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Pore structures evaluation of low permeability clastic reservoirs based on petrophysical facies: A case study on Chang 8 reservoir in the Jiyuan region, Ordos Basin

机译:基于岩石物相的低渗透碎屑岩储层孔隙结构评价-以鄂尔多斯盆地济源地区长8储层为例

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The sedimentary facies, diagenetic facies and fracture facies of the Upper Triassic Yanchang Formation Member 8 (Chang 8) reservoir in the Jiyuan region were studied using core observation, thin section, logging and drilling data. On this basis, the petrophysical faices of Chang 8 oil layers were examined to evaluate the pore structure by classification and predict zones with high porosity and permeability. The petrophysical facies were divided according to the superposition and combination of sedimentary facies, diagenetic facies and fracture facies. A number of petrophysical facies of Chang 8 oil layers such as underwater distributary channel, dissolution of unstable components, high-angle fracture, were identified in this way. Four main categories of petrophysical facies were summed up according to the constructive and destructive impact of sedimentary facies, diagenetic facies and fracture facies on the reservoir property and pore structure. Since the reservoir quality index (RQI) is an optimal indicator for describing the reservoir micro-pore structure quantitatively, the value ofRQIof different petrophysical facies was calculated respectively. So the classification and evaluation of Chang 8 reservoir pore structure in a single well were realized by the division of petrophysical facies combined with logging data. At last, the vertical and horizontal distribution of sedimentary micro-facies and diagenetic facies of each single layer of Chang 8 oil layers were mapped, the distribution of favorable petrophysical facies can be used to predict the zones with high porosity and permeability.
机译:利用岩心观测,薄片,测井和钻探资料,研究了济源地区上三叠统延长组长8(长8)储层的沉积相,成岩相和断裂相。在此基础上,研究了长8油层的岩石物理特征,通过分类评价孔隙结构,并预测具有高孔隙度和高渗透率的区域。根据沉积相,成岩相和裂缝相的叠加与组合,划分了岩石物相。以此方式确定了长8油层的许多岩石物相,例如水下分流通道,不稳定组分的溶解,高角度裂缝。根据沉积相,成岩相和裂缝相对储层物性和孔隙结构的建设性和破坏性作用,总结出了四类主要的岩石物性相。由于储层质量指数(RQI)是定量描述储层微孔结构的最佳指标,因此分别计算了不同物性相的RQI值。通过岩石物相相结合测井资料,实现了单井长8储层孔隙结构的分类与评价。最后,绘制了长8油层各单层沉积微相和成岩相的纵横分布图,可以利用有利的岩石物理相的分布来预测高孔隙度和渗透率的区域。

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