确定水泥浆精确稠化时间的改进测试方案:一种以现场为中心的方法,以防止水泥浆在放置时过早凝固,并最大限度地提高操作效率

Wajid Ali, Faisal Abdullah Al-Turki, Fabian Lopez, M. Bouaraki
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引用次数: 0

摘要

本文讨论了有关水泥浆设计的一些挑战,重点是稠化时间,需要仔细的工程实践,以及适当的固井操作考虑。它提出了一系列的增稠时间测试研究,比较了“常规测试实践”和“现场模拟测试”,以说明结果之间的差异。油田固井的许多方面都非常重要,值得研究。需要注意的一个方面是用于设计井中水泥浆的程序。分批掺合和静态条件影响油田水泥的物理性质,包括稠化时间。传统的实验室测试总是遵循API程序的增稠时间。虽然这在大多数情况下可能是足够的,但在某些情况下,它可能只能准确地预测现场行为(在实际条件下)。常规的稠化时间试验不一定能反映水泥浆的真实响应性。传统的增稠时间等待期与浆液在放置过程中无意或故意关闭后保持静态和仍可移动的时间没有直接关系。搅拌、泵送和置换水泥(包括任何停机)都会影响水化和稠化行为。因此,必须了解过程中每个部分对增稠时间的相对贡献,以帮助防止故障。这些贡献可能不会显著影响浆料的性质,但应该量化和理解。水泥稠化时间的可靠预测对油田固井作业的成功与否至关重要。由于水泥充填技术变得越来越复杂,因此在准确的稠化时间内输送泥浆对于作业的成功至关重要。本文提出了一种改进的测试方案,以评估分批搅拌和静态周期对水泥浆稠化时间的影响,以尽量减少水泥浆过早凝结的事件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modified Testing Protocol to Determine the Precise Thickening Time of Cement Slurry: A Field-centered Approach to Prevent the Premature Setting of Cement Slurry while Placement and Maximizing the Operational Efficiency
This paper addresses some challenges concerning cement slurry designs, focused on thickening time, requiring careful engineering practices, and proper cementing operational considerations. It presents a series of thickening time test studies compared to "conventional testing practice" versus "field simulated testing" to illustrate the differences between results. Many aspects of oilfield cementing are sufficiently important to warrant study. One area that requires attention is the procedures used to design the cement slurry in the well. The batch-mix and static conditions influence the physical attributes of oilfield cement, including thickening time. Conventional laboratory testing invariably follows the API procedure for thickening time. Although this might be adequate in most cases, it may only precisely predict field behavior (at actual conditions) in some cases. Conventional thickening time tests may not necessarily indicate the true responsiveness of cement slurry. Traditional thickening time waiting periods do not relate directly to how long a slurry can remain static and still be moveable after an inadvertent or intentional shutdown during placement. Mixing, pumping, and displacing the cement (including any shutdown) affect the hydration and thickening behavior. Therefore, it is imperative to understand the relative contributions from each part of the process toward the thickening time to help prevent failures. These contributions might not significantly impact slurry properties but should be quantified and understood. The reliable prediction of cement thickening time can be vital to the success of oilfield cementing operations. Because cement placement techniques have become complex, delivering slurry with accurate thickening time can be crucial to the job's success. This paper presents a modified testing protocol to evaluate the effects of batch-mixing and static-period on cement slurry's thickening time to minimize the incidents related to the premature setting of cement slurry.
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