方法用于复杂碳酸盐岩储层岩石分类,以减少传统相分析与孔隙系统特征的不兼容。该方法适用于没有足够毛细管压力数据的情况。

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