...
首页> 外文期刊>Journal of Petroleum Science & Engineering >Multi-fractured stimulation technique of hydraulic fracturing assisted by radial slim holes
【24h】

Multi-fractured stimulation technique of hydraulic fracturing assisted by radial slim holes

机译:径向细长孔辅助液压压裂的多断裂刺激技术

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The SRV fracturing is the core of commercial exploitation of shale gas, and the design philosophy of the SRV fracturing is gradually introduced into the stimulation of conventional low permeability reservoir and unconventional reservoir. However, in reservoirs with poorly developed natural fractures or high horizontal principal stress difference, it is difficult to achieve the multi-fracture or fracture network by conventional hydraulic fracturing, and effectively stimulating reservoir needs other assisting methods. This paper aims to present a method of guiding the multi-directional hydraulic fractures by multiple radial slim holes drilled in spatial positions, and creating multi-fractures and even complex fracture network. In this paper, a 3D hydraulic fracturing extended finite element numerical model in the vertical well assisted by planar multi-radial slim holes was established, and the effect of radial slim hole number, diameter, length, vertical density, azimuth and phase angle, Poisson's ratio, horizontal principal stress difference and rock Young's modulus, fracturing fluid viscosity and injection rate, reservoir permeability, etc. on guidance of radial slim holes were investigated. Then, we conducted the true tri-axial hydraulic fracturing was with the artificial core, and the feasibility of the technology was verified. The results show that decreasing azimuth and phase angle and increasing hole diameter, length and vertical density strengthen the guiding effect of planar multi-radial slim holes, and increasing Poisson's ratio, reservoir permeability, and fracturing fluid injection rate and viscosity enhance the guidance effect of radial slim holes. Increasing horizontal principal stress difference and reservoir Young's modulus weaken the radial slim holes guiding effect. The physical modeling experiment proves that controlling generation of complex multi-fractures is feasible by rationally arranging the spatial positions of radial slim holes. The spatial arrangement of four planar radial slim holes with phase angle of 90 degrees, azimuth of 45 degrees and vertical density not less than 2 holes/m in the vertical well is a scientific scheme. With the reasonable treatment scheme, creating 6 main fractures is possible. The research results provide theoretical support for multi-fractured stimulation assisted by planar multi-radial slim holes, and help the design of well completion parameters and fracturing treatment parameters of the technology.
机译:SRV压裂是商业开采页岩气体的核心,SRV压裂的设计理念逐渐引入常规低渗透储层和非传统水库的刺激。然而,在具有较差的天然裂缝或高水平主应力差的储层中,难以通过传统的液压压裂实现多骨折或裂缝网络,有效刺激储层需要其他辅助方法。本文旨在提出一种通过在空间位置钻的多个径向细长孔引导多向液压骨折的方法,并产生多裂缝甚至复杂的裂缝网络。在本文中,建立了平面多径向细长孔的垂直良好辅助延伸有限元数值模型的3D液压压裂延伸有限元数值,以及径向狭长孔数,直径,长度,垂直密度,方位角和相位角,泊松的影响研究了比例,水平主应力差和摇滚杨氏模量,压裂流体粘度和注射速率,储层渗透性等。然后,我们进行了真正的三轴液压压裂与人工核心,验证了该技术的可行性。结果表明,减小方位角和相位角度和孔直径的增加,长度和垂直密度强化平面多径向细长孔的引导效应,增加了泊松比,储层渗透性和压裂流体注入率和粘度增强了引导效应径向苗条孔。增加水平主应力差和水库杨氏模量削弱了引导效果的径向纤细孔。物理建模实验证明,通过合理地布置径向细长孔的空间位置,控制复杂多裂缝的产生是可行的。四个平面径向细长孔的空间布置,相角为90度,方位角为45度,垂直密度不小于2个孔/ m的垂直井是一种科学方案。采用合理的治疗方案,可以产生6个主要骨折。研究结果为平面多径向细长孔辅助的多破裂刺激提供了理论支持,并帮助设计了技术的井完成参数和压裂处理参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号