首页> 外文期刊>ACS Omega >Study on the Interference Law of Staged Fracturing Crack Propagation in Horizontal Wells of Tight Reservoirs
【24h】

Study on the Interference Law of Staged Fracturing Crack Propagation in Horizontal Wells of Tight Reservoirs

机译:卧式井水平井中分阶段压裂裂纹繁殖的干扰法研究

获取原文
           

摘要

Horizontal well multistage fracturing technology is a high-efficiency method for tight oil and gas production, which increases the contact area between the wellbore and stratum by forming multiple transverse hydraulic fractures (HFs). The stress interference caused by the created HFs will affect the propagation geometries of the subsequent HFs, and then affect the overall fracturing treatment performance. In order to study the distribution of HFs and law of interference among multiple fractures during horizontal well multistage fracturing in tight reservoirs, in this paper, the effects of horizontal stress difference, perforation spacing, and net pressure in the created fracture on the initiation and propagation of multiple cracks were specially studied through large-scale hydraulic fracturing experiments and numerical simulation. The results showed that under high horizontal stress difference, multiple HFs with small spacing tended to coalesce at a place where the length has extended to a certain level. It was also found that the initiation pressures of HFs within subsequent stages increase with the rise of net pressure in created HFs, which causes the subsequent fractures to deviate from the direction perpendicular to the horizontal wellbore and then to gradually deflect toward it. Moreover, the ratio of fracture spacing to fracture height, and the net pressure are the key parameters to determine the deflection degree of HFs for multistage fracturing. In addition, the deflection degree of subsequent HFs was expected to enhance with the decreasing ratio of fracture spacing to fracture height and increasing net pressure in created HFs. It was useful for mitigating stress interference to lengthen the stage spacing, control the fracture height, and reduce the net pressure. The research results have a reference value for the optimal design of the fracture spacing for multistage fracturing.
机译:横向井多级压裂技术是一种高效的石油和天然气生产方法,通过形成多个横向液压裂缝(HFS)来增加井筒和层之间的接触面积。由创建的HFS引起的应力干扰将影响随后的HFS的传播几何形状,然后影响整体压裂处理性能。为了在卧式储层中的水平井多级压裂期间研究多重骨折的HFS和干扰法的分布,本文在创建骨折上产生了水平应力差,穿孔间距和净压的影响通过大规模的液压压裂实验和数值模拟专门研究多种裂缝。结果表明,在高水平应力差异下,具有小间距的多个HFS倾向于在长度延伸到一定水平的地方聚结。还发现,随后阶段内的HFS在创造的HFS中的净压延的增加增加,这导致随后的骨折偏离垂直于水平井筒的方向,然后逐渐向其偏转。此外,断裂间距与裂缝高度的比率,净压力是确定多级压裂的HFS偏转度的关键参数。此外,预期随后的HFS的偏转程度增强了断裂间距与裂缝高度的降低和产生的HFS中的净压力的降低。可用于减轻应力干扰以延长阶段间距,控制裂缝高度,并降低净压力。研究结果具有用于多级压裂的裂缝间距的最佳设计的参考值。

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