首页> 外文会议>International Association of Drilling Contractors/Society of Petroleum Engineers Asia Pacific Drilling Technology Conference >The Horizontal Massive Multistage Fracturing Meet the Changling Tight Gas Field Development Strategy
【24h】

The Horizontal Massive Multistage Fracturing Meet the Changling Tight Gas Field Development Strategy

机译:水平大规模的多级压裂符合改变的紧密气田开发策略

获取原文

摘要

The deep tight gas reservoir in southern Songliao basin has features of deep burial, dense lithology, poor physical property, high in-situ stress and no natural deliverability. Early development practice certificated that neither horizontal well nor conventional vertical fracturing can achieve promising stable production. This paper presents the successful case history in which the horizontal massive multistage fracturing techniques are developed. This includes optimizing horizontal section, optimizing the horizontal well completion and fracturing design, the slim open-hole packer sliding sleeve multistage fracturing technique and the large scale traversing fracturing technology. Also the deep well fracturing operation safety and surface security technique are discussed in the paper. At present 9 wells 100 stages has been operated, and achieved the target of most 15 stages and maximum1451m~3 proppants in a single well. The stable production rate of the fractured horizontal well was 5 times more than the around vertical well. This technology can fracture more stages, shorten operation time, lessen formation damage and reduce friction drag. So it maximizes the reservoir stimulation volume, which provides technical support for large-scale development of the tight gas sandstone reservoir in Changling gas field.
机译:松辽盆地南部的深层储气水库具有深埋,密集的岩性,物理性质不佳,高原位应力和无自然可交付性的特点。早期的开发实践证明横向井和常规垂直压裂都不能实现有前途的稳定生产。本文提出了成功的案例历史,其中开发了水平大量多级压裂技术。这包括优化水平截面,优化水平井完成和压裂设计,修身开放式封隔器滑动套筒多级压裂技术和大规模遍历压裂技术。此外,本文讨论了深井压裂操作安全性和表面安全技术。目前,9个井100个阶段已经运行,并在单个井中达到了大多数15个阶段和最大1451m〜3支撑剂的目标。骨折水平井的稳定生产率比垂直井大于5倍。该技术可以折断更多阶段,缩短操作时间,减少形成损坏并减少摩擦阻力。因此,它最大限度地提高了储层刺激体积,这为长岭气田中的储气砂岩储层大规模开发提供了技术支持。

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