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Coiled Tubing Conveyed Fracturing System Allows Longer Zones to be Isolated in a Single Trip Multiple Times

机译:盘绕管道输送压裂系统允许多次在一次行程中隔离较长的区域

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Increased production and lower costs in shallow gas wells are closely linked to developing and refining new coiled-tubing drilling, completion, and production techniques. Innovations in coiled tubing have reduced the costs of drilling and completing these wells and increased their productivity and life cycles. Coiled-tubing fracturing is one such innovation. This has been used for some time now, predominantly in North American shallow gas wells. In these wells, the cost advantages associated with working over the well in a live condition while reducing job time are attractive. Coiled-tubing fracturing operations usually employ straddle-type tool configurations. However, with a typical maximum lubricator length of about 30 ft, straddle interval lengths have been restricted, which increases the amount of resets required to effectively fracture individual zones. This restriction also increases the potential risk of communication above the assembly. This paper describes the development of an economical and reliable coiled-tubing fracturing system that allows selective fracturing of previously bypassed pay zones. This is now possible because the system can be conveyed in a tandem configuration that works within current lubricator restrictions, but is capable of setting repeatedly as a retrievable bridge plug and treating packer combination. This allows longer zones to be precisely isolated multiple times in a single trip in hole. This innovative technique can not only reduce intervention costs but also reduce the total time required to complete the operation. This paper will examine several case histories, with emphasis on pre-job planning, equipment selection, well site execution and post-job results.
机译:浅气井的产量增加和降低成本与开发和精炼新的盘管钻井,完成和生产技术密切相关。盘绕管道的创新降低了钻井和完成这些井的成本,提高了他们的生产力和生命周期。卷绕管压裂是一种这种创新。这已经使用了一段时间,主要是在北美浅气井中。在这些井中,在降低工作时间的情况下,与现场状况良好地在井中工作的成本优势是有吸引力的。盘管压裂操作通常采用跨跨型工具配置。然而,具有约30英尺的典型最大润滑器长度,已经限制了跨界间隔长度,这增加了有效地破坏单个区域所需的重置量。该限制还增加了组装上方的潜在通信风险。本文介绍了一种经济且可靠的卷绕管压裂系统的开发,允许选择性压裂先前旁路的付费区。这是可能的,因为系统可以在串联配置中传送,该配置在当前的润滑器限制内工作,但能够重复设置为可检索的桥接插头和处理包装器组合。这允许在孔中的一次行程中精确地分离较长的区域。这种创新技术不仅可以降低干预费用,而且还可以减少完成操作所需的总时间。本文将研究多种病例历史,重点是预先训练计划,设备选择,井网站执行和后期结果。

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