首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Mobility Effect on Poroelastic Seismic Signatures in Partially Saturated Rocks With Applications in Time-Lapse Monitoring of a Heavy Oil Reservoir
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Mobility Effect on Poroelastic Seismic Signatures in Partially Saturated Rocks With Applications in Time-Lapse Monitoring of a Heavy Oil Reservoir

机译:一种沉重油藏延时监测应用在部分饱和岩石中对多孔弹性地震签名的迁移效应

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Conventional seismic analysis in partially saturated rocks normally lays emphasis on estimating pore fluid content and saturation, typically ignoring the effect of mobility, which decides the ability of fluids moving in the porous rocks. Deformation resulting from a seismic wave in heterogeneous partially saturated media can cause pore fluid pressure relaxation at mesoscopic scale, thereby making the fluid mobility inherently associated with poroelastic reflectivity. For two typical gas-brine reservoir models, with the given rock and fluid properties, the numerical analysis suggests that variations of patchy fluid saturation, fluid compressibility contrast, and acoustic stiffness of rock frame collectively affect the seismic reflection dependence on mobility. In particular, the realistic compressibility contrast of fluid patches in shallow and deep reservoir environments plays an important role in determining the reflection sensitivity to mobility. We also use a time-lapse seismic data set from a Steam-Assisted Gravity Drainage producing heavy oil reservoir to demonstrate that mobility change coupled with patchy saturation possibly leads to seismic spectral energy shifting from the baseline to monitor line. Our workflow starts from performing seismic spectral analysis on the targeted reflectivity interface. Then, on the basis of mesoscopic fluid pressure diffusion between patches of steam and heavy oil, poroelastic reflectivity modeling is conducted to understand the shift of the central frequency toward low frequencies after the steam injection. The presented results open the possibility of monitoring mobility change of a partially saturated geological formation from dissipation-related seismic attributes.
机译:在部分饱和岩石中的常规地震分析通常倾向于估计孔隙液含量和饱和度,通常忽略迁移率的效果,这决定了流体在多孔岩石中移动的能力。由异质部分饱和介质中的地震波引起的变形可以在介于阶段尺度下引起孔隙流体压力松弛,从而使得与多孔弹性反射率固有地相关的流体迁移率。对于两个典型的气盐水库模型,具有给定的岩石和流体性质,数值分析表明,岩石框架的斑块流体饱和度,流体压缩性对比度和声刚度的变化共同影响了对移动性的地震反射依赖性。特别地,浅层和深层水库环境中的流体贴片的现实可压缩性对比在确定对移动性的反射敏感性方面起着重要作用。我们还使用一个时移地震数据集从蒸汽辅助重力泄油生产重油储层证明加上片状饱和可能导致地震频谱能量从基线到监测线移位移动性的变化。我们的工作流程开始于对目标反射率接口进行地震谱分析。然后,基于蒸汽和重油贴片之间的介观液体压力扩散,进行多孔塑料反射率建模以在蒸汽喷射后理解中心频率朝向低频的变化。所提出的结果打开了监测耗散相关地震属性部分饱和地质形成的移动性变化的可能性。

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