Assessment of Reactivated Natural Fractures Influence on Overall SRV During Multi-Stage Hydraulic Fracturing

A. Gula, A. Bochkarev, A. Vishnivetskiy, R. Nikitin, Y. Ovcharenko, D. Alchibaev
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Abstract

This work is devoted to the development of methods for determining the stimulated reservoir volume (SRV) taking into account the contribution of natural fractures hydrodynamically not connected with technogenic one with the example of Western Siberia reservoir. At present, more and more fields with a complex geological structure, including low-permeability reservoirs, require effective technologies for exploitation, which in turn has led to the massive applying of horizontal wellbores and technologies of multistage fracturing. Modeling of multistage fracturing is a complex process that requires an understanding of the mechanical behavior of the formation, cracks and faults. The cracks formed during the hydraulic fracturing change the stress field around it, this effect is called the shadow stress effect. Natural fracturing can have a significant effect on production rates, in particular, on the hydrodynamic connection of the reservoir and the migration path of fluids. If stress shadow effect of the technogenic fracturing is taken into account, then can be additionally taken into account the reactivated natural fractures with induced stresses as well. In the process of the work, mechanisms of formation of natural fracturing were determined on the basis of seismic attributes and reconstruction of paleostresses, a natural fracture network model was constructed using geomechanical information. The results obtained during the construction of a NFN play one of the key roles for the modeling of the multistage fracturing in fractured reservoirs allows to take into account information on the intensity and direction of development of natural fracturing in addition to mechanical properties: elastic and strength characteristics of rocks. In this paper, we demonstrate the results of a numerical evaluation of multistage fracturing influence in the change of the stress field. The stress field, modified during the stimulation, was used to assess the critical stress fractures, which allows increasing the stimulated reservoir volume due to reactivated natural fractures. Such cracks do not need to be fixed, since they are formed by sliding along the plane of failure with small changes in the stress field and give an additional contribution to the total area induced fractures. The demonstrated technique allows to maximize the area of induced fractures and increase the stimulated reservoir volume by taking into account the critically-stressed one.
多级水力压裂中天然裂缝再活化对总SRV影响的评价
本文以西西伯利亚储层为例,研究了考虑天然裂缝的流体动力学作用而非技术裂缝作用的增产储层体积(SRV)的确定方法。目前,越来越多的地质构造复杂的油田,包括低渗透油藏,都需要有效的开发技术,这就导致了水平井和多级压裂技术的大量应用。多级压裂建模是一个复杂的过程,需要了解地层、裂缝和断层的力学行为。水力压裂过程中形成的裂缝会改变其周围的应力场,这种效应称为阴影应力效应。天然压裂可以对产量产生重大影响,特别是对储层的流体动力学连接和流体的运移路径。如果考虑到工艺压裂的应力阴影效应,那么还可以考虑具有诱导应力的再生天然裂缝。在此过程中,根据地震属性和古应力重建确定了天然裂缝的形成机理,利用地质力学信息构建了天然裂缝网络模型。在构建NFN过程中获得的结果对裂缝性储层的多级压裂建模起着关键作用之一,除了考虑岩石的力学特性(弹性和强度特征)外,NFN还可以考虑自然压裂的强度和发展方向信息。本文给出了应力场变化对多级压裂影响的数值评价结果。在增产过程中修改的应力场用于评估临界应力裂缝,这可以通过重新激活天然裂缝来增加增产油藏的体积。这种裂缝不需要固定,因为它们是在应力场变化很小的情况下沿着破坏面滑动形成的,并且对总面积造成的裂缝有额外的贡献。通过考虑临界应力,该技术可以最大限度地扩大诱导裂缝的面积,并增加增产油藏的体积。
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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