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Permeability of Laboratory-Formed Methane-Hydrate-Bearing Sand: Measurements and Observations Using X-Ray Computed Tomography

机译:实验室形成的含甲烷水合物的砂的渗透性:使用X射线计算机断层摄影术的测量和观察

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摘要

Methane hydrate was formed in two moist sands and a sand/silt mixture under a confining stress in an X-ray-transparent pressure vessel. Three initial water saturations were used to form three different methane-hydrate saturations in each medium. X-ray computed tomography (CT) was used to observe location-specific density changes caused by hydrate formation and flowing water. Gas-permeability measurements in each test for the dry, moist, frozen, and hydrate-bearing states are presented. As expected, the effective permeabilities (intrinsic permeability of the medium multiplied by the relative permeability) of the moist sands decreased with increasing moisture content. In a series of tests on a single sample, the effective permeability typically decreased as the pore space became more filled in the order of dry, moist, frozen, and hydrate-bearing. In each test, water was flowed through the hydrate-bearing medium and we observed the location-specific changes in water saturation using CT scanning. We compared our data to a number of models, and our relative permeability data compare most favorably with models in which hydrate occupies the pore bodies rather than the pore throats. Inverse modeling (using the data collected from the tests) will be performed to extend the relative permeability measurements.
机译:在X射线透明的压力容器中,在限制应力下,在两个潮湿的沙子和沙子/泥沙混合物中形成甲烷水合物。使用三种初始水饱和度在每种介质中形成三种不同的甲烷水合物饱和度。 X射线计算机断层扫描(CT)用于观察由水合物形成和流动的水引起的特定位置的密度变化。给出了每种测试中干燥,潮湿,冷冻和水合物含气状态下的气体渗透率测量值。正如预期的那样,湿砂的有效渗透率(介质的固有渗透率乘以相对渗透率)随含水量的增加而降低。在对单个样品进行的一系列测试中,有效渗透率通常随着孔隙空间变得越来越干而降低,其顺序是干燥,潮湿,冷冻和含水合物。在每个测试中,水都流过含水合物介质,我们使用CT扫描观察到了水饱和度的特定位置变化。我们将我们的数据与许多模型进行了比较,并且我们的相对渗透率数据与水合物占据了孔体而不是孔喉的模型的比较最有利。进行逆建模(使用从测试中收集的数据)以扩展相对渗透率测量值。

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