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Distinct element modeling of hydraulically fractured Lac du Bonnet granite

机译:水力压裂的Lac du Bonnet花岗岩的不同元素建模

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The aim of this study is to better understand the mechanics of fracture development and propagation during hydraulic fracturing. This paper presents some development and applications of discrete particle modeling of this problem. A discontinuum modeling approach idealizes the material as separate particles bonded together at their contact points and utilizes the breakage of individual structural units or bonds to represent damage. The numerical models are correlated with existing hydrofracture laboratory experiments, which are presented in other publications. A simulation of a laboratory-scale hydrofracture experiment and the acoustic emission (AE) data from the experiment is used to validate the synthetic AEs produced in the hydrofracture model. This technique has been used to examine the mechanics of fracture initiation and time and spatial distributions of AE. The modeling results demonstrate that the mechanism of hydraulically induced fracture in the Lac du Bonnet (LdB) granite core sample is predominantly tensile failure and that the shear cracks recorded in the hydrofracture experiment were due to slip on preexisting fractures. Numerical modeling of hydrofracture on homogeneous and heterogeneous synthetic samples seems to capture much of the behavior observed in the laboratory hydrofracture experiments.
机译:这项研究的目的是更好地了解水力压裂过程中裂缝发展和扩展的机理。本文介绍了此问题的离散粒子建模的一些开发和应用。不连续建模方法将材料理想化为在其接触点处粘合在一起的单独粒子,并利用单个结构单元或键的断裂来表示损坏。数值模型与其他出版物中介绍的现有水力压裂实验室实验相关。实验室规模的水力压裂实验的模拟和实验中的声发射(AE)数据用于验证水力压裂模型中产生的合成AE。该技术已被用于检查断裂萌生的机理以及AE的时间和空间分布。建模结果表明,Lac du Bonnet(LdB)花岗岩岩心样品中水力诱发的断裂机理主要是拉伸破坏,而水力压裂实验中记录的剪切裂纹是由于先前存在的断裂引起的滑动引起的。在均质和非均质合成样品上进行水力压裂的数值模型似乎捕获了实验室水力压裂实验中观察到的许多行为。

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