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Numerical evaluation of mean-field homogenisation methods for predicting shale elastic response

机译:平均场均质化方法预测页岩弹性响应的数值评估

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Homogenisation techniques have been successfully used to estimate the mechanical response of synthetic composite materials, due to their ability to relate the macroscopic mechanical response to the material microstructure. The adoption of these mean-field techniques in geo-composites such as shales is attractive, partly because of the practical difficulties associated with the experimental characterisation of these highly heterogeneous materials. In this paper, numerical modelling has been undertaken to investigate the applicability of homogenisation methods in predicting the macroscopic, elastic response of clayey rocks. The rocks are considered as two-level composites consisting of a porous clay matrix at the first level and a matrix-inclusion morphology at the second level. The simulated microstructures ranged from a simple system of one inclusion/void embedded in a matrix to complex, random microstructures. The effectiveness and limitations of the different homogenisation schemes were demonstrated through a comparative evaluation of the macroscopic elastic response, illustrating the appropriate schemes for upscaling the microstructure of shales. Based on the numerical simulations and existing experimental observations, a randomly distributed pore system for the micro-structure of porous clay matrix has been proposed which can be used for the subsequent development and validation of shale constitutive models. Finally, the homogenisation techniques were used to predict the experimental measurements of elastic response of shale core samples. The developed methodology is proved to be a valuable tool for verifying the accuracy and performance of the homogenisation techniques.
机译:均质化技术已成功用于估算合成复合材料的机械响应,这是因为它们具有将宏观机械响应与材料微观结构相关联的能力。这些平均场技术在诸如页岩之类的地质复合物中的采用很有吸引力,部分原因是与这些高度异质材料的实验表征相关的实际困难。在本文中,已经进行了数值建模以研究均质化方法在预测黏土岩石的宏观弹性响应中的适用性。岩石被认为是由第一层的多孔粘土基质和第二层的基质-包裹体形态组成的两层复合物。模拟的微观结构从将一个包含物/空隙嵌入基质的简单系统到复杂的随机微观结构不等。通过对宏观弹性响应的比较评估,证明了不同均质方案的有效性和局限性,说明了提高页岩微观结构的合适方案。基于数值模拟和已有的实验观察,提出了一种用于多孔黏土基体微观结构的随机分布的孔隙系统,该系统可用于页岩本构模型的后续开发和验证。最后,均质技术被用来预测页岩岩心样品弹性响应的实验测量值。事实证明,所开发的方法学是验证均质技术准确性和性能的宝贵工具。

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