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Real-time detection of dielectric anisotropy or isotropy in unconventional oil-gas reservoir rocks supported by the oblique-incidence reflectivity difference technique

机译:斜发射反射差差技术支持的非传票油气储层岩石中的介电各向异性或各向同性的实时检测

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Current geological extraction theory and techniques are very limited to adequately characterize the unconventional oil-gas reservoirs because of the considerable complexity of the geological structures. Optical measurement has the advantages of non-interference with the earth magnetic fields, and is often useful in detecting various physical properties. One key parameter that can be detected using optical methods is the dielectric permittivity, which reflects the mineral and organic properties. Here we reported an oblique-incidence reflectivity difference (OIRD) technique that is sensitive to the dielectric and surface properties and can be applied to characterization of reservoir rocks, such as shale and sandstone core samples extracted from subsurface. The layered distribution of the dielectric properties in shales and the uniform distribution in sandstones are clearly identified using the OIRD signals. In shales, the micro-cracks and particle orientation result in directional changes of the dielectric and surface properties, and thus, the isotropy and anisotropy of the rock can be characterized by OIRD. As the dielectric and surface properties are closely related to the hydrocarbon-bearing features in oil-gas reservoirs, we believe that the precise measurement carried with OIRD can help in improving the recovery efficiency in well-drilling process.
机译:由于地质结构的显着复杂性,目前的地质提取理论和技术非常局限于充分表征非传统的油气储层。光学测量具有不干扰地球磁场的优点,并且通常用于检测各种物理性质。可以使用光学方法检测的一个关键参数是介电介电常数,其反映了矿物质和有机性能。在这里,我们报告了一种倾斜入射反射率差(ORIRD)技术,其对电介质和表面性能敏感,并且可以应用于储层岩石的表征,例如从地下提取的页岩和砂岩核心样本。使用臭氧信号清楚地识别出诸如Shales中的介电性质的层状分布和砂岩中的均匀分布。在Shales中,微裂纹和粒子取向导致电介质和表面性能的方向变化,因此,岩石的各向同性和各向异性可以通过OIRD表征。随着电介质和表面性质与油气储层中的含烃特征密切相关,我们认为具有OIRD的精确测量可以有助于提高钻井过程中的恢复效率。

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