Chemical Admixture for Right-Angle Set Wellbore Cements

Elizabeth Q. Contreras
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Abstract

Polyaramid-based chemical admixtures for enhanced gas-tight oil well cements are of interest in the oil and gas industry. Here, a polymer platform is used as the base material for a line of new chemical admixtures in cementing in applications such as small molecule release and particle delivery. Polyaramid-based admixtures provide high-performance for high temperature and high pressure applications in ordinary Portland cement. Experimental results show that a basic cement slurry design responds to the release of admixture by the measure of changes in viscosity and thickening times. Applications in cement design is demonstrated from measurements obtained using oilfield equipment, like the consistometer. Immense efforts towards cement sheath integrity are important for production and safety. Challenges arises during the construction of wells when cement transitions from a slurry into a solid sheath. This transition can span over a significant length of time allowing gases to travel to the surface, causing casing-in-casing (CCA) events and pressure buildup. The ideal scenario is to eliminate the transition time of the slurry by designing cements to set instantaneously into an impermeable sheath. Right-angle set cements are characterized by a 90° set time as measured by a consistometer. The consistency of cement after addition of this new admixture remains at 20 Bc. In all cases, the admixture thereafter remains embedded within set cement and contributes significantly to its mechanical property. Dual performance stems from unique characteristics, such as chemical composition and mechanical integrity of new polymer admixtures. Using these admixtures, gas-tight cement sheaths show enhanced mechanical properties, such as resistance to breakage and fracture propagation, as well.
用于直角固井水泥的化学添加剂
用于增强气密油井水泥的聚酰胺基化学外加剂引起了石油和天然气行业的兴趣。在这里,聚合物平台被用作一系列新型化学外加剂的基础材料,用于小分子释放和颗粒输送等固井应用。聚酰胺基外加剂在普通硅酸盐水泥的高温高压应用中提供高性能。实验结果表明,基本水泥浆设计通过粘度变化和稠化次数来响应外加剂的释放。通过使用稠度计等油田设备获得的测量数据,论证了在水泥设计中的应用。水泥环完整性的巨大努力对生产和安全至关重要。在井的施工过程中,当水泥从泥浆过渡到固体护套时,就会出现问题。这种转变可能会持续很长一段时间,使气体到达地面,导致套管中(CCA)事件和压力积聚。理想的情况是通过设计水泥,使其立即进入不透水的护套,从而消除水泥浆的过渡时间。直角固井水泥的特点是用浓度计测量90°的固井时间。在加入这种新外加剂后,水泥的稠度保持在20bc。在所有情况下,外加剂之后仍然嵌入水泥中,并对水泥的力学性能做出了重大贡献。双重性能源于新型聚合物外加剂的独特特性,如化学成分和机械完整性。使用这些外加剂,气密水泥护套具有增强的机械性能,如抗破裂和抗裂缝扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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