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Engineered Flexible Expandable High-Density Cement System in Loss Prone High-Pressure Salt Section in Northern UAE

机译:UAE中损失易损高压盐部分的工程柔性可扩展高密度水泥系统

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The objective of a cementing operation is to achieve a long-term well integrity by providing good zonal isolation. In cementing operations in the northern part of the United Arab Emirates (UAE), thick salt formations, potential high-pressure zones, lost circulation zones and planned high pressure casing test added to the complexity of the cement job. The presence of 3,000-ft or thicker salt formation posed a key challenge. The chemically reactive salts in the salt sections affects slurry placement and hydration. Salt from formation can be incorporated into cement slurry while placement and adversely affects the fluid loss, rheology, and setting characteristics. Thus, first, the cement system needed to be designed to be tolerant of such effects. Also, high pore pressure was expected while drilling so the planned mud density varied from 15.5 ppg to 18 ppg. The highest cement slurry density of 19.2 ppg was required to cover this wide range while maintaining the density hierarchy requirement for optimum placement. Additionally, a high-pressure test planned after the casing was set resulted in additional stresses, which also posed substantial risks to the integrity of the cement sheath. A methodical approach was applied by first following the standard cementing practices and then categorizing the key factors in overcoming field specific challenges. Stress analysis using advanced software helped to identify the needed mechanical properties for the flexible and expanding cement system to remain intact under extreme pressure changes. After the in-depth lab testing, a fit for purpose compatible for placement against salt formation cement system was introduced. The use of engineered lost circulation fibers in the cement system would help to mitigate the losses during the cement job. The engineered high-density salt compatible flexible expandable cement system was designed to provide the desirable outcome to the complex challenges. Comprehensive lab testing along advanced zonal isolation software helped in successful first-time execution. The first-time application of this salt compatible flexible and expanding cement system has proven to be a robust solution for the cementation and could be the basis of design for all future wells industry-wide.
机译:胶结操作的目的是通过提供良好的地区隔离来实现长期的良好完整性。在阿拉伯联合酋长国(阿联酋)北部的巩固行动中,厚盐形成,潜在的高压区,丢失的循环区和计划的高压套管试验加入了水泥工作的复杂性。存在3,000英尺或更厚的盐形成构成了关键挑战。盐切片中的化学反应性盐影响浆料放置和水化。从形成的盐可以掺入水泥浆料中,同时放置并对流体损失,流变学和设定特性产生不利影响。因此,首先,水泥系统需要设计为容忍这种效果。此外,预期高孔隙压力在钻孔时,因此计划的泥浆密度从15.5ppg变化至18ppg。需要最高的水泥浆料密度为19.2ppg,以覆盖这种宽范围,同时保持密度等级要求以获得最佳放置。另外,设定壳体后计划的高压测试导致额外的应力,这也为水泥护套的完整性构成了显着的风险。通过首先在标准的固定实践之后应用一种方法方法,然后对克服领域特定挑战的关键因素进行分类。使用先进软件的应力分析有助于识别柔性和膨胀水泥系统的所需机械性能,以在极压变化下保持完整。在深入的实验室测试之后,引入了适用于对盐形成水泥系统的放置相容的用途。在水泥系统中使用工程丢失的循环纤维将有助于减轻水泥工作期间的损失。设计的高密度盐兼容柔性可扩展水泥系统旨在为复杂挑战提供理想的结果。沿着高级区域隔离软件的综合实验室测试有助于成功的首次执行。这种盐兼容的柔性和膨胀水泥系统的首次应用已被证明是对胶泥化的强大解决方案,并且可以是所有未来社会井设计的基础。

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