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首页> 外文期刊>Arabian journal of geosciences >Cluster spacing optimization of multi-stage fracturing in horizontal shale gas wells based on stimulated reservoir volume evaluation
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Cluster spacing optimization of multi-stage fracturing in horizontal shale gas wells based on stimulated reservoir volume evaluation

机译:基于刺激储层卷评估的水平页岩气井多阶段压裂的簇间距优化

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摘要

The multi-stage fracturing in horizontal well is a common technique for shale gas reservoir exploitation, in which cluster spacing governs the fracturing performance. Undersized cluster spacing might make the stimulated reservoir volume (SRV), activated by the respective hydraulic fracture, excessively overlap with each other, while oversized cluster spacing might leave a large unstimulated volume between neighboring hydraulic fractures; in either case, fracturing would be inefficient. Previous design of cluster spacing has failed to maximize the SRV due to the absence of a dynamic SRV evaluation model. A numerical model of SRV evaluation in shale reservoir was established by integrating four main modules, including fracture propagation, reservoir pressure distribution, formation stress distribution, and natural fracture failure criterion. Then, a method to optimize cluster spacing was developed with the goal of maximizing SRV. In order to validate this method, it was applied in Fuling shale gas reservoir in Southwest China to determine the optimal cluster spacing. The sensitivity of key parameters on the optimal cluster spacing has been analyzed. This research proposed a compelling cluster spacing optimization method, which could reduce the uncertainty in cluster spacing design, and provides some new insights on the optimal design of multi-stage fracturing in horizontal shale gas well.
机译:水平井的多级压裂是页岩气储层剥削的常见技术,其中簇间距控制压裂性能。尺寸的簇间距可能使受刺激的储存量(SRV)由各自的液压断裂激活,彼此过度重叠,而过大的簇间距可能会在相邻的液压骨折之间留下大的未刺激体积;在任何一种情况下,压裂都会效率低下。由于不存在动态SRV评估模型,以前的簇间距设计未能最大化SRV。通过整合四个主要模块建立了页岩储层中SRV评估的数值模型,包括断裂传播,储层压力分布,形成应力分布和自然骨折故障标准。然后,开发了一种优化簇间距的方法,其目的是最大化SRV。为了验证这种方法,它应用于中国西南部的涪陵页岩气水库,以确定最佳的集群间距。分析了关键参数对最佳簇间距的敏感性。该研究提出了一种引人注目的簇间距优化方法,可以降低集群间距设计中的不确定性,并对水平页岩气井的多级压裂最优设计提供了一些新的见解。

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