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Incorporating Geomechanics into the Decline-Curve Analysis of Naturally Fractured Reservoirs

机译:将地质力学纳入天然裂缝储层的下降曲线分析

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This paper presents a new production decline model for naturally fractured reservoirs (NFRs), which takes the geomechanical behavior of the formation into account. Since the pressure transient data can be costly and may not be available for most wells, decline curve analysis that uses readily available well production data would be beneficial. Decline-curve analysis methods, in a variety of forms, have been used in the industry to analyze production data and forecast reserves for many years. However, the impact of geomechanics is not considered in the existing models. As reservoir pressure decreases due to production, fracture aperture can be influenced by both the matrix elasticity and fracture compressibility. This will result in permeability change in the fracture system. To include the impact of the geomechanical properties, a model is derived to understand how pressure change can affect the fracture permeability and behavior of NFRs. It is important to find out this relation since the fractures would close, or at least diminish, after a long period of producing time. The original model of dual-porosity developed by Warren and Root is extended to include the effect of geomechanical properties on the behavior of the reservoir. From this, a new approach for the decline curve analysis of fractured formations is developed that relates the production decline trend not only to the Warren and Root’s key parameters ( Z , ) ,Obut also to the elasticity parameter ( H) which reflects the mechanical behavior of both the rock skeleton and the fractures. The concept of stress-dependent skin around the wells producing from NFRs is discussed and formulated in this work. The behavior of such NFRs at different flow periods are described, from which we found that the effective-stress change can affect the decline-curves from stress-sensitive fractured formations.
机译:本文为自然裂缝储层(NFR)提出了一种新的生产衰退模型,占地层的地质力学行为。由于压力瞬态数据可能是昂贵的并且可能不适用于大多数井,因此拒绝使用良好生产数据的曲线分析将是有益的。拒绝曲线分析方法,以各种形式用于行业,以分析多年来的生产数据和预测储备。然而,现有模型中不考虑地质力学的影响。随着储层压力由于生产而降低,裂缝孔可以受基质弹性和断裂可压缩性的影响。这将导致骨折系统的渗透性变化。为了包括地质力学性质的影响,衍生一种模型,以了解压力变化如何影响NFR的断裂渗透性和行为。在长期生产时间之后,由于裂缝将关闭或至少减少,因此重要的是要找到这一关系。由沃伦和根源开发的双孔隙度的原始模型扩展到包括地质力学性质对水库行为的影响。由此,开发了一种新方法,涉及裂缝形成的曲线分析,这与沃伦和根的关键参数(Z,),宜人也涉及反映机械行为的弹性参数(H)的生产下降趋势岩石骨架和骨折。在这项工作中讨论并制定了从NFR生产的井周围的井中依赖性皮肤的概念。描述了这种NFR在不同流动时段的行为,从中发现了有效应力变化可以影响来自应力敏感的裂缝形成的衰落曲线。

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