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Volumetric bounds on subsurface fluid substitution using 4D seismic time shifts with an application at Sleipner, North Sea

机译:使用4D地震时移的地下流体替代的体积界限应用于北海的sleipner

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摘要

A method is presented for the volumetric estimation of subsurface fluid substitution based on the analysis of 4D seismic time shifts. Since time shifts cannot resolve for fluid saturation and layer thickness simultaneously without additional constraints, mass estimates are derived from the complete set of possible fluid saturations and layer thicknesses. The method considers velocity-saturation relationships that range from uniform fluid mixing to patchy fluid mixing. Based on a generalized velocity-saturation relationship that is parameterized by the degree of patchiness, explicit upper and lower fluid mass bounds are provided. We show that the inherent ambiguity between fluid saturation, fluid mixing, and layer thickness has a severe impact on the convergence of these mass bounds. That is, fluid substitution scenarios with patchy fluid mixing and roughly linear velocity-saturation relationships allow for more accurate fluid quantification than scenarios associated with uniform mixing. Application of the method to two 4D seismic monitor data sets from Sleipner results in CO2 mass bounds that are consistent with the true injected masses of CO2. Moreover, a linear relationship between progressively developing 4D time shifts and known injected CO2 mass is observed, suggesting that the evolving patterns of fluid saturation and fluid mixing in the CO2 plume have remained roughly constant with time.ududud
机译:提出了一种基于4D地震时移分析的地下流体置换体积估算方法。由于时间偏移无法在没有其他限制的情况下同时解决流体饱和度和层厚的问题,因此从可能的流体饱和度和层厚的完整集合中得出质量估算值。该方法考虑了速度-饱和关系,范围从均匀的流体混合到斑驳的流体混合。基于由斑驳程度参数化的广义速度-饱和关系,提供了明确的上下流体质量边界。我们表明,流体饱和度,流体混合和层厚度之间固有的歧义性对这些质量边界的收敛性具有严重影响。也就是说,与均匀混合相关联的场景相比,具有零散的流体混合和大致线性速度-饱和关系的流体替代场景可以更准确地进行流体定量。该方法在来自Sleipner的两个4D地震监测器数据集上的应用导致CO2的质量界限与实际注入的CO2质量一致。此外,观察到渐进发展的4D时间偏移与已知注入的CO2质量之间的线性关系,这表明CO2羽流中流体饱和度和流体混合的演化模式随时间大致保持恒定。 ud ud ud

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