CALCULATION OF FRACTURE INITIATION DIRECTION IN PERFORATED WELL

IF 0.3 Q4 ENGINEERING, CHEMICAL Chemical and Petroleum Engineering Pub Date : 2023-05-30 DOI:10.17122/ngdelo-2023-2-114-126
A. Fedorov, D. Mulyukov
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Abstract

The work considers the issue of initiating the fracture and its direction in the formation during the hydraulic fracturing operation during the development of the field. Based on the analytical decision on the stress state of the cylindrical channel in the loaded medium, an algorithm is built to calculate the direction of fracture initiation in the case of a well with a set of perforations. The algorithm considers two acceptable scenarios: the fracture can be initiated either by fracturing the wellbore or by fracturing one or more perforations. In addition to the direction of fracture formation, the algorithm allows you to calculate the formation pressure, as well as the final closing pressure of the frac crack. The work also analyzed the effect of wellbore direction on fracture parameters in several different versions of well geometry with perforation channels. The calculations show a significant effect of wellbore direction as well as Poisson ratio on the result of wellbore rupture. The contrast of the main stress tensor components transverse to the well axis also has a significant impact on the direction of fracture initiation. The developed method allows you to determine the direction of the frac fracture for combinations of wellbore trajectories and perforations. The final configuration of the perforation channels has some uncertainty about the specific direction of the channels, since in practice control of the direction of the device is rarely used. To reduce the risks of incorrect assessment of rupture parameters, the algorithm is supplemented with a sensitivity analysis to the direction of the perforation channel system. The algorithm is implemented as a separate Python program module.
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射孔井裂缝起裂方向计算
研究了该油田开发过程中水力压裂作业中裂缝的起缝及其在地层中的方向问题。在对加载介质中圆柱通道应力状态进行解析判定的基础上,建立了一种计算多孔井起裂方向的算法。该算法考虑了两种可接受的情况:通过压裂井筒或压裂一个或多个射孔来启动裂缝。除了裂缝形成的方向外,该算法还允许计算地层压力,以及裂缝的最终闭合压力。该工作还分析了几种不同形状的带射孔通道的井眼方向对裂缝参数的影响。计算结果表明,井眼方向和泊松比对井筒破裂结果有显著影响。主应力张量分量在井轴方向上的对比也对裂缝起裂方向有显著影响。开发的方法可以根据井眼轨迹和射孔的组合来确定压裂裂缝的方向。射孔通道的最终结构对通道的具体方向有一些不确定性,因为在实践中很少使用对设备方向的控制。为了降低爆破参数评估错误的风险,该算法还补充了对射孔通道系统方向的敏感性分析。该算法是作为一个单独的Python程序模块实现的。
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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来源期刊
Chemical and Petroleum Engineering
Chemical and Petroleum Engineering ENGINEERING, CHEMICAL-
CiteScore
0.60
自引率
33.30%
发文量
129
期刊介绍: Chemical and Petroleum Engineering publishes the latest research on Russian innovations in the field. Articles discuss developments in machinery and equipment, construction and design, processes, materials and corrosion control, and equipment-manufacturing technology. Chemical and Petroleum Engineering is a translation of the Russian journal Khimicheskoe i Neftegazovoe Mashinostroenie. The Russian Volume Year is published in English from April. All articles are peer-reviewed.
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