On averaging of toughness heterogeneity when modelling hydraulic fracture evolution

M. Dutko, G. da Fies, D. Peck, Gennady Mishuris
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引用次数: 1

Abstract

In this paper we describe various approaches used to capture heterogeneity within the reservoir undergoing hydraulic fracturing treatment and their implication on modelling of fracture propagation. In highly laminated reservoirs with soft and/or weak layers, capturing heterogeneity at an appropriate resolution is the key for successful prediction fracture growth and other crucial treatment parameters. Our focus is on studying several strategies to average fracture toughness and assess their suitability for use in advanced computational methods such as FE/BEM. In practice the well log and petrophysical data deduced from various measurements and observations are upscaled and/or homogenized to the spatial approximation size. The fracture toughness is one of the most delicate physical parameters and application of the homogenization techniques are rather uncertain, hence any proposed averaging will depend on process conditions and the toughness distribution. We propose and analyse a notion of an average toughness and show that it is a process dependent variable and provide some recommendations how to implement the defined measure into the numerical modelling. As an example, we use periodic distributions and consider model without leak off that allows us straightforward handling different regimes (toughness/viscosity).
水力裂缝演化建模中韧性非均质化的研究
在本文中,我们描述了用于捕获水力压裂处理的储层非均质性的各种方法及其对裂缝扩展建模的意义。在具有柔软和/或薄弱层的高层状油藏中,以适当的分辨率捕获非均质性是成功预测裂缝生长和其他关键处理参数的关键。我们的重点是研究几种平均断裂韧性的策略,并评估它们在先进计算方法(如有限元/边界元法)中的适用性。在实践中,从各种测量和观察中推断出的测井和岩石物理数据被放大和/或均匀化到空间近似尺寸。断裂韧性是最微妙的物理参数之一,均匀化技术的应用具有很大的不确定性,因此任何建议的平均将取决于工艺条件和韧性分布。我们提出并分析了平均韧性的概念,并表明它是一个过程相关变量,并提供了一些如何将定义的测量实现到数值模拟中的建议。例如,我们使用周期性分布并考虑无泄漏模型,这使得我们可以直接处理不同的制度(韧性/粘度)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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