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Estimating elastic moduli of rocks from thin sections: Digital rock study of 3D properties from 2D images

机译:估算薄壁岩石的弹性模量:从2D图像进行3D特性的数字岩石研究

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Estimation of elastic rock moduli using 2D plane strain computations from thin sections has several numerical and analytical advantages over using 3D rock images, including faster computation, smaller memory requirements, and the availability of cheap thin sections. These advantages, however, must be weighed against the estimation accuracy of 3D rock properties from thin sections. We present a new method for predicting elastic properties of natural rocks using thin sections. Our method is based on a simple power-law transform that correlates computed 2D thin section moduli and the corresponding 3D rock moduli. The validity of this transform is established using a dataset comprised of FEM-computed elastic moduli of rock samples from various geologic formations, including Fontainebleau sandstone, Berea sandstone, Bituminous sand, and Grossmont carbonate. We note that using the power-law transform with a power-law coefficient between 0.4-0.6 contains 2D moduli to 3D moduli transformations for all rocks that are considered in this study. We also find that reliable estimates of P-wave (Vp) and S-wave velocity (Vs) trends can be obtained using 2D thin sections. (C) 2015 Elsevier Ltd. All rights reserved.
机译:与使用3D岩石图像相比,使用薄层的2D平面应变计算来估算弹性岩石模量具有多个数值和分析优势,包括更快的计算,更小的存储需求以及廉价的薄层的可用性。但是,必须权衡这些优势与薄截面3D岩石特性的估计精度。我们提出了一种使用薄截面来预测天然岩石弹性特性的新方法。我们的方法基于简单的幂律变换,该变换将计算出的2D薄片模量与相应的3D岩石模量相关联。使用包含FEM计算的来自各种地质构造的岩石样品的弹性模量组成的数据集来确定这种转换的有效性,这些岩石样品包括枫丹白露砂岩,Berea砂岩,沥青砂和Grossmont碳酸盐。我们注意到,对于本研究中考虑的所有岩石,使用幂律系数在0.4-0.6之间的幂律变换都包含2D模数到3D模数变换。我们还发现,使用2D薄截面可以得到可靠的P波(Vp)和S波速度(Vs)趋势估计。 (C)2015 Elsevier Ltd.保留所有权利。

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