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Time-lapse full-waveform inversion with ocean-bottom-cable data: Application on Valhall field

机译:具有海底电缆数据的时移全波形反演:在瓦尔霍尔场上的应用

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摘要

Knowledge of changes in reservoir properties resulting from extracting hydrocarbons or injecting fluid is critical to future production planning. Full-waveform inversion (FWI) of time-lapse seismic data provides a quantitative approach to characterize the changes by taking the difference of the inverted baseline and monitor models. The baseline and monitor data sets can be inverted either independently or jointly. Time-lapse seismic data collected by ocean-bottom cables (OBCs) in the Valhall field in the North Sea are suitable for such time-lapse FWI practice because the acquisitions are of a long offset, and the surveys are well-repeated. We have applied independent and joint FWI schemes to two time-lapse Valhall OBC data sets, which were acquired 28 months apart. The joint FWI scheme is double-difference waveform inversion (DDWI), which inverts differenced data (the monitor survey subtracted by the baseline survey) for model changes. We have found that DDWI gave a cleaner and more easily interpreted image of the reservoir changes compared with that obtained with the independent FWI schemes. A synthetic example is used to demonstrate the advantage of DDWI in mitigating spurious estimates of property changes and to provide cross validations for the Valhall data results.
机译:了解由于开采碳氢化合物或注入流体而导致的储层物性变化,这对于未来的生产计划至关重要。时移地震数据的全波形反演(FWI)提供了一种定量方法,可通过采用反演基准线和监测模型的差异来表征变化。基线和监视数据集可以独立或联合转换。通过北海的瓦尔霍尔油田的海底电缆(OBC)收集的延时地震数据适用于这种延时的FWI做法,因为这些数据具有很长的偏移量,而且勘测工作重复多次。我们已将独立的联合FWI方案应用于两个延时的Valhall OBC数据集,两个数据集的间隔时间为28个月。联合FWI方案是双差波形反演(DDWI),它可将差异数据(由基线勘测减去监测器勘测)的反演用于模型更改。我们已经发现,与独立FWI方案相比,DDWI给出了更清晰,更容易解释的储层变化图像。一个综合的例子用来证明DDWI在减轻对财产变化的虚假估计中的优势,并为Valhall数据结果提供交叉验证。

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