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Using simulation and production data to resolve ambiguity in interpreting 4D seismic inverted impedance in the Norne Field

机译:使用模拟和生产数据来解决骨骼场中的4D地震倒置阻抗的模拟

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摘要

The Norne Field started production in 1997 and up to 2006 the field experienced intense production activity, making the Norne benchmark case an ideal candidate to explore the challenges in interpreting complex time-lapse seismic data. Seismic amplitude changes and time-shifts are used as the first level approach to interpret the time-lapse differences and to update reservoir models. A common alternative is to invert the seismic data and obtain acoustic impedance variations caused by production activity, and to evaluate their possible interpretations. For this case study, we use a 4D inversion approach to invert the base (2001) and monitor (2006) seismic surveys in order to provide field-wide insights for the Norne benchmark case. We extensively interpret the observed 4D inversion anomalies and decouple, as much as possible, the effects of fluid and pressure variations, supported by production and reservoir engineering data. Moreover, we compare the inversion results with the simulation model from the Norne benchmark case to suggest areas of future modification to the simulation model. This research is intended as a resource to improve the quality of history matching or other 4D inversion methods applied to the Norne benchmark case, and to demonstrate a detailed time-lapse seismic interpretation within the reservoir segments of the Norne Field.
机译:Norne Field于1997年开始生产,高达2006年该领域经历了强烈的生产活动,使得纽诺德基准案件成为解释复杂的延期地震数据的挑战的理想候选人。地震幅度变化和时移用作解释时间间隔差异和更新储层模型的第一级方法。常见的替代方案是反转地震数据并获得由生产活动引起的声阻抗变化,并评估其可能的解释。在这种情况下,我们使用4D反转方法反转基地(2001)并监控(2006)地震调查,以便为Norne基准案件提供现场洞察力。我们广泛地解释了所观察到的4D反转异常并尽可能地脱钩,通过生产和储层工程数据支持的流体和压力变化的影响。此外,我们将反演结果与核心基准案例的模拟模型进行比较,以建议对模拟模型的未来修改领域。该研究旨在作为提高历史匹配质量或应用于Norne基准案件的其他4D反演方法的资源,并在核心领域的储层区段内展示了详细的延时地震解释。

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