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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Attenuation study of a clay-rich dense zone in fractured carbonate reservoirs
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Attenuation study of a clay-rich dense zone in fractured carbonate reservoirs

机译:腐蚀性碳酸盐储层中富含粘土致密区的衰减研究

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摘要

Seismic attenuation in clay-rich dense zones remains unknown, despite the importance of such zones in hydrocarbon reservoirs, where they delimit the reservoir zones and isolate them from nearby aquifers. We have determined that a dense zone separating two carbonate reservoirs of an onshore oilfield in Abu Dhabi, United Arab Emirates, exhibits the highest intrinsic attenuation even though the zone contains no hydrocarbons. The frictional movement due to the elastic contrast between the hard carbonates and soft clay is most likely the dominant mechanism in the dense zone. The compressional sonic and vertical seismic profile (VSP) attenuation are on the same order of magnitude and are both maximum in the dense zone. Therefore, it is possible that the same attenuation mechanism in this zone exists at low and high frequencies; whereas the intrinsic attenuation mechanism in the reservoir zones, which are more permeable and porous than the dense zone, can be explained by the coexistence of global and squirt-flow mechanisms. Moreover, sonic attenuation exhibits higher magnitudes than VSP attenuation in these zones. This is due to the fact that the squirt-flow mechanism, which can take place between pores and fractures, is more important at sonic frequencies. The scattering mechanism is also important in the reservoir zones; this is due to the high heterogeneity and the presence of fractures in these zones.
机译:尽管这些区域在碳氢化合物储层中的重要性,但是,尽管这些区域在碳氢化合物储层中的重要性,但它们在碳氢化合物储层中的重要性仍然是未知的,在那里他们将储层区域分开并将其与附近的含水层隔离。我们已经确定了一个密集的区域在阿拉伯联合酋长国阿布扎比的陆上油田的两种碳酸盐储存器,即使该区不含碳氢化合物,也表现出最高的内在衰减。由于硬碳酸盐和软粘土之间的弹性对比引起的摩擦运动很可能是致密区中的主要机理。压缩声音和垂直地震曲线(VSP)衰减在相同的数量级上,并且在密集区域中均为最大。因此,该区域中的相同衰减机制可能存在于低频率和高频上;虽然储层区域中的内在衰减机构,其比致密区域更渗透和多孔,但是通过全局和喷射流动机制的共存可以解释。此外,声波衰减表现出比这些区域中的VSP衰减更高的幅度。这是由于孔隙和骨折之间可以发生的喷射流动机制,在声音频率之间更为重要。散射机构在储层区域也很重要;这是由于这些区域中的高异质性和裂缝的存在。

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