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Advanced cement integrity evaluation of an old well in the Rousse field

机译:鲁西领域旧井的高级水泥完整性评价

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The Rousse field, located in the Lacq basin in the southwest of France, is a site for a pilot carbon dioxide (CO_2) storage project operated by Total. Since 2010, CO_2 has been injected into a depleted gas field at a depth of 4.5 km through RSE-1, a 45-year old production well converted to an injection well. Older wells are commonly recognized as the most likely pathway for CO_2 to migrate from the injection zone to other zones or to the surface. A number of factors could increase the potential risk for these wells: completions and production history may have created defects in the sealing elements (cement, steel and elastomers); the history itself may not be known in sufficient detail to estimate a reliable risk figure and finally the injected or produced fluids may have corroded the structure Old wells, whether they are converted to injectors or are in the path of the injection pressure field, could require renewed evaluation and preventive repairs as part of the field-level containment management plan, if their integrity assessment request so. As part of the due diligence process, advanced cement and steel evaluation logging tools were run in the RSE-1 well to investigate the bottom kilometer of the two kilometer-thick caprock. The 3D integrity map produced by the acoustic logging tools was analyzed for the presence of connected defects (pathways) that could lead to unwanted CO_2 migration. The logs were also compared to the original 40 year old low-resolution sonic log to assess the extent of degradation, if any. lem, is that of mud channels left behind during the cement placement process. These defects present the highest risk because of their relatively large flow area. Since the well was completed in 1967, special attention was paid to the occurrence, connectivity and extent of channels. Even though imaging of the cemented annulus revealed an eccentered casing, almost lying on the rock face, and an oval borehole, the few mud pockets trapped between casing and rock were confirmed to be intermittent, with good cement providing hydraulic isolation between them. The comparison of the through-casing caliper to the formation sonic log enabled identification of borehole breakouts, caused by stress anisotropy, as the reason for the ovalization of the borehole section. Casing-cement bonding was confirmed to be excellent (it actually improved compared to the original log), and model-based inversion of imaging data suggests that cement-formation bond is also good. Defect-oriented analysis of the logs thus confirmed that RSE-1 provided containment across the caprock and was suitable for conversion to a CO_2 injector without any repair or improvement work.
机译:鲁塞场,位于法国西南部的拉克盆地,是由总经营试点二氧化碳(CO_2)储存项目的站点。 2010年以来,CO_2已注入耗尽的气体场在通过RSE-1 4.5 km深度,一个45岁的生产井转换为注入井。旧的井被公认为从注射区其他区域或表面的最可能途径CO_2迁移。许多因素可能增加潜在风险这些井:完井和生产历史可以具有密封元件(水泥,钢和弹性体)产生的缺陷;历史本身可能不会以足够的细节是已知的估计可靠的风险指数和最后喷射的或产生的流体可被腐蚀的结构老井,它们是否被转换为喷射器或者是在喷射压力场的路径中,可能需要重新评估和预防维修为字段级遏制管理计划的一部分,如果他们的诚信考核要求左右。由于尽职调查过程的一部分,先进的水泥和钢材的评价测井仪器在RSE-1运行良好,调查两公里厚的盖层的底部公里。由声波测井工具产生的三维地图完整性分析其可能导致不期望的迁移CO_2连接缺陷(路径)的存在。日志也比原来的40岁低分辨率声波曲线,以评估退化的程度,如果有的话。 LEM,是泥的渠道在水泥贴片过程中留下的。这些缺陷存在,因为他们的流量比较大的区域的风险最高。由于该井于1967年完成,特别注意了渠道的出现,连通性和程度。即使胶结环的成像显示一个偏心的外壳,几乎趴在岩石表面,和椭圆形井,被困套管和岩石之间的几个泥袋被确认为间歇性,具有良好的水泥它们之间提供液压隔离。通套管钳以在形成的声波测井的比较启用钻孔崩落,由压力引起的各向异性的识别,对于井眼部分的椭圆化的原因。套管胶结接合被证实为优异(相对于原始日志它实际上提高),和成像数据的基于模型的反演表明,水泥形成键也很好。日志的缺陷为本分析从而确认RSE-1提供容纳穿过盖层并且是适合于变换到一个注射器CO_2没有任何修理或改进工作。

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