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An inversion of reservoir properties based on a concurrent modeling approach: the case of a West African reservoir

机译:基于并发建模方法的储层物性反演:以西非水库为例

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Deterministic rock physics models were applied in a shale-sand environment located in the West African lower Congo basin, with the aim of estimating total porosity and clay content from P-wave acoustic impedance. Assuming that the only minerals within the target reservoir are quartz and clay, Han et al. model was used to determine the clay content which is referred herein as model-based C, while Krief et al. model was applied to solve the P-wave impedance for total porosity and clay content. The latter operation is a challenging task because of the nature of the actual rock physics equation that relates the known acoustic impedance to three unknown reservoir properties. This inherent difficulty is circumvented by making use of an additional linear equation, which is derived from the petrophysical link between porosity and clay content. To achieve this goal, firstly, a rock physics model was established, and then the reservoir was delineated through a combination of P-wave impedance and Poisson’s ratio. In the reservoir, total porosity and clay content were inverted based on P-wave impedance by applying the rock physics model of Krief et al. that related P-wave impedance to total porosity and clay content, alongside the established petrophysical link between the two reservoir properties. The result was found to be consistent on the well log scale. Uniquely, a good match was obtained when the methodology was repeated on the real seismic data.
机译:确定性岩石物理模型被应用于位于西非刚果盆地下游的页岩砂环境中,目的是根据P波声阻抗估算总孔隙度和粘土含量。假设目标储层中仅有的矿物是石英和粘土,Han等。模型被用来确定粘土含量,在此被称为基于模型的碳,而Krief等人。应用该模型求解总孔隙率和粘土含量的P波阻抗。由于实际岩石物理方程式的本质,后一种操作是一项艰巨的任务,该方程式将已知的声阻抗与三个未知的储层特性相关联。通过使用一个附加的线性方程式可以避免这种固有的困难,该方程式是从孔隙度和粘土含量之间的岩石物理联系中得出的。为了实现这一目标,首先建立了岩石物理模型,然后通过结合P波阻抗和泊松比来描绘储层。应用Krief等人的岩石物理模型,在储层中根据P波阻抗反演了总孔隙度和粘土含量。这与P波阻抗与总孔隙度和粘土含量相关,以及两个储层属性之间已建立的岩石物理联系。发现结果在测井范围上是一致的。独特的是,在实际地震数据上重复使用该方法后,可以获得很好的匹配。

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