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Brazilian carbonate reservoir: A successful seismic time-lapse monitoring study

机译:巴西碳酸盐岩储层:成功的地震延时监测研究

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Brazilian carbonate reservoirs contain huge oil-in-place volumes and are likely to have an important economic impact in global oil industry. Such carbonate reservoirs, both Albian and Aptian, are located offshore in deep water, which has an important role in development costs. In siliciclastic plays it is standard practice to use time-lapse (4D) seismic to locate wells in unswept areas, maximizing the recovery factor. However, in carbonate plays, time-lapse seismic monitoring remains challenging, with few cases of success published around the world.Carbonates differ from siliciclastic rocks in many aspects. With a varied chemical composition and complex pore connectivity, carbonates bring on a large diversity of facies, each one showing a specific seismic response. Moreover, the usually high incompressibility of the carbonate matrix reduces sensitivity to pressure and saturation changes, which are the main effects expected on a hydrocarbon field undergoing production. Considering both the economic relevance and the difficulties of using time-lapse seismic to monitor carbonate reservoirs, Petrobras created a strategic program to face this challenge, a time-lapse seismic (S4D) study of an Albian carbonate reservoir located in the Campos Basin offshore Brazil. Three legacy data were available: streamer-1987, stream-er-2002, and ocean-bottom cable-2010. Extensive feasibility studies are performed as well as a meticulous prestack 4D simultaneous inversion based on the seismic data, preliminary cross-equalized to partially overcome the initial low repeatability. A multidisciplinary interpretation conducted by a team of geophysicists, geologists, and reservoir engineers finally lead to results overcoming expectations. Saturation and pressure changes are detected using P- and S-impedance attributes, consistent with production data. Results are opening perspectives for further monitoring other carbonate reservoirs, especially with new presalt Brazilian discoveries in the Campos and Santos Basins, which might have a huge economic impact.
机译:巴西碳酸盐岩储层蕴藏着巨大的原地石油,可能会对全球石油工业产生重要的经济影响。这种碳酸盐岩储集层,既有Albian也有Aptian,都位于深水海上,这对开发成本具有重要作用。在硅质碎屑岩中,通常的做法是使用时延(4D)地震法在未吹扫的区域定位井,以使采收率最大化。然而,在碳酸盐岩层中,延时地震监测仍然具有挑战性,在世界范围内很少有成功案例发表。碳酸盐岩在许多方面与硅质碎屑岩不同。碳酸盐具有不同的化学成分和复杂的孔隙连通性,带来了各种各样的相,每个相都表现出特定的地震响应。而且,碳酸盐基质的通常高不可压缩性降低了对压力和饱和度变化的敏感性,这是预期对正在生产的烃田的主要影响。考虑到经济相关性以及使用延时地震监测碳酸盐储层的困难,巴西国家石油公司制定了一项应对这一挑战的战略计划,即对巴西近海坎波斯盆地的一个阿尔比碳酸盐储层进行延时地震(S4D)研究。 。可获得三个遗留数据:streamer-1987,streamerer-2002和ocean-bottom-电缆-2010。根据地震数据进行了广泛的可行性研究,并进行了精细的叠前4D同时反演,进行了初步的交叉均衡,以部分克服初始的低重复性。由一组地球物理学家,地质学家和油藏工程师进行的多学科解释最终导致结果超出了预期。使用P阻抗和S阻抗属性检测饱和度和压力变化,与生产数据一致。结果为进一步监测其他碳酸盐岩储层开辟了前景,尤其是在坎波斯和桑托斯盆地的巴西新盐前发现中,这可能会产生巨大的经济影响。

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