A Fast Calculation Method for Natural Fractures Activation Considering Stress Shadow and Study on the Law of Natural Fractures Activation State Changes

Yan Qiao, Yang Zhang, Tianhong Jiang, Guobin Zhang, Qing Chen, Litao Shang, Tengfei Hou
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Abstract

During hydraulic fracturing process of the Permian Basin in North America, the cluster spacing has been shortened to 3m, and stress shadow can no longer be ignored. Many scholars have studied the influence of stress shadows to optimize cluster spacing. For reservoirs with natural fractures, how to activate more natural fractures through hydraulic fracturing has become the purpose. However, few scholars have studied changes in the activation law of natural fractures under stress shadow conditions. This paper establishes stress change value around single fracture according to Sneddon formula, and calculates the maximum and minimum principal stress according to plane principal stress calculation formula. Considering attenuation of net pressure, stress field of multiple fractures is established, and influence of various factors on stress re-orientation is studied. Finally, considering attenuation of net pressure with distance, according to discriminant formulas of tension & shear activation, the proportion of natural fractures that are easily activated is calculated. By designing orthogonal experiments, the influence of different factors on the proportion of activated natural fractures was studied. The stress increase in the direction of the minimum principal stress is much greater than the increase in the direction of the maximum principal stress. The stress increases in the direction of the maximum principal stress at the tip of the hydraulic fracture. The tip position between hydraulic fractures is "neutralized" due to the superposition of shear stress. Stress-fracture angle and the in-situ stress difference are the common main influencing factors for both tensile and shear activation, but the net pressure has little effect on the tensile activation of natural fracture. The fracture spacing has little effect on the activation of natural fractures. When formulating the fracturing scheme, we should pay more attention to the net pressure rather than the fracture spacing. This article provides a fast calculation method for the activation state of natural fractures considering the stress shadow, which provides a reference index for activating more natural fractures and increasing the production of a single well.
考虑应力阴影的天然裂缝激活快速计算方法及天然裂缝激活状态变化规律研究
在北美二叠纪盆地水力压裂过程中,簇间距已缩短至3m,应力阴影已不容忽视。许多学者研究了应力阴影对优化簇间距的影响。对于具有天然裂缝的储层,如何通过水力压裂激活更多的天然裂缝已成为目的。然而,很少有学者研究应力阴影条件下天然裂缝活化规律的变化。根据Sneddon公式建立单裂缝周围的应力变化值,根据平面主应力计算公式计算最大和最小主应力。考虑净压力衰减,建立多裂缝应力场,研究各种因素对应力重定向的影响。最后,考虑净压力随距离的衰减,根据拉剪激活判别公式,计算易激活天然裂缝的比例。通过设计正交试验,研究了不同因素对活化天然裂缝比例的影响。最小主应力方向上的应力增量远大于最大主应力方向上的应力增量。应力沿水力裂缝尖端最大主应力方向增大。由于剪切应力的叠加,水力裂缝之间的尖端位置被“中和”。应力-破裂角和地应力差是影响天然裂缝张拉活化和剪切活化的主要因素,而净压力对天然裂缝张拉活化的影响较小。裂缝间距对天然裂缝的激活作用影响不大。在制定压裂方案时,应更多地关注净压力,而不是裂缝间距。提出了一种考虑应力阴影的天然裂缝激活状态快速计算方法,为激活更多天然裂缝、提高单井产量提供了参考指标。
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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