Murtaza Mobeen, Tariq Zeeshan, Rahman Muhammad Kalimur, Kamal Muhammad Shahzad, Mahmoud Mohamed
College of Petroleum Engineering & Geosciences, King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia.
Center for Engineering Research, Research Institute, King Fahd University of Petroleum & Minerals, Dhahran 31261, Saudi Arabia.
ACS Omega. 2021 Feb 10;6(7):4950-4957. doi: 10.1021/acsomega.0c05999. eCollection 2021 Feb 23.
Sustained casing pressure (SCP) is a common issue in the oil and gas industry. There were several solutions applied to contain it either by mechanical means or by injecting high-performing cement slurries. There are some limitations associated with these solutions such as volume loss, mechanical failures, limited expansion, exact spotting, and material deterioration with time. In this study, a novel expandable cement system contains a novel silicate aqueous alkali alumino silicate (AAAS) and zinc (Zn) metal slurry, and class G cement is introduced as an expandable solution to prevent annulus flow between the casing and formation. The silicate-based admixture reacts with the Zn metal slurry to generate hydrogen gas that results in the expansion of the cement slurry. The reaction and expansion can be controlled by optimizing the quantities of silicate systems and metal slurry. The expansive properties of the silicate system can be utilized to formulate a cement mix for plugging off the annulus flow. Cement slurries with different percentages such as 3, 5, and 8% by weight of water (BWOW) of AAAS silicate and Zn metal slurry were prepared and tested for their expansion. Several laboratory tests such as expansion, consistency, viscosity, and unconfined compressive strength were performed to assess the percentage expansion. The expansion was tested in the plastic tube as well as in expansion molds. The cement slurries were cured at 50 °C temperature in a water bath. It was observed that metal slurry upon reaction with AAAS silicate resulted in cement expansion by several percentages. The cement expansion was reduced by 16% at 8% BWOW concentration of AAAS silicate as compared to the expansion gained at 3% BWOW concentration. Further, the temperature triggers the expansion of cement slurry. The consistency and viscosity were impacted by the addition of AAAS and metal slurry. The application of expandable slurry can help in preventing the annulus flow and eliminating the safety issues associated with SCP. The expansion solution can be applied in loss circulation zones.
持续套管压力(SCP)是石油和天然气行业中的一个常见问题。有几种解决方案可用于控制它,要么通过机械手段,要么通过注入高性能水泥浆。这些解决方案存在一些局限性,例如体积损失、机械故障、有限的膨胀、精确放置以及材料随时间的劣化。在本研究中,一种新型可膨胀水泥体系包含一种新型硅酸盐碱式铝硅酸盐水溶液(AAAS)和锌(Zn)金属浆体,并引入G级水泥作为一种可膨胀解决方案,以防止套管与地层之间的环空流动。基于硅酸盐的外加剂与锌金属浆体反应产生氢气,从而导致水泥浆体膨胀。反应和膨胀可通过优化硅酸盐体系和金属浆体的用量来控制。硅酸盐体系的膨胀特性可用于配制用于封堵环空流动的水泥混合物。制备了不同百分比(按水的重量计,AAAS硅酸盐和锌金属浆体分别为3%、5%和8%)的水泥浆,并对其膨胀性能进行了测试。进行了多项实验室测试,如膨胀、稠度、粘度和无侧限抗压强度测试,以评估膨胀百分比。在塑料管以及膨胀模具中测试了膨胀情况。水泥浆在50℃的水浴中养护。观察到金属浆体与AAAS硅酸盐反应后导致水泥膨胀了几个百分点。与3%BWOW浓度下获得的膨胀相比,AAAS硅酸盐浓度为8%BWOW时水泥膨胀降低了16%。此外,温度会引发水泥浆体的膨胀。AAAS和金属浆体的添加会影响稠度和粘度。可膨胀浆体的应用有助于防止环空流动并消除与SCP相关的安全问题。这种膨胀解决方案可应用于漏失层。