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Quantifying Rock Weakening Due to Decreasing Calcite Mineral Content by Numerical Simulations

机译:通过数值模拟量化因方解石矿物含量降低而引起的岩石弱化

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摘要

The quantification of changes in geomechanical properties due to chemical reactions is of paramount importance for geological subsurface utilisation, since mineral dissolution generally reduces rock stiffness. In the present study, the effective elastic moduli of two digital rock samples, the Fontainebleau and Bentheim sandstones, are numerically determined based on micro-CT images. Reduction in rock stiffness due to the dissolution of 10% calcite cement by volume out of the pore network is quantified for three synthetic spatial calcite distributions (coating, partial filling and random) using representative sub-cubes derived from the digital rock samples. Due to the reduced calcite content, bulk and shear moduli decrease by 34% and 38% in maximum, respectively. Total porosity is clearly the dominant parameter, while spatial calcite distribution has a minor impact, except for a randomly chosen cement distribution within the pore network. Moreover, applying an initial stiffness reduced by 47% for the calcite cement results only in a slightly weaker mechanical behaviour. Using the quantitative approach introduced here substantially improves the accuracy of predictions in elastic rock properties compared to general analytical methods, and further enables quantification of uncertainties related to spatial variations in porosity and mineral distribution.
机译:由于矿物溶解通常会降低岩石的刚度,因此对由于化学反应而引起的地质力学性质变化的量化至关重要。在本研究中,基于微型CT图像,数值确定了两个数字岩石样品,枫丹白露和本特海姆砂岩的有效弹性模量。使用从数字岩石样品中获得的代表性子立方体,对三种合成的空间方解石分布(涂层,部分填充和无规)量化了由于体积比10%的方解石水泥从孔隙网络中溶出而导致的岩石刚度降低。由于方解石含量降低,体积模量和剪切模量分别最大降低了34%和38%。总孔隙率显然是主要参数,而方解石的空间分布影响较小,除了在孔隙网络内随机选择水泥分布。此外,对方解石水泥施加的初始刚度降低了47%,只会导致机械性能稍弱。与一般的分析方法相比,使用此处介绍的定量方法可以大大提高弹性岩石属性预测的准确性,并且还可以量化与孔隙度和矿物分布的空间变化有关的不确定性。

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