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Identifying influence areas with connectivity analysis - application to the local perturbation of heterogeneity distribution for history matching

机译:通过连通性分析识别影响区域-在异质分布的局部扰动中用于历史匹配的应用

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摘要

Numerical representations of a target reservoir can help to assess the potential of different development plans. To be as predictive as possible, these representations or models must reproduce the data (static, dynamic) collected on the field. However, constraining reservoir models to dynamic data - the history-matching process - can be very time consuming. Many uncertain parameters need to be taken into account, such as the spatial distribution of petrophysical properties. This distribution is mostly unknown and usually represented by millions of values populating the reservoir grid. Dedicated parameterization techniques make it possible to investigate many spatial distributions from a small number of parameters. The efficiency of the matching process can be improved from the perturbation of specific regions of the reservoir. Distinct approaches can be considered to define such regions. For instance, one can refer to streamlines. The leading idea is to identify areas that influence the production behavior where the data are poorly reproduced. Here, we propose alternative methods based on connectivity analysis to easily provide approximate influence areas for any fluid-flow simulation. The reservoir is viewed as a set of nodes connected by weighted links that characterize the distance between two nodes. The path between nodes (or grid blocks) with the lowest cumulative weight yields an approximate flow path used to define influence areas. The potential of the approach is demonstrated on the basis of 2D synthetic cases for the joint integration of production and 4D saturation data, considering several formulations for the weights attributed to the links.
机译:目标油藏的数值表示可以帮助评估不同开发计划的潜力。为了尽可能地具有预测性,这些表示或模型必须重现在现场收集的数据(静态,动态)。但是,将储层模型约束到动态数据(历史记录匹配过程)可能非常耗时。需要考虑许多不确定的参数,例如岩石物理特性的空间分布。这种分布通常是未知的,通常用填充储层网格的数百万个值表示。专用的参数化技术使从少量参数研究许多空间分布成为可能。可以通过扰动储层的特定区域来提高匹配过程的效率。可以考虑使用不同的方法来定义此类区域。例如,可以参考流线型。最主要的想法是找出影响生产行为的区域,在这些区域中数据很难被复制。在这里,我们提出了基于连通性分析的替代方法,以轻松为任何流体流动模拟提供近似的影响区域。储层被视为由加权链接连接的一组节点,这些链接表征了两个节点之间的距离。具有最低累积权重的节点(或网格块)之间的路径会产生用于定义影响区域的近似流动路径。该方法的潜力在生产和4D饱和度数据联合集成的2D综合案例的基础上得到了证明,同时考虑了归因于链接的权重的几种公式。

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