Selective Perforation for Thin Separated Layers Using Addressable Switches: Operation Design and Limitations Overcome

M. Arafa, Osama Abdelalim Taha, Abdelhadi Atef Ayyad, Ahmed Sheta, M. Vazquez, Shahira Elfiky
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Abstract

This paper aims to highlight the benefits of using selective perforation as a method of risk reduction and optimization during perforating thin separated oil-bearing intervals going through selection criteria, job design, economic evaluation and precautions during the operation. During the design of four perforation jobs in a campaign using the conventional through tubing perforation (TTP) technique, it was noticed that the number of runs were too much with consequent high intervention risk, thus alternatives were evaluated to mainly reduce intervention risk with a smart, reliable, cost effective and simple perforation technique within the pre-determined operation time frame. The other options included alternative deployment methods such as coiled tubing (CTU) perforation, extended reached perforation (ERP) and selective perforation techniques. A comparison between options has been made based on the following criteria: availability, simplicity, reliability, intervention risk and feasibility. As a result of proper filtration and comparison between all different options, the selective perforation using addressable switches was selected to be the optimum solution for this case based on the comparison criteria mentioned above. Going through the design phase, multible loading sheets for guns laydown have been generated and optimized to reach the simplest operational procedures and minimum number of runs. Then, workshops have been made for engineers in both office and field to be familiar with the operation to reduce operational risks and consolidate the operational procedures. The design of service for the whole job including the final operational procedures, risk assessment and gun loading sheets was finalized and distributed to all disciplines to assure alignment during the operation. During job execution, operation has been followed step by step using single point of accountability (SPA) to accelerate and align decision making and plan modification during operational issues. Finally, a post job evaluation has been made to document the whole procedures of design and execution and the lessons learned during the operations. A final comparison between conventional and actual selective perforation job showed the reduction in number of runs and thus time and intervention risk by 33%. In addition, the incremental increase in cost was completely covered by the time saving from the utilization of supporting vessels (Rig & boats). The major aim of this paper is to clarify in a step-by-step style the method of evaluating the well for addressable switches technique and how to properly prepare the people for the job and the design of service till execution followed by post job evaluation.
使用可寻址开关的薄层选择性穿孔:操作设计和克服限制
本文旨在通过选择标准、作业设计、经济评估和作业中的注意事项,强调选择性射孔作为一种降低和优化薄隔含油层射孔风险的方法的优势。在使用传统的油管射孔(TTP)技术设计四次射孔作业时,注意到作业次数太多,导致干预风险高,因此评估了替代方案,主要是在预定的作业时间内使用智能、可靠、经济、简单的射孔技术来降低干预风险。其他选择包括连续油管(CTU)射孔、延伸射孔(ERP)和选择性射孔技术等替代部署方法。根据以下标准对备选方案进行了比较:可用性、简易性、可靠性、干预风险和可行性。通过对所有不同方案进行适当的筛选和比较,基于上述比较标准,选择使用可寻址开关的选择性穿孔方案为本案例的最佳解决方案。在整个设计阶段,为了达到最简单的操作程序和最少的运行次数,已经生成并优化了用于火炮布置的多重加载表。然后,对办公室和现场的工程师进行了熟悉操作的讲习班,以减少操作风险,巩固操作程序。整个作业的服务设计,包括最终操作程序、风险评估和射孔枪装填表,最终确定并分发给所有学科,以确保作业期间的一致性。在作业执行过程中,使用单点问责制(SPA)一步一步地跟踪操作,以加速和调整操作问题期间的决策制定和计划修改。最后,进行了一次工作后评价,以记录设计和执行的整个程序以及在行动期间吸取的教训。最后对常规射孔作业和实际选择性射孔作业进行比较,结果表明,作业次数、作业时间和修井风险降低了33%。此外,增加的成本完全被使用辅助船(Rig & boats)节省的时间所抵消。本文的主要目的是以循序渐进的方式阐明评估可寻址开关技术的井的方法,以及如何为工作和服务设计做好适当的准备,直到执行,然后进行工作后评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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