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Enhancement of dynamic reservoir interpretation by correlating multiple 4D seismic monitors to well behavior

机译:通过将多个4D地震监测器与油井动态相关联来增强动态储层解释

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We have found that dynamic reservoir interpretation can be enhanced by directly correlating the seismic amplitudes from many repeated 4D seismic monitors to the field production and injection history from wells. This "well2seis" crosscorrelation was achieved by defining a linear relationship between the 4D seismic signals and changes in the cumulative fluid volumes at the wells. We also found that the distribution of the well2seis correlation attribute can reveal key reservoir connectivity features, such as the seal of faults, fluid pathways, and communication between neighboring compartments. It can therefore enhance dynamic reservoir description. Based on this enhanced interpretation, we have developed a workflow to close the loop between 4D seismic and reservoir engineering data. First, the reservoir model was directly updated using quantitative information extracted from multiple surveys, by positioning and placing known barriers or conduits to flow. After this process, a seismic-assisted history matching was applied using the well2seis attribute to honor data from the seismic and engineering domains, while remaining consistent with the fault interpretation. Compared to traditional history matching, that attempts to match individual seismic time-lapse amplitudes and production data, our approach used an attribute that condensed available data to effectively enhance the signal. In addition, the approach was observed to improve the history-matching efficiency as well as model predictability. The proposed methodology was applied to a North Sea-field, the production of which was controlled by fault compartmentalization. It successfully detected the communication pathways and sealing property of key faults that are known to be major factors in influencing reservoir development. After history matching, the desired loops were closed by efficiently updating the reservoir simulation model, and this was indicated by a 90% reduction in the misfit errors and 89% lowering of the corresponding uncertainty bounds.
机译:我们发现,通过将许多重复的4D地震监测器的地震振幅与井的现场生产和注入历史直接相关联,可以增强动态储层的解释。通过定义4D地震信号与井中累积流体体积变化之间的线性关系,可以实现这种“井2塞”互相关。我们还发现,well2seis相关属性的分布可以揭示关键的储层连通性特征,例如断层的封闭,流体通道以及相邻隔层之间的连通。因此,它可以增强动态储层描述。基于这种增强的解释,我们开发了一种工作流程来封闭4D地震和油藏工程数据之间的循环。首先,通过从多个调查中提取的定量信息,通过放置和放置已知的障碍物或导管来直接更新储层模型。在此过程之后,使用well2seis属性应用地震辅助的历史匹配,以保留地震和工程领域的数据,同时保持与断层解释的一致性。与尝试匹配各个地震时移幅度和生产数据的传统历史匹配相比,我们的方法使用了一种属性,该属性会压缩可用数据以有效增强信号。另外,观察到该方法可改善历史匹配效率以及模型可预测性。所提出的方法应用于北海油田,其生产由断层划分控制。它成功地检测了关键断层的连通路径和密封性,这些关键断层是影响储层开发的主要因素。历史匹配后,通过有效地更新油藏模拟模型来关闭所需的回路,这可以通过降低拟合误差90%和降低相应不确定性边界89%来表明。

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