证明氧化铝纳米颗粒和合成纤维对 G 级油井水泥影响的实验研究

Ayoob M. Saadoon, A. Al-haleem, Ahmed Al-Yasri
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引用次数: 0

摘要

在钻井和生产作业中,固井作业的有效性对高效率的进展至关重要。油井水泥的抗压强度是反映其长期承受强力条件能力的关键特征。本研究使用两种添加剂(纳米氧化铝和合成纤维)对巴比伦水泥厂生产的伊拉克 G 级油井水泥的抗压强度和稠化时间进行了评估和改进,以符合美国石油学会(API)的规范。添加剂以不同比例使用,并在不同条件下制备了一组样品。在不同条件下测量了抗压强度和增稠时间。纳米氧化铝的用量(按水泥(BWOC)重量计分别为 0.5%、1% 和 1.5%)与合成纤维(分别为 0.5 克、1 克和 1.5 克)搭配使用。结果表明,根据添加剂的比例,伊拉克油井水泥的抗压强度有了明显提高,所有值均符合 API 要求,稠化时间也有所缩短。抗压强度提高最明显的是按水泥重量计含有 1.5% 纳米氧化铝(BWOC)和 1.5 克合成纤维(Barolift)的样品,在温度为 38 °C 和 60 °C 时,抗压强度分别提高了 40.7% 和 33.8%,而在此添加剂比例下,稠化时间缩短了 26.53%。结果表明,使用这些添加剂提高伊拉克油井水泥的性能是可行的,从而扩大了其在伊拉克油田的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Experimental Study to Demonstrate the Effect of Alumina Nanoparticles and Synthetic Fibers on Oil Well Cement Class G
In the drilling and production operations, the effectiveness of cementing jobs is crucial for efficient progress. The compressive strength of oil well cement is a key characteristic that reflects its ability to withstand forceful conditions over time. This study evaluates and improves the compressive strength and thickening time of Iraqi oil well cement class G from Babylon cement factory using two types of additives (Nano Alumina and Synthetic Fiber) to comply with the American Petroleum Institute (API) specifications. The additives were used in different proportions, and a set of samples was prepared under different conditions. Compressive strength and thickening time measurements were taken under different conditions. The amounts of Nano Alumina (0.5%, 1%, and 1.5% by weight of cement (BWOC)) were selected with synthetic fiber (0.5 g, 1 g, and 1.5 g, respectively). The results show a significant improvement in compressive strength, with all values meeting the API requirements, and a decrease in the thickening time of Iraqi oil well cement, depending on the proportions of additives. The most significant improvement in compressive strength was achieved in the sample containing 1.5% Nano Alumina by weight of cement (BWOC) and 1.5 g Synthetic Fiber (Barolift), where the compressive strength increased by 40.7% and 33.8% at a temperature of 38 °C and 60 °C, respectively, while the thickening time decreased by 26.53% at this ratio of additives. The results demonstrate the feasibility of using these additives to enhance the performance of Iraqi oil well cement, expanding its potential application in Iraqi oil fields.
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