Elastic Property Estimations Of Phyllosilicate Minerals In Shale

Venkatesh Anantharamu, L. Vernik
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Abstract

Summary Shale rocks are very significant for both unconventional and conventional hydrocarbon exploration and exploitation. The main constituents of shale are mica and clay minerals (which occupy 30–90% in volume fraction) and the remaining constituents are quartz, feldspar and carbonates. The orientation distribution of the clay minerals including mica significantly affects the elastic velocities and anisotropy of shales. For any type of rock physics modeling or anisotropy analysis, individual elastic moduli of clay minerals, their orientation distribution functions (ODF) and their volume fractions are imperative. The clay minerals are generally finegrained and it is not possible to find a single large enough crystal for acoustic measurements. In this study, we use the orientation distribution data from published literature to devise an elliptical heuristic function relating bedding-normal P- and S-wave velocity in zero-interparticle-porosity clay aggregates to their preferred orientation. Then we compute elastic moduli for the most common phyllosilicate shale minerals such as muscovite, illite and illite/smectite aggregates. These results can be used for velocity modeling and accurate reservoir property estimations from seismic.
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页岩中层状硅酸盐矿物的弹性性质评价
页岩在非常规油气勘探开发和常规油气勘探开发中都具有重要意义。页岩主要成分为云母和粘土矿物(占体积分数30 ~ 90%),其余成分为石英、长石和碳酸盐。云母等粘土矿物的取向分布对页岩的弹性速度和各向异性有显著影响。对于任何类型的岩石物理建模或各向异性分析,粘土矿物的个体弹性模量、它们的取向分布函数(ODF)和它们的体积分数是必不可少的。粘土矿物通常是细粒的,不可能找到一个足够大的晶体进行声学测量。在这项研究中,我们利用已发表的文献中的取向分布数据,设计了一个椭圆启发式函数,将零粒间孔隙度粘土聚集体的顺层法向P波和s波速度与它们的首选取向联系起来。然后我们计算了最常见的层状硅酸盐页岩矿物的弹性模量,如白云母、伊利石和伊利石/蒙脱石聚集体。这些结果可用于速度建模和准确的地震储层性质估计。
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