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Novel Perforation Job Design Leads To Successful TCP Shoot In A 3000 Foot Horizontal Carbonate Producer

机译:新颖的穿孔工作设计导致3000英尺水平的碳酸盐生产商中成功的TCP拍摄

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A recent horizontal producer well was drilled as part of a multilateral openhole completion pair in the Arabian Gulf area. The casing of the main wellbore could not get to bottom which necessitated the bottom lateral be cased and cemented for isolation purposes and then perforated. The decision to perforate the 3000' horizontal section was unexpected so supplies were insufficient to perforate this long section using the traditional perforating method. Rather than delaying the well completion and deferring production from this well, an effort was put into looking for alternatives. With the help of a perforation modeling tool it was shown that the horizontal section could be shot using a dynamic underbalance job design at greatly reduced shot densities and still achieve an injectivity, required for acid matrix stimulation, and subsequent productivity greater than if the well were to be shot conventionally at 6 spf. This technique of dynamic underbalance had been successfully used locally on wireline perforating jobs in short intervals but never on such a long well section nor at such low shot densities. Another potential complication with the conventional perforating technique is the presence of a 2nd open hole lateral which was in communication with the well to be perforated. This meant that the zone would be shot in an overbalanced condition which can lead to post perforation damage and poor injectivity. This paper will describe the process used to establish the dynamic underbalance perforation job design suitable for this well, the final job design, the execution of the job and the obtained results of this successful application. The results indicated better than expected injectivity prior to acid matrix stimulation and better than expected well productivity post stimulation. The improved well productivity is based on modeled and also nearby well production results. A successful job design methodology and execution has been tried for the first time in this region and has potential applications to many other wells.
机译:最近的水平制作人井是阿拉伯海湾地区的多边透露孔完成对的一部分。主井筒的壳体无法达到底部,这需要底侧壳体并粘合以用于隔离目的,然后穿孔。穿孔3000'水平部分的决定是出乎意料的,因此使用传统的穿孔方法,供应不足以穿孔这种长截面。从这个井中延迟了井井井的井井,而不是推迟生产,这项努力被投入了寻找替代品。随着穿孔建模工具的帮助,它表明的水平区间可拍摄使用动态负压工作设计,在大大降低拍摄密度,并且仍然实现注入,酸性基质的刺激需要,以及随后的生产率大于如果井是在6个SPF常规拍摄。这种动态不平衡技术已经成功地在线穿孔作业,短暂间隔,但从未在这样的长篇井段中也不是如此低的镜头密度。传统穿孔技术的另一个潜在的并发症是存在第二开孔横向,其与井通连通待穿孔。这意味着该区域将在过度平衡的情况下被射击,这会导致穿孔后损伤和可弹性差。本文将描述该过程,用于建立动态不平衡穿孔工作设计,适用于此井,最终的工作设计,工作的执行以及该成功申请的获得结果。结果表明酸性基质刺激之前的预期注射性好,并且优于预期的良好刺激良好生产率。提高的良好生产率是基于建模的,也是附近的生产结果。在该地区的第一次尝试了成功的作业设计方法和执行,并且对许多其他井具有潜在的应用。

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