用于固井应用的花岗岩地聚合物的温度依赖分类

Fawzi Chamssine, M. N. Agista, M. Khalifeh
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引用次数: 0

摘要

与波特兰水泥相比,地聚合物等替代材料似乎具有潜在的优势。然而,由于温度范围的差异,地聚合物在井的所有部分的应用仍然是一个主要的挑战。为此,花岗岩基地聚合物混合物的分类设计需要在一系列不同的工作温度下对其各种特性进行彻底的研究。在这项研究中,在5°C到60°C的温度范围内,为不同的井段提供了三种混合设计。通过在干固体共混物中添加CaO来调整低温(<50°C)的混合设计。通过工作性、流变性、短期抗压强度和x射线衍射(XRD)分析来总结所研究的混合料设计的性能。结果强调了Ca含量(wt%)在混合设计中的存在及其在提高材料在低操作温度下的性能中的作用。该研究表明,花岗岩基地聚合物在不同深度的造井和弃井中具有广阔的应用前景,并建议通过添加化学外加剂进一步改善其性能。此外,还强调了温度与Ca含量之间的关系,并建议对这两个参数的动力学进行更多的研究。
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Temperature-Dependent Classification of Geopolymers Derived From Granite Designed for Well Cementing Applications
Alternative materials such as geopolymers appear to have potential advantages compared to Portland cement. However, the application of geopolymers for all sections of the well is still a major challenge due to the difference in temperature ranges. To that end, the classification of the granite-based geopolymer mix designs requires a thorough investigation of various properties at a range of different operational temperatures. In this study, three mix designs are presented for different well sections at temperatures ranging from 5 °C to 60 °C. The mix designs for low temperatures (<50 °C) were tuned by adding CaO to the dry solid blend. Workability, rheology, short-term compressive strength, and X-ray diffraction (XRD) analysis were conducted to conclude the performance of the mix designs under study. Results highlight the presence of Ca content (wt%) in mix designs and its role in enhancing material performance at low operational temperatures. The study reveals a promising future application of the granite-based geopolymer for well construction and abandonment at varying depths with recommendations for further improving the performance by the addition of chemical admixtures. In addition, the relation between temperature and Ca content was highlighted, and more investigations into the kinetics governing these two parameters were recommended.
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