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Integration of Production History into Geostatistical Reservoir Description

机译:将生产历史整合到地统计油藏描述中

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Production history is an important reflection of reservoir properties. One of our major glals in reservoir description is to increase production. If we can integrate production data into the building of the reservoir model, we can build a more realistic model and have greater confidence in our predictions. In addition, when reservoir simulation is performed with such a reservoir mode, cycle time for history matching can be reduced. Production data can be applied in reservoir description in three aspects: as soft data in geostatistical gridding, as constraints in gridding, or in post-processing of the reservoir mode. The conventional approach of history matching is in the third aspect, which is indirect and time consuming. Out attempt is in the first two aspects. The key is in calculating an attribute from production data that can be calibrated to reservoir properties such as permeability. One such attribute is productivity index. The most difficult task is to normalize the attribute to compensate for differences in starting time, pressure, saturation, mechanical problems, and so on. After verification with synthetic data, the methodology is applied to producing fields with primary production data. The results are consistent with the geological description of the field and can be used in reservoir description. For fields with many wells and lots of data, when the history matching approach is more costly, this approach can be effectively used to map permeability trends and improve the reservoir description model, providing a better tool for optimization of hydrocarbon production.
机译:生产历史是储层物性的重要反映。在储层描述中,我们的主要目的之一是提高产量。如果我们可以将生产数据整合到油藏模型的构建中,那么我们可以构建更现实的模型,并对我们的预测更有信心。另外,当以这种储层模式执行储层模拟时,可以减少用于历史匹配的周期时间。生产数据可以在三个方面应用于储层描述:作为地统计网格化中的软数据,网格化中的约束或储层模式的后处理。历史匹配的常规方法是在第三方面,这是间接的且耗时的。前两个方面是尝试。关键在于根据可以根据储层特性(例如渗透率)进行校准的生产数据来计算属性。这样的属性之一就是生产率指数。最困难的任务是规范化属性,以补偿启动时间,压力,饱和度,机械问题等方面的差异。在使用合成数据进行验证之后,该方法将应用于具有主要生产数据的油田。结果与油田的地质描述一致,可用于储层描述。对于具有很多井和大量数据的油田,当历史匹配方法的成本更高时,该方法可以有效地用于绘制渗透率趋势图并改善储层描述模型,从而为优化油气产量提供更好的工具。

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