Lessons Learnt from Well Intervention Operations on Well AA, and The Impact of Detailed Recipe Design on Performance of a Niger Delta Well

O. Oladunni, Leste O. Aihevba, Richard Dokubo, Ayopo Kudayisi, Muaz Obadaki, C. Eze, Modestus Eze, Chika Ibama
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Abstract

Well Intervention operations are carried out to improve production performance of a declining well, restore production to a well that quit, or improve well integrity, among other reasons. Well bore clean out and stimulation are two of the common well intervention operations done on producing oil and gas wells to improve performance. Well AA, a major oil and gas producer started to decline after three years of production, therefore a well bore clean out and stimulation exercise was designed to improve performance of the well. The first Intervention operation was planned after various crude sample and precipitate analysis reports showed organic deposits (wax and asphaltenes) in the well. Slickline drift also indicated a restriction in the tubing. The treatment recipe for the well intervention was designed based on laboratory test carried out on the crude and precipitate sample that showed an 85% dissolution of the organic deposits in Xylene and 55% dissolution in Solution Z (a mixture of Xylene and HCL). The 85% dissolution was considered adequate to ensure a complete wellbore clean out, with Solution Z planned as the contingent treatment recipe for any solid deposits not dissolved by Xylene. Contingent on the successful wellbore clean out, a matrix stimulation was to be done using an Acid preflush and Regular clay acid as the main treatment. But this operation failed because instead of resulting in an increase in production, the well couldn't produce to surface and had to be shut-in. This paper will review the problems encountered from the unsuccessful intervention of well AA because of the lack of a detailed recipe design to find the best treatment to dissolve organic deposits in the well and precipitates, as well as residues formed from the reaction between organic solids and inorganic acids. In addition, this paper will present the detailed work that went into designing the right treatment recipe for well AA that resulted in successfully reviving the well after the initial failed intervention operation to become a prolific producer of over 1500 stock tank barrels of oil per day.
AA井修井作业的经验教训及配方设计对尼日尔三角洲油井性能的影响
修井作业主要是为了提高产量下降井的生产性能,恢复停产井的生产,或改善井的完整性等。井筒清洗和增产是在生产油气井中进行的两种常见的油井干预作业。AA井是一家主要的油气生产商,在生产三年后产量开始下降,因此设计了井筒清洗和增产作业来提高油井的性能。在各种原油样品和沉淀物分析报告显示井中存在有机沉积物(蜡质和沥青质)后,计划进行第一次修井作业。钢丝绳漂移也表明油管受限。根据对原油和沉淀物样品进行的实验室测试,设计了油井干预的处理配方,结果表明有机沉积物在二甲苯中溶解85%,在溶液Z(二甲苯和盐酸的混合物)中溶解55%。85%的溶解度被认为足以确保完全清洗井筒,对于任何未被二甲苯溶解的固体沉积物,溶液Z计划作为应急处理配方。在成功清洗井筒后,将使用Acid预冲液和常规粘土酸作为主要处理措施进行基质增产。但是这次作业失败了,因为该井没有增加产量,而是无法生产到地面,不得不关井。本文将回顾由于缺乏详细的配方设计,以找到最佳的处理方法来溶解井中的有机沉积物和沉淀物,以及有机固体与无机酸反应形成的残留物,而在AA井的干预中遇到的问题。此外,本文还将详细介绍为AA井设计正确的处理配方所做的工作,该配方使该井在最初的干预操作失败后成功恢复,成为日产1500多桶原油的高产油井。
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