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A model for foamed cementing of oil and gas wells

机译:油气井泡沫固井模型

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摘要

We present a two-dimensional model of the primary cementing process for foamed cement slurries. Foamed cement slurries have a number of claimed advantages, but also have a pressure-dependent density and rheology. The rheology is hard to quantify fully over all ranges of foam quality, which compromises the accuracy of models. The density variation is due to expansion/compression of the gas phase along the well, caused by variations in the static pressure. We show that in the absence of careful control, buoyancy-driven instabilities can result in the annulus, as the foamed slurry expands and the density drops below that of the displaced drilling mud. These instabilities appear to be of a classic porous media/Hele-Shaw cell fingering type, triggered by a threshold unstable density difference. We show that these instabilities are amplified by wellbore eccentricity, occurring lower in the well than in a concentric annulus. Our results question the safe usage of foamed cements in primary cementing.
机译:我们提出了一种用于发泡水泥浆的主要固井工艺的二维模型。泡沫水泥浆具有许多要求保护的优点,但也具有与压力有关的密度和流变性。流变学很难在泡沫质量的所有范围内完全量化,这损害了模型的准确性。密度变化是由于静压变化引起的气相沿井的膨胀/压缩所致。我们表明,在缺乏仔细控制的情况下,由浮力驱动的不稳定性会导致环空,因为泡沫泥浆膨胀并且密度下降到驱替钻井泥浆的密度以下。这些不稳定性似乎是经典的多孔介质/ Hele-Shaw细胞指法类型,由阈值不稳定密度差异触发。我们显示,井眼偏心率会放大这些不稳定性,井内偏心率要比同心环面低。我们的结果质疑发泡水泥在一次固井中的安全使用。

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