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Fracture Complexity Impacts on Pressure Transient Responses From Horizontal Wells Completed With Multiple Hydraulic Fracture Stages

机译:骨折复杂性对水平井的压力瞬态反应的影响,用多个液压骨折级完成

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The well and completion configuration of choice for development wells targeting unconventional gas and oil resources has become a horizontal well stimulated with multiple stages of hydraulic fracturing. The standard pressure transient model for this well and completion configuration assumes that each hydraulic stimulation stage creates one bi-wing, transverse fracture. Microseismic images of stimulation jobs in some wells support the choice of this model but many such images show an overprint of greater complexity in the geometry of the fracture system. Numerical simulator history matching of production does not definitively show that accounting for such fracture complexity is required to explain unconventional well performance data. This paper is aimed at providing some insight into how pressure transient data might be used to identify the impact of fracture complexity overprint on well response. After reviewing the limited current literature addressing this issue, fine grid numerically simulated well responses for various overprints of fracture complexity on the base multiple transverse fracture model are presented. In particular, responses for cases impacted by the following are presented: 1) opening and propping nearby natural fractures, 2) creating an arbitrarily connected network of orthogonal fractures intersecting the dominant transverse fracture system, 3) creating independent transverse fracture strands at individual perforation sets in each stage and 4) creating initially independent fracture strands at individual perforation sets which then either bifurcate into multiple strands or amalgamate into fewer dominant strands away from the well perforation. Response sensitivity to lengths and conductivities across the spectrum of these complexity types are discussed. Results are presented in the context of establishing when the pressure transient response including fracture complexity overprint can be definitively differentiated from that for the base model of a multiple transverse hydraulic fractured horizontal well. Analysis focuses on differences in derivative shapes to address this question. This work is especially relevant to analysis and understanding of shale formations but should also apply to other types of low permeability systems.
机译:针对非传统气体和石油资源的开发井选择的井和完成配置已成为液压压裂多个阶段的水平良好良好。该井和完成配置的标准压力瞬态模型假定每个液压刺激阶段产生一个双翼横向骨折。一些井中的刺激作业的微震​​图像支持该模型的选择,但许多这样的图像在裂缝系统的几何形状中显示出更大复杂性的叠印。数值模拟器历史匹配的匹配并不明确地表明,需要对这种骨折复杂性进行核算来解释非常规良好的性能数据。本文旨在提供对压力瞬态数据如何用于识别骨折复杂性叠印对良好反应的影响的深入了解。审查了解决该问题的有限电流文献后,提出了对基部多横向骨折模型上的各种骨折复杂性的各种叠印份额的细网进行了数值模拟的响应。特别地,对以下内容影响的病例的反应呈现:1)开口和支出附近的自然裂缝,2)创建与多交系统横向骨折系统相交的任意连接的正交骨折网络,3)在单个穿孔装置上产生独立的横向骨折股线在每个阶段和4)中,在单个穿孔装置中创造最初的独立骨折股线,然后将其分叉分叉或合并较少地从孔穿孔中脱次股线。讨论了对这些复杂性类型的光谱的长度和电导率的响应灵敏度。结果在建立包括裂缝复杂性腹圈的压力瞬态响应时可以明确地区分了多个横向液压骨折水平井的基础模型的基础模型的背景上的背景上呈现。分析侧重于解决这个问题的衍生形状的差异。这项工作特别是与对页岩地层的分析和理解特别相关,但也应适用于其他类型的低渗透系统。

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