Diagnose and Remediate Leak on Constrained Operating Conditions Brings Back to Production Important Gas Well in Egypt Delta Region

M. Vazquez, M. Marie, Ehab Salama, A. Abdelrahman, Bronislav Vago, K. Ziada, M. Sharab, N. Sabanegh, Meirbek Ikhsanov
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Abstract

Suez Oil Company in Egypt encountered well integrity issues due to a suspected leak in a 3 ½-in completion, in a gas well in Desouq, Nile Delta Region. This led to well closure and consequent loss of production. (figure 1) The memory multi-finger caliper was showing pitting but was not conclusive on identifying the leak point. Suez Oil Company required a rig-less solution to diagnose and pinpoint the leak and repair the well, so production could resume. (figure 2) However, conducting well intervention techniques on conventional slickline could not provide precise depth placement, much less real-time control and monitoring capabilities to confirm operations. Production logging services were deployed on E-line to detect the leak point in the tubing in real time by the variation of the quartz gauge's pressure and temperature measurements and spinner rotation associated with the flow. Once the Leak point was properly identified, Straddle system was deployed to remediate the leak, utilizing digital slickline, and the well was placed back into production.
埃及三角洲地区重要气井在受限工况下的泄漏诊断与修复
埃及苏伊士石油公司(Suez Oil Company)在尼罗河三角洲地区Desouq的一口3½in完井作业中遇到了井的完整性问题,原因是怀疑发生了泄漏。这导致了井的关闭和随之而来的生产损失。(图1)记忆多指卡尺显示点蚀,但不能确定泄漏点。苏伊士石油公司需要一种无钻机的解决方案来诊断和确定泄漏并修复油井,以便恢复生产。(图2)然而,在常规钢丝绳上实施修井技术无法提供精确的深度定位,更不用说实时控制和监测能力来确认操作。生产测井服务部署在E-line上,通过石英表的压力和温度测量值的变化以及与流量相关的旋转器旋转,实时检测油管中的泄漏点。一旦正确识别出泄漏点,利用数字钢丝绳部署跨式系统来修复泄漏,然后将井重新投入生产。
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