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Time-Lapse Seismic Analysis of the North Sea Fulmar Field

机译:北海海域的时移地震分析

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Time-lapse seismic analysis has been applied to two 3-D seismic surveys acquired over the Central North Sea Fulmar Field - a pre-production survey shot in 1977, reprocessed in 1987, and a 1992 survey. The Upper Jurassic reservoirs in the field have been under production since 1982. Water is the main drive mechanism, supported by flank injection. Although the field is currently at over 80% water cut, there are infill opportunities. Petrophysical analyses for Fulmar indicate that water replacing oil will result in an increase in seismic impedance. In addition, a pressure decline of about 1000 psi during the time between the two seismic surveys will result in a further impedance increase. These impedance changes are observed between the two seismic surveys. In order to overcome inherent differences in the seismic data due to acquisition and processing differences, the data are equalized and then inverted to obtain impedance which is then averaged between the top of the reservoir and the position of the original oil-water contact. Differences in averaged impedance between the 1977 and 1992 surveys clearly show the effects of water influx and pressure decline. The changes observed in the seismic data are overall consistent with predictions obtained from a full-field, history-matched flow simulation. Differences in details may suggest areas of bypassed oil. However, data quality is not sufficient to serve as the sole basis for drilling decisions.
机译:延时地震分析已应用于在北海中央海域上进行的两次3-D地震勘测-于1977年拍摄的生产前勘测,于1987年重新处理,以及1992年的勘测。自1982年以来,该油田的上侏罗统水库一直在生产。水是主要驱动机制,并由侧面注入提供支持。尽管该油田目前的含水率超过80%,但仍有充填机会。富尔马的岩石物理分析表明,用水代替石油将导致地震阻抗的增加。另外,在两次地震勘测之间的时间期间约1000 psi的压力下降将导致进一步的阻抗增加。在两次地震勘测之间观察到了这些阻抗变化。为了克服由于采集和处理差异而引起的地震数据的固有差异,对数据进行均衡,然后取反以获得阻抗,然后将其平均化在储层顶部和原始油水接触位置之间。 1977年和1992年调查之间的平均阻抗差异清楚地表明了水涌入和压力下降的影响。地震数据中观察到的变化总体上与从全场,历史匹配的流模拟中获得的预测一致。细节上的差异可能表明存在旁路油的区域。但是,数据质量不足以作为钻井决策的唯一基础。

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