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A Workflow for Fully Consistent Water Saturation Initialization without Capillary Pressure Scaling

机译:用于完全一致的水饱和度初始化的工作流程,没有毛细管压力缩放

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Discrepancies in terms of hydrocarbon initially in place volumes (HIIP) between static and dynamic models might take place because of nonlinear dependency of the saturation height function (SHF) versus porosity and averaging of height above free water level. Upscaling tends to eliminate the high and low porosity values in favor of the average porosity, which might lead to substantial changes in the resulting water saturation. Furthermore, pressure and compositional variation with depth in the dynamic model might lead to substantial contribution to the discrepancies, independent of upscaling. We present a procedure to address the above issues and provide full consistency between static and dynamic models in terms of HIIP, without the use of capillary pressure (Pc) scaling by the reservoir simulator. A “preprocessing” workflow is used to slightly reassign the Pc curve of each grid block so that a very close match is obtained between the two models in terms of HIIP. Results show that HIIP obtained from the dynamic model through equilibration using the proposed procedure are within 1% of those obtained using the static model without having to use Pc scaling in the reservoir simulator which warranties realistic and physically valid Pc curves in the reservoir dynamic model initialization process.
机译:在最初的静态和动态模型之间发生卷(http协议)油气方面的差异可能会接受,因为饱和高度功能(SHF)与孔隙度和高度以上免费水位平均的非线性关系的地方。倍增趋于消除赞成平均孔隙度,这可能会导致产生的水饱和实质性变化的高和低孔隙度值。此外,压力和成分变化与动态模型的深度可能导致的差异重大贡献,倍增的独立。我们提出了一个程序,以解决上述问题,并提供在http协议方面静态和动态模型间完全一致,而不会被储层模拟器使用的毛细管压力(PC)缩放。 A“预处理”工作流被用于略微重新分配,使得在http协议方面这两个模型之间获得非常接近的匹配每个网格块的PC曲线。结果表明,http协议使用所提出的方法,由通过平衡的动态模型获得是使用静态模型获得的那些的1%之内,而无需使用个人计算机的缩放在储层模拟器,其保证在储存动态模型初始化现实的和物理上有效PC曲线过程。

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