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An estimation method for effective stress changes in a reservoir from 4D seismics data

机译:基于4D地震数据的储层有效应力变化估算方法

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Advances in seismics acquisition and processing and the widespread use of 4D seismics have made available reliable production-induced subsurface deformation data in the form of overburden time-shifts. Inversion of these data is now beginning to be used as an aid to the monitoring of a reservoir's effective stress. Past solutions to this inversion problem have relied upon analytic calculations for an unrealistically simplified subsurface, which can lead to uncertainties. To enhance the accuracy of this approach, a method based on transfer functions is proposed in which the function itself is calibrated using numerically generated overburden strain deformation calculated for a small select group of reference sources. This technique proves to be a good compromise between the faster but more accurate history match of the overburden strain using a geomechanical simulator and the slower, less accurate analytic method. Synthetic tests using a coupled geomechanical and fluid flow simulator for the South Arne field confirm the efficacy of the method. Application to measured time-shifts from observed 4D seismics indicates compartmentalization in the Tor reservoir, more heterogeneity than is currently considered in the simulation model and moderate connectivity with the overlying Ekofisk formation.
机译:地震学采集和处理技术的进步以及4D地震学的广泛应用,以覆盖时移的形式提供了可靠的生产引起的地下变形数据。这些数据的反演现在开始被用来辅助监测储层的有效应力。过去针对该反演问题的解决方案依赖于对不切实际简化的地下分析计算,这可能导致不确定性。为了提高这种方法的准确性,提出了一种基于传递函数的方法,其中该函数本身是使用为一小组选定的参考源计算得出的数值生成的上覆应变变形进行校准的。事实证明,该技术是在使用地质力学模拟器对覆盖层应变进行更快但更准确的历史匹配与较慢,准确性不高的分析方法之间的良好折衷。使用耦合的地质力学和流体流动模拟器对South Arne油田进行的综合测试证实了该方法的有效性。将其应用于从观测到的4D地震中测得的时移表明,Tor储层中存在隔层,比当前在模拟模型中考虑的要多,并且与上覆的Ekofisk地层具有适度的连通性。

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