Pressure Activated Sealant to Restore Tubing Integrity – Case Study of Well Tn-X in Mahakam

G. D. Dahnil
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Abstract

Pressure activated sealant is used to repair tubing leak and restore tubing integrity without the need to install downhole devices which yield additional restriction inside tubing and reduce tubing ID. Leak on tubing was detected in early production phase from the continuous increase of A annulus pressure. The leak point was indicated from Production Logging Tool (PLT) at 183 m suspected from tubing thread connection, with annulus pressure buildup rate 435 psi/24 hrs. Pressure activated sealant was selected as the means to cure the leak. Retrievable plug was set below the leak point and sealant was pumped on top of plug, followed by inhibited water. Then pressure was applied at surface to squeeze and activate the sealant. The remaining fluid inside tubing remained liquid, allowing the plug to be retrieved. A total of 59 L sealant mixture and 750 L of inhibited water was pumped to the well. Hesitation pressure was performed to activate the sealant, and got indication of chemical sealing at 1000 psi. The tubing was then pressure tested to 5000 psi and pressure was holding in 1 hour, indicating positive isolation has been established between tubing-annulus. From continuous annulus pressure monitoring, pressure in A annulus has been stable at ~40 psi for the last 8 months after sealant injection has been performed. Pressure activated sealant is proven as a reliable method to cure small leak in tubing. Since the sealant will only be hardened inside the leaking point, there will be no additional restriction in the tubing, thus Internal Diameter (ID) reduction will not be a concern for future well intervention operations. Pressure activated sealant could become one of the alternatives to cure tubing leaks, especially in the cases where tubing ID reduction is not favored.
压力激活密封剂恢复油管完整性——以Mahakam地区Tn-X井为例
压力激活密封胶用于修复油管泄漏并恢复油管完整性,而不需要安装井下设备,这些设备会在油管内产生额外的限制,并降低油管内径。在生产初期,由于环空压力的持续增加,油管出现了泄漏。生产测井工具(PLT)显示泄漏点位于距油管螺纹连接处183米处,环空压力累积速率为435 psi/24小时。选择压力活化密封胶作为封堵泄漏的手段。将可回收的堵头封在泄漏点以下,将密封胶泵入堵头顶部,然后注入抑制水。然后在表面施加压力以挤压和激活密封胶。油管内的剩余液体保持液体状态,使堵头能够回收。总共向井中泵入59 L密封胶混合物和750 L抑制水。在1000 psi的压力下,通过犹豫压力激活密封胶,得到了化学密封的指示。然后对油管进行压力测试至5000psi,并在1小时内保持压力不变,这表明油管与环空之间已经建立了良好的隔离。通过连续监测环空压力,在注入密封胶后的8个月里,A环空压力一直稳定在~ 40psi。压力活化密封胶是解决油管小泄漏的可靠方法。由于密封胶只会在泄漏点内部硬化,因此不会对油管造成额外的限制,因此在未来的修井作业中,内径(ID)的减小将不再是一个问题。压力活化密封胶可以成为解决油管泄漏的替代方案之一,特别是在不赞成减小油管内径的情况下。
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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