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Influence of upscaling on identification of reservoir fluid properties using seismic-scale elastic constants

机译:放大对使用地震尺度弹性常数识别储层流体性质的影响

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摘要

Elastic constants derived from seismic-scale measurements are often used to infer subsurface petrophysical properties based on rock-physics relationships established from either theoretic model or core-scale measurements. However, the spatial heterogeneity of rock physical properties at the local scale has a significant impact on this relation. To understand this problem, we built a scaled physical model comprised of artificial porous layers with different pore fluids. After conducting a two-dimensional marine seismic survey over the physical model, the physical modeling data ware then used to retrieve the elastic constants of the layered package. The seismic-scale results reveal that the identification of reservoir fluid properties is improved using elastic constants that is more sensitive to pore fluid properties. The results of numerical simulations show that Lamé moduli provide more insight into rock properties and pore-fluid contents than P-wave impedances, and that the relationship between the upscaled elastic constants and the effective fluid bulk moduli at the seismic scale is usually not perfectly preserved at the reservoir scale. To interpret seismic-scale elastic constants for petrophysical properties, the rock physics relationship need to be carefully calibrated. The findings will help us understand the upscaling of rock-physics transform, which will improve the accuracy of geological property predictions from seismic-scale elastic constants.
机译:通常,根据理论模型或岩心尺度测量值建立的岩石物理关系,从地震尺度测量值得出的弹性常数通常用于推断地下岩石物性。但是,岩石物理性质在局部尺度上的空间异质性对该关系具有重大影响。为了理解这个问题,我们建立了一个缩放的物理模型,该模型由具有不同孔隙流体的人造多孔层组成。在对物理模型进行了二维海洋地震勘测后,物理模型数据软件随后用于检索分层包装的弹性常数。地震规模的结果表明,使用对孔隙流体特性更敏感的弹性常数可以改善对储层流体特性的识别。数值模拟结果表明,与纵波阻抗相比,拉美模量能更深入地了解岩石性质和孔隙流体含量,而且在地震尺度上通常无法完美地保留高比例弹性常数与有效流体体积模量之间的关系。在水库规模。为了解释岩石物理特性的地震尺度弹性常数,需要仔细校正岩石物理关系。这些发现将帮助我们了解岩石物理变换的规模,这将提高根据地震尺度弹性常数预测地质属性的准确性。

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