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首页> 外文期刊>SPE Reservoir Evaluation & Engineering >Insights Into Upscaling Using 3D Streamlines
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Insights Into Upscaling Using 3D Streamlines

机译:深入了解使用3D流线进行升级

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Large, multimillion-cell geological models are frequently constructed in an effort to "capture" the vertical heterogeneity measured by well logs and the areal heterogeneity inferred by the depositional environments. These criteria often result in fine-scale models at a resolution of 0.1 to 0.3 m vertically and 30 to 100 m areally, resulting in reservoir models on the order of 107 grid cells. Recourse is made to upscaling to obtain coarsened but computationally efficient flow-simulation models. The coarsened models commonly result in no more than 1 to 5% of the original grid size, underscoring the need for judicious upscaling. Of greater importance is demonstrating, for the chosen grid dimensions, that the upscaled representation is both reasonable and optimal in the sense that a significantly better template would be difficult to obtain. We consider two nonuniformly coarsened models to demonstrate the issues involved and show that the use of 3D streamline methods offers insightful alternatives to decoupled analysis for both the scaleup template design and the pre- and post-diagnostics. We confine ourselves to property-upscaling methods that use local grid information as opposed to estimating upscaled properties based on some global measure. For this class of problems, we demonstrate that the diagnostic phases are necessarily separate from the upgridding and upscaling processes.
机译:为了“捕获”测井仪测得的垂直非均质性和沉积环境推断的面积非均质性,通常会构建数百万个大型细胞的地质模型。这些标准通常会导致在垂直分辨率为0.1到0.3 m且在平面上分辨率为30到100 m的精细模型中,从而产生大约107个网格单元的储层模型。求助于放大以获得粗化但计算有效的流量模拟模型。粗化模型通常导致不超过原始网格大小的1%到5%,从而强调了明智地扩大规模的必要性。对于所选的网格尺寸,更重要的是证明从很难获得明显更好的模板的意义上说,放大的表示既合理又最优。我们考虑了两个非均匀地粗化模型来演示所涉及的问题,并表明3D流线化方法的使用为规模化模板设计以及预诊断和后诊断提供了有力的解耦分析替代方案。我们仅限于使用局部网格信息的属性提升方法,而不是根据某些全局度量来估计提升的属性。对于此类问题,我们证明了诊断阶段必须与升级和升级过程分开。

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