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首页> 外文期刊>Journal of Petroleum Science & Engineering >Mechanical, rheological, and stability performance of simulated in-situ cured oil well cement slurries reinforced with alumina nanofibers
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Mechanical, rheological, and stability performance of simulated in-situ cured oil well cement slurries reinforced with alumina nanofibers

机译:用氧化铝纳米纤维增强模拟原位固化油井水泥浆料的机械,流变术和稳定性性能

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摘要

Effects of highly dispersed Alumina Nanofibers (ANF) on the mechanical, rheological, and stability performances in oil well cement were investigated in this study. The cement sheath possesses a vital role in maintaining zonal isolation in the wellbore, supporting the casing, and preventing external casing corrosion. This research focuses on using ANF to improve these functions. Cement class "H" composed of various concentrations of ANF, 0.2% cement friction reducer (CFR), and distilled water were used in this experimental study. The nanofiber dosage consisted of 0.1%-0.4% ANF in increments of 0.1% by weight of cementitious materials. The nanomaterials were dispersed at various times using an ultrasonic batch to ensure uniform dispersion in the cement class "H" matrix. A pre-dispersed version was also provided. The most highly dispersed solution was used in all the cement test analysis. The results indicate the pre-dispersed solution at 0.1% ANF greatly increased the compressive strength by 28% after 8 h of curing and 50% after 24 h of curing at 82.2 degrees C (180 degrees F) and 34.47 MPa (5000 psi). Conversely, the tensile strength increased by 9% and 53% after 8 h and 24 h curing, at the same temperature and pressure conditions. Lastly, the differences in rheological, stability performance, and thickening time using cement slurries without ANF compared to slurries with ANF proved insignificant.
机译:本研究研究了高度分散的氧化铝纳米纤维(ANF)对油井水泥的机械​​,流变和稳定性性能的影响。水泥护套在维持井筒中的区域隔离方面具有重要作用,支撑壳体,并防止外壳腐蚀。本研究侧重于使用ANF来改善这些功能。在该实验研究中使用了由各种浓度的ANF,0.2%水泥摩擦减速剂(CFR)和蒸馏水组成的水泥类“H”。纳米纤维剂量为0.1%-0.4%的ANF,其增量为0.1%重量的水泥材料。使用超声波批次在各个时分分散纳米材料,以确保在水泥等级“H”基质中均匀分散。还提供了预先分散的版本。在所有水泥测试分析中使用最高度分散的溶液。结果表明,在0.1%ANF下的预分散溶液在固化8小时后,在8小时后,在82℃(180℃)和34.47MPa(5000psi)的24小时后,固化后的抗压强度为58%,50%。相反,在8小时和24小时固化后,拉伸强度在相同的温度和压力条件下增加了9%和53%。最后,与具有ANF的浆液相比,使用水泥浆液的流变族,稳定性性能和增稠时间的差异被证明是微不足道的。

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