Cement Conundrum: Valuable Lessons Learned for Sustaining Production

S. Zulkipli
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Abstract

Addressing wellbore integrity through cement evaluation has been an evergreen topic which frequently catches major operators by surprise due to premature water or gas breakthrough causing low production attainability from the wells. Managing idle well strings arising from integrity issues is also a challenge throughout the production period. The remedial solutions to these issues do not come conveniently and require high cost during late life well intervention which often erodes the well economic limit. A critical element of wellbore barrier which is cement integrity evaluation is proposed to be uplifted and given a new perspective to define success criteria for producer wells to achieve certain reserves addition and production recovery. This paper will highlight integrated factors affecting cement bond quality, impact to well production, potential remedies for poor cement bond observed leveraging on the enhanced workflow and new technology and way forward to proactively prevent the unwanted circumstances in the first opportunity taken. A set of recommendations and prioritization criteria for future cement improvement will be also highlighted. Several case specific wells logged with variable cement bond evaluation tools are re-assessed and deep-dived to trace the root causes for unsatisfactory cement bond quality observed which include reservoir characteristics, understanding anomalies during drilling and cementing operation, identifying cement recipe used, log processing parameters applied and observing best practices during cementing operation to improve the quality. New and emerging cement evaluation technology inclusive of radioactive-based logging to meet specific well objectives will be also briefly discussed in terms of differences and technical deliverables. Looking at each spectrum, results show that there are several interdependent factors contributing to poor cement bond quality observed. Accurate understanding of formation behavior, designing fit-for-purpose cement recipe and adequate planning for cementing operation on well-by-well basis are among the top- notch approaches to be applied for an acceptable cement bond quality and placement. Statistics show that 27% to 64% of production attainability is achieved by wells with good cement quality within the first 3 months of production and this increases to 85% to 98% up until 7 months of production period, while only 12% production attainability achieved for those wells with adverse cement quality issue. In another well, water cut as high as 47% since the first day of production is observed which keeps increasing up to 40% thereafter. In a nutshell, cement evaluation exercise shall not be treated as vacuum, instead it requires an integrated foundation and close collaboration to materialize the desired outcomes. Arresting the issue with the right approach in the first place will be the enabler for optimum well performance and productivity to exceed the recovery target.
水泥难题:可持续生产的宝贵经验
通过固井评价来解决井筒完整性问题一直是一个老生常谈的话题,但由于水或气的过早突破,导致井的产量低,常常让大型作业者感到意外。在整个生产过程中,管理由完整性问题引起的闲置井串也是一个挑战。这些问题的补救措施并不容易实现,并且在后期修井过程中需要很高的成本,这往往会侵蚀油井的经济极限。提出提升井眼屏障的关键要素水泥完整性评价,并从新的角度定义生产井的成功标准,以实现一定的储量增加和产量恢复。本文将重点介绍影响水泥胶结质量的综合因素、对油井生产的影响、利用改进的工作流程和新技术对水泥胶结不良的潜在补救措施,以及在第一次抓住机会时主动预防不良情况的方法。还将重点介绍一套建议和未来水泥改进的优先标准。对几口使用不同水泥胶结评估工具的特定井进行了重新评估和深入研究,以追踪观察到的水泥胶结质量不理想的根本原因,包括储层特征,了解钻井和固井作业期间的异常情况,确定使用的水泥配方,应用的测井处理参数,以及观察固井作业期间的最佳做法,以提高质量。新的和新兴的水泥评价技术,包括基于放射性的测井,以满足特定的井目标,也将简要讨论差异和技术成果。观察每个光谱,结果表明有几个相互依存的因素导致水泥粘结质量差。为了获得可接受的固井质量和固井位置,准确了解地层行为、设计适合用途的固井配方以及对井间固井作业进行充分的规划是最有效的方法。统计数据显示,水泥质量好的井在生产的前3个月内可以达到27% ~ 64%的产量,到生产的第7个月,这一比例增加到85% ~ 98%,而水泥质量不好的井只有12%的产量可达到产量。在另一口井中,自生产第一天起,含水率高达47%,此后一直增加到40%。简而言之,水泥评估工作不应被视为真空,相反,它需要一个综合的基础和密切的合作,以实现预期的结果。首先用正确的方法解决这个问题,将有助于实现最佳的油井性能和产能,从而超过采收率目标。
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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