【24h】

Merging Coiled Tubing and Swellable Packer Technologies

机译:合并卷绕管和可膨胀的包装机技术

获取原文

摘要

For a number of years one of the main areas being developed has been multilateral wells to better access the reservoir. Oneof the greatest challenges in operating an efficient multilateral well is having control of where any water production iscoming from. Effectively managing produced water can bring obvious benefits to the economics of a well. One tool that hasnot been exploited for this type of application is swellable packers. Coiled Tubing and Swellable Packer technologies wererecently combined on a land-based operation in Holland to successfully isolate a water-producing leg of a well lateral. Theoperator asked for a proposed completion solution after a previous attempt to isolate the lateral had proved unsuccessful.The proposed solution was designed to straddle the lateral entry/exit with a scab liner, isolated and anchored at either end bywater-swellable packers. The straddle was required to seal inside the main bore casing and withstand a differential pressure atwell operating temperatures. Swellable packers were selected from the various proven openhole isolation devices available tothe industry to provide the zonal isolation required in the multi-zone intervals. This was the first swellable straddlecompletion in Holland in a watered out, commingled gas environment in which isolation would be contained solely byswellable packers.The water producing lateral was successfully straddled using two water swellable packers run with base pipe between the twopackers. In this application the Swellable Straddle was deployed in conjunction with an additional mechanical packer toanchor the straddle whilst the swelling process in the aqueous environment took place. A subsequent intervention with coiledtubing and a resettable Inflatable Test Packer confirmed the straddle had successfully sealed and had isolated the waterproducing lateral.This paper presents a solution to the challenges of isolating laterals using swellable packers and coiled tubing, and how toverify that the junction has been successfully isolated.
机译:由于多年来,正在开发的主要领域是多边井,以便更好地访问水库。在运营高效的多边井中的最大挑战是控制任何水资源的差异。有效管理生产的水可以对井的经济性带来明显的益处。对于这种类型的应用程序进行了利用的一个工具是可稳定的包装机。在荷兰的基于陆地运行中,卷曲管和可膨胀的包装机技术在荷兰的陆地运营中加工,成功地隔离生产良好的横向的水生产腿。 TheOperator在先前尝试隔离横向的尝试后所要求的完整解决方案证明了不成功。所提出的解决方案被设计成跨越横向入口/出口,用SCAB衬垫,在任一擦拭的溶胀封装器处隔离和锚定。需要跨部门在主孔壳体内密封并承受差压待机工作温度。可从各种经过验证的镂空隔离装置中选择可膨胀的包装机,以提供多区间隔所需的区域隔离。这是荷兰的第一种可溶胀的斯特拉德·普遍存在的溶胀型气体环境,其中混合的气体环境,其中隔离物完全由封隔剂包装。使用两种水溶性封装机在Twopackers之间用基管运行成功跨越水。在本申请中,可稳定的跨栏与额外的机械封隔器托管托管部署在跨越水环境中的膨胀过程。随后的介入线圈和可重置的可充气测试封隔器确认跨跨已经成功密封并已分离出水上的侧面。本文呈现了使用可溶胀封装机和卷绕管道隔离侧板的挑战的解决方案,以及如何利用交界处的侧面成功孤立。

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