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Experimental study on the thermal expansion property and mechanical performance of oil well cement with carbonaceous admixtures

机译:含碳掺合料油井水泥的热膨胀性能和力学性能试验研究

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Thermal stress is induced by the mismatch in the thermal expansion properties of a cement sheath and casing steel, which could lead to the generation of microannulus or cracks when the temperature rapidly increases or decreases in a thermal recovery well. This stress can be relieved if the set cement has a coefficient of thermal expansion (CTE) similar to that of the casing steel. In this study, the influence of two carbonaceous admixtures (petroleum coke and gilsonite) on the thermal expansion property, compressive strength, and microstructure of the oil well cement were studied. Experimental results show that replacing the cement with different proportions of carbonaceous admixtures increases the CTE of the set cement. This effect is mainly attributed to not only the improvement in the cement microstructure as a result of the filling effect but also the thermal pressurization caused by the expansion of the volatile matter in carbonaceous admixtures and the phase transition of the gilsonite particles in the cement paste when the temperature rapidly increases. Furthermore, the transformation of the hydrate products narrows the CTE range of the hardened cement paste when the cement is subjected to a high temperature history. Although the addition of carbonaceous admixtures has a negative influence on the strength performance of the set cement, it still satisfies the needs of cementing engineering and guarantees the cementing quality.
机译:水泥护套和套管钢的热膨胀性能不匹配会引起热应力,当温度在热采井中快速升高或降低时,可能导致微环或裂缝的产生。如果固化的水泥的热膨胀系数(CTE)与套管钢的热膨胀系数相似,则可以消除该应力。在这项研究中,研究了两种碳质掺合料(​​石油焦和硅灰石)对油井水泥的热膨胀性能,抗压强度和微观结构的影响。实验结果表明,用不同比例的碳质掺合料替代水泥会增加固化水泥的CTE。该效果主要归因于由于填充作用而导致的水泥微观结构的改善,还归因于碳质混合物中挥发性物质的膨胀以及水泥浆中硅灰石颗粒的相变引起的热加压。温度迅速升高。此外,当水泥经受高温历史时,水合物产物的转变使硬化的水泥糊的CTE范围变窄。尽管添加碳质掺合料对凝结水泥的强度性能有负面影响,但它仍能满足固井工程的需求并保证固井质量。

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