利用频谱噪声分析工具对双完井管柱进行高效、全面的完整性诊断

Zurailey Bin Baharum, M. Rourke, A. Muhadjir, W. Andono, Eva Sarah Binti Zakaria, Suzie Binti Hamzah, Noor Rohaellizza Binti Hademi, Nurul Aida Binti Hamdan
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引用次数: 0

摘要

在干预和修复老井时,作业者经常面临各种技术挑战。老化井最常见的问题是油管和套管的完整性。井下泄漏来源的不确定性和数据的模糊性通常会导致错误的诊断,从而阻碍维修工作,甚至导致更多或更严重的完整性问题。运营商不断挑战服务公司和技术提供商,以推动创新。其中一个挑战是如何为双管柱井找到高效、全面的完整性诊断方法。验证双管柱井完整性的基本和通用诊断方法包括在长管柱和短管柱上设置桥塞,并对油管进行压力测试。这些操作通常是耗时的,并且测试数据通常不能精确定位泄漏的位置(如果有的话)。自2016年以来,针对这一挑战,采用钢丝绳部署的被动声波测井技术实施了一种新的诊断解决方案。精心设计的干预计划,结合高效的数据采集,大大节省了时间,提高了数据质量。现在,对两个管柱的完整性进行更全面的评估变得更加频繁和必要,这挑战了传统的想法,即在假设上部管柱状况良好的情况下,只对下部管柱进行评估。然而,在不确定泄漏源、设施限制和监控时间限制的情况下,调查双管柱完整性往往会浪费更多的时间和金钱。本文讨论了两个案例研究,其中包括中国南海的一个双管柱采油器,该采油器的生产套管环空持续存在压力。根据地面环空压力诊断,作业者最初认为长管柱存在完整性问题,而短管柱则没有。因此,作业者决定只诊断长管柱。被动式声学记忆工具。结合用于诊断的快速响应温度和旋转器,在长管柱测井时识别出可能的短管柱泄漏。这一结果清楚地表明,地面分析可能会产生误导,综合的井下诊断应该是识别泄漏的推荐方法,特别是在双管柱完井中。在过去的5年里,该运营商已经完成了100多次完整性诊断。与传统方法相比,被动声波诊断干预平均节省了50%的时间,数据分析结果显著提高了油井产能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient and Comprehensive Integrity Diagnostics for Dual Completion String Wells, Using Spectral Noise Analyzer Tool
Well operators often face various technical challenges when intervening and repairing older, mature field wells. The most common problem associated with aging wells are tubing and casing integrity. Uncertain sources of downhole leaks and data ambiguity often lead to incorrect diagnostics that can hinder repair work or even contribute to additional or worsened integrity issues. Operators continuously challenge service companies and technology providers to drive innovation. One such challenge is in finding efficient and comprehensive integrity diagnostics for dual-string wells. A basic and general diagnostic method to verify well integrity in dual-string wells involves setting plugs in the long and short strings and pressure testing the tubings. These operations are generally time consuming, and the test data does not usually pinpoint the location of the leak, if any. Since 2016 a new diagnostic solution for this challenge has been implemented using a slickline-deployed passive acoustic logging technique. Carefully designed intervention planning, combined with efficient data acquisition, led to significant time saving and improved data quality. A more complete assessment of the integrity of both strings is now more frequent and often necessary, while challenging the conventional thinking of having to assess the lower string only while assuming the upper string is in good condition. However, investigating dual-string integrity with uncertainty on the source of leak, restrictions on facilities and limitations on surveillance time will often waste more time and money if not approached carefully. This paper discusses two case studies, including a dual-string oil producer in the South China Sea that had sustained pressure in production casing annulus. The well operator initially considered that the long string had an integrity issue, while the short string did not, based on their surface-based annulus pressure diagnostics. Consequently, the operator decided to diagnose only the long string. The passive acoustic memory tool. combined with a fast-response temperature and spinner used for the diagnosis, identified a possible short string leak while logging through the long string. This result clearly demonstrated that surface analyses can be misleading, and a comprehensive downhole diagnostic should be the recommended method to identify leaks, especially in dual-string completions. This well operator has completed more than 100 integrity diagnostic runs in the last five years. The passive acoustic diagnostic interventions have resulted in an average 50-percent time saving compared to legacy methods, and data analysis results have led to significant improvements in well productivity.
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