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Numerical Simulation of Fracking in Shale Rocks: Current State and Future Approaches

机译:页岩裂隙的数值模拟:现状和未来方法

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摘要

Extracting gas from shale rocks is one of the current engineering challenges but offers the prospect of cheap gas. Part of the development of an effective engineering solution for shale gas extraction in the future will be the availability of reliable and efficient methods of modelling the development of a fracture system, and the use of these models to guide operators in locating, drilling and pressurising wells. Numerous research papers have been dedicated to this problem, but the information is still incomplete, since a number of simplifications have been adopted such as the assumption of shale as an isotropic material. Recent works on shale characterisation have proved this assumption to be wrong. The anisotropy of shale depends significantly on the scale at which the problem is tackled (nano, micro or macroscale), suggesting that a multiscale model would be appropriate. Moreover, propagation of hydraulic fractures in such a complex medium can be difficult to model with current numerical discretisation methods. The crack propagation may not be unique, and crack branching can occur during the fracture extension. A number of natural fractures could exist in a shale deposit, so we are dealing with several cracks propagating at once over a considerable range of length scales. For all these reasons, the modelling of the fracking problem deserves considerable attention. The objective of this work is to present an overview of the hydraulic fracture of shale, introducing the most recent investigations concerning the anisotropy of shale rocks, then presenting some of the possible numerical methods that could be used to model the real fracking problem.
机译:从页岩中提取天然气是当前的工程挑战之一,但提供了廉价天然气的前景。未来开发有效的页岩气工程解决方案的一部分将包括使用可靠有效的方法对裂缝系统的开发进行建模,并利用这些模型来指导操作员进行井眼定位,钻井和加压。关于此问题的研究论文很多,但是由于采用了许多简化方法,例如将页岩假定为各向同性材料,因此信息仍然不完整。有关页岩特征的最新研究证明了这一假设是错误的。页岩的各向异性很大程度上取决于解决该问题的规模(纳米,微观或宏观),这表明多尺度模型是合适的。而且,用现有的数值离散方法很难对水力压裂在这种复杂介质中的传播进行建模。裂纹扩展可能不是唯一的,并且在裂纹扩展过程中可能会出现裂纹分支。页岩沉积物中可能存在许多天然裂缝,因此我们正在处理多个裂缝,这些裂缝在相当长的长度范围内同时传播。由于所有这些原因,压裂问题的建模值得引起广泛关注。这项工作的目的是概述页岩的水力压裂,介绍有关页岩岩石各向异性的最新研究,然后提出一些可用于模拟实际压裂问题的数值方法。

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