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Efeito da adição de microfibras de lã de vidro na tenacidade à ruptura de pastas de cimento para poços de petróleo

机译:添加玻璃棉超细纤维对油井水泥浆断裂强度的影响

摘要

Although there are a wide variety of additives that act in fresh state, to adjust the properties of cement, there is also a search by additions that improve the tenacity of the cement in the hardened state. This, in turn, can often be increased by inserting fibers, which act on the deflection of microcracks. This study aimed to use a microfiber glass wool (silica-based) as an additive reinforcing the cement matrix, improving the rupture tenacity, in order to prevent the propagation of microcracks in the cement sheath commonly found in oil wells submitted to high temperatures. The fibers were added at different concentrations, 2 to 5% (BWOC) and varied average sizes, grinding for 90 s, 180 s, 300 s, 600 s. The cement slurries were made with a density of 1,90 g/ cm3 (15,6 lb/gal), using Portland cement CPP- Special Class as the hydraulic binder and 40% silica flour. The characterization of the fiber was made by scanning electron microscopy (SEM), particle size by sieving, X-ray fluorescence (XRF), X-ray diffraction (XRD) and thermogravimetry (TG / DTG). Were performed technological tests set by the API (American Petroleum Institute) by rheology, stability, free water, compressive strength, as well as testing rupture energy, elastic modulus and permeability. The characterization results showed good thermal stability of the microfiber glass wool for application in oil wells submitted to steam injection and, also, that from the particle size data, it was possible to suggest that microfibers milled up to 300 s, are ideal to act as reinforcement to the cement slurries. The rheological parameters, there was committal of plastic viscosity when larger lengths were inserted of microfiber (F90). The values obtained by free water and stability were presented according to API. The mechanical properties, the incorporation of microfiber to the cement slurries gave better rupture tenacity, as compared to reference cement slurries. The values of compressive strength, elastic modulus and permeability have been maintained with respect to the reference cement slurries. Thus, cement slurries reinforced with microfiber glass wool can ensure good application for cementing oil wells submitted to steam injection, which requires control of microcracks, due to the thermal gradients
机译:尽管有各种各样的添加剂在新鲜状态下起作用,以调节水泥的性能,但仍在寻找可以改善水泥在硬化状态下的韧性的添加剂。反过来,这通常可以通过插入纤维来增加,该纤维作用于微裂纹的偏转。这项研究旨在使用超细纤维玻璃棉(二氧化硅基)作为增强水泥基体的添加剂,提高断裂强度,以防止微裂纹在高温下油井中常见的水泥护套中扩散。分别以2%至5%(BWOC)的不同浓度和不同的平均尺寸添加纤维,分别研磨90 s,180 s,300 s,600 s。使用波特兰水泥CPP-Special Class作为水硬性粘结剂和40%的硅粉制成密度为1.90 g / cm3(15.6 lb / gal)的水泥浆。通过扫描电子显微镜(SEM),筛分粒度,X射线荧光(XRF),X射线衍射(XRD)和热重分析(TG / DTG)对纤维进行表征。进行了API(美国石油协会)设定的工艺测试,包括流变学,稳定性,游离水,抗压强度以及断裂能,弹性模量和渗透性。表征结果表明,超细纤维玻璃棉具有良好的热稳定性,可用于注入蒸汽的油井,而且,根据粒度数据,有可能表明,研磨至300 s的超细纤维非常适合用作水泥浆的加固。流变参数,当插入较大长度的超细纤维(F90)时具有塑性粘度。由游离水和稳定性获得的值根据API给出。与参考水泥浆相比,机械性能,向水泥浆中掺入超细纤维的断裂强度更好。相对于参考水泥浆,保持了抗压强度,弹性模量和渗透率的值。因此,用微纤维玻璃棉增强的水泥浆可确保良好地应用在注水蒸汽注入的油井中,由于温度梯度的原因,这需要控制微裂缝。

著录项

  • 作者

    Paiva Luanna Carla Matias;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 por
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