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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Theoretical and Numerical Models to Predict Fracking Debonding Zone and Optimize Perforation Cluster Spacing in Layered Shale
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Theoretical and Numerical Models to Predict Fracking Debonding Zone and Optimize Perforation Cluster Spacing in Layered Shale

机译:预测压裂剥离区的理论和数值模型及分层页岩中优化穿孔簇间距

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摘要

Shale is a typical layered and anisotropic material whose properties are characterized primarily by locally oriented anisotropic clay minerals and naturally formed bedding planes. The debonding of the bedding planes will greatly influence the shale fracking to form a large-scale highly permeable fracture network, named stimulated reservoir volume (SRV). In this paper, both theoretical and numerical models are developed to quantitatively predict the growth of debonding zone in layered shale under fracking, and the good agreement is obtained between the theoretical and numerical prediction results. Two dimensionless parameters are proposed to characterize the conditions of tensile and shear debonding in bedding planes. It is found that debonding is mainly caused by the shear failure of bedding planes in the actual reservoir. Then the theoretical model is applied to design the perforation cluster spacing to optimize SRV, which is important in fracking. If the spacing is too small, there will be overlapping areas of SRV and the fracking efficiency is low. If the spacing is too large, there will be stratum that cannot be stimulated. So another two dimensionless parameters are proposed to evaluate the size and efficiency of stimulating volume at the same time. By maximizing these two parameters, the optimal perforation cluster spacing and SRV can be quantitatively calculated to guide the fracking treatment design. These results are comparable with data from the field engineering.
机译:页岩是一种典型的分层和各向异性材料,其性质主要是由局部定向的各向异性粘土矿物和天然形成的床上用品平面的特征。盖板飞机的剥离将大大影响页岩压裂,形成一个名为刺激的储层体积(SRV)的大规模高度渗透性骨折网络。在本文中,制定了理论和数值模型,以定量预测分层页岩下压裂的借应区的生长,并且在理论和数值预测结果之间获得了良好的一致性。提出了两种无量纲参数,以表征床上用品中拉伸和剪切剥离条件。发现剥离主要是由实际水库中床上用品的剪切失效引起的。然后应用理论模型来设计穿孔簇间距以优化SRV,这在压裂方面是重要的。如果间距太小,则会有SRV的重叠区域,压裂效率低。如果间距太大,则会有没有刺激的层。因此,提出了另外两种无量纲参数,同时评估刺激体积的尺寸和效率。通过最大化这两个参数,可以定量地计算最佳穿孔簇间距和SRV以引导压裂处理设计。这些结果与现场工程的数据相当。

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