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Horizontal simulation grids as alternative to structure-based grids for thin oil-zone problems: a comparison study on a Troll segment

机译:水平模拟网格可替代薄结构油层问题的基于结构的网格:在Troll段上的比较研究

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The layering in reservoir simulation grids is often based on the geology, e.g., structure tops. In this paper we investigate the alternative of using horizontal layers, where the link to the geology model is by the representation of the petrophysics alone. The obvious drawback is the failure to honor the structure in the grid geometry. On the other hand, a horizontal grid will honor the initial fluid contacts perfectly, and horizontal wells can also be accurately represented. Both these issues are vital in thin oil-zone problems, where horizontal grids may hence be a viable alternative. To investigate this question, a number of equivalent simulation models were built for a segment of the Troll Field, both geology-based and horizontal, and various combinations of these. In the paper, it is demonstrated that the horizontal grid was able to capture the essentials of fluid flow with the same degree of accuracy as the geology-based grid, and near-well flow was considerably more accurate. For grids of comparable resolution, more reliable results were obtained by a horizontal grid than a geo-grid. A geo-grid with local grid refinement and a horizontal grid produced almost identical results, but the ratio of computing times was almost 20 in favor of the horizontal grid. In the one-phase regions of the reservoir, relatively coarse cells can be used without significant loss of accuracy.
机译:储层模拟网格中的分层通常基于地质,例如结构顶部。在本文中,我们研究了使用水平层的替代方法,其中仅通过岩石物理的表示就可以链接到地质模型。明显的缺点是无法遵守网格几何中的结构。另一方面,水平网格将完美地满足初始流体接触,并且水平井也可以准确表示。这两个问题对于薄油区问题都是至关重要的,因此水平网格可能是一个可行的选择。为了研究这个问题,针对巨魔场的一部分,建立了许多等效的模拟模型,包括基于地质的和水平的,以及这些模型的各种组合。在本文中,证明了水平网格能够以与基于地质的网格相同的精确度捕获流体流的本质,并且近井流的精度要高得多。对于分辨率相当的网格,水平网格比地理网格可获得更可靠的结果。具有局部网格细化的地理网格和水平网格产生的结果几乎相同,但是使用水平网格的计算时间比率几乎为20。在储层的单相区域中,可以使用相对较粗的单元,而不会显着降低精度。

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