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Initial Ensemble Design Scheme for Effective Characterization of Three-Dimensional Channel Gas Reservoirs With an Aquifer

机译:带有含水层的三维通道气藏有效表征的初始整体设计方案

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Reservoir characterization is a process of making models, which reliably predict reservoir behaviors. Ensemble Kalman filter (EnKF) is one of the fine methods for reservoir characterization with many advantages. However, it is hard to get trustworthy results in discrete grid system ensuring preservation of channel properties. There have been many schemes such as discrete cosine transform (DCT) and preservation of facies ratio (PFR) for improvement of channel reservoirs characterization. These schemes are mostly applied to 2D cases, but cannot present satisfactory results in 3D channel gas reservoirs with an aquifer because of complex production behaviors and high uncertainty of them. For a complicated 3D channel reservoir, we need reliable initial ensemble members to reduce uncertainty and stably characterize reservoir models due to the assumption of EnKF, which regards the mean of ensemble as true. In this study, initial ensemble design scheme is suggested for EnKF. The reference 3D channel gas reservoir system has 200 × 200 × 5 grid system (250 × 250 × 100ft for x, y, and z, respectively), 15% porosity, and two fades of 100 md sand and 1 md shale. As the first step, it samples initial ensemble members, which show similar water production behaviors with the reference. Then, grid points are randomly selected for high and low 5% from the mean of sampled members. As a final step, initial ensemble members are remade using the selected data, which are assumed as additional known data. This proposed method reliably characterizes 3D channel reservoirs with an aquifer.
机译:储层表征是建立模型的过程,可以可靠地预测储层行为。集成卡尔曼滤波器(EnKF)是用于储层表征的优良方法之一,具有许多优点。但是,很难在离散网格系统中获得可信赖的结果,以确保保留通道属性。已经有许多方案,例如离散余弦变换(DCT)和保留相比(PFR)来改善通道储层的表征。这些方案主要适用于2D情况,但由于生产行为复杂且不确定性高,因此在带含水层的3D通道气藏中无法获得令人满意的结果。对于复杂的3D通道储层,由于EnKF的假设,我们需要可靠的初始集合成员以减少不确定性并稳定地刻画储层模型,该过程将集合均值视为真实。在这项研究中,建议对EnKF进行初始整体设计。参考3D通道气藏系统具有200×200×5网格系统(x,y和z分别为250×250×100ft),15%的孔隙率和100 md砂和1 md页岩的两次衰减。第一步,它对初始集合成员进行采样,这些集合与参考具有相似的产水行为。然后,从抽样成员的平均值中随机选择网格点,以高低为5%。最后一步,使用所选数据重新制作初始集合成员,这些数据被假定为其他已知数据。该提出的方法用含水层可靠地表征了3D通道储层。

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