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Fine reservoir structure modeling based upon 3D visualized stratigraphic correlation between horizontal wells: methodology and its application

机译:基于水平井3D可视化地层相关性的细水库结构建模:方法论及其应用

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As the platform-based horizontal well production mode has been widely applied in petroleum industry, building a reliable fine reservoir structure model by using horizontal well stratigraphic correlation has become very important. Horizontal wells usually extend between the upper and bottom boundaries of the target formation, with limited penetration points. Using these limited penetration points to conduct well deviation correction means the formation depth information obtained is not accurate, which makes it hard to build a fine structure model. In order to solve this problem, a method of fine reservoir structure modeling, based on 3D visualized stratigraphic correlation among horizontal wells, is proposed. This method can increase the accuracy when estimating the depth of the penetration points, and can also effectively predict the top and bottom interfaces in the horizontal penetrating section. Moreover, this method will greatly increase not only the number of points of depth data available, but also the accuracy of these data, which achieves the goal of building a reliable fine reservoir structure model by using the stratigraphic correlation among horizontal wells. Using this method, four 3D fine structure layer models have been successfully built of a specimen shale gas field with platform-based horizontal well production mode. The shale gas field is located to the east of Sichuan Basin, China; the successful application of the method has proven its feasibility and reliability.
机译:随着基于平台的水平井生产模式已广泛应用于石油工业,通过使用水平井地层相关性建立可靠的细水库结构模型已经变得非常重要。水平井通常在目标形成的上界和底部边界之间延伸,渗透点有限。使用这些有限的穿透点来进行良好的偏差校正,意指获得的形成深度信息不准确,这使得难以构建精细结构模型。为了解决这个问题,提出了一种基于水平井之间的3D可视化地层相关性的细储层结构建模方法。当估计穿透点的深度时,该方法可以提高精度,并且还可以有效地预测水平穿透部分中的顶部和底部界面。此外,该方法不仅可以增加可用的深度数据的点数,而且可以通过使用水平孔之间的地层相关性来实现构建可靠的细储层结构模型的目标。使用这种方法,已经成功地构建了四种3D精细结构层模型,采用基于平台的水平井生产模式成功构建了标本页面气体场。页岩气田位于中国四川盆地东部;该方法的成功应用已证明其可行性和可靠性。

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