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Analysis of Heavy Oil Recovery by Thermal EOR in a Meander Belt: From Geological to Reservoir Modeling

机译:曲折带热EOR进行重油采收的分析:从地质到储层建模

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The objectives of this work is to assess the impact of reservoir heterogeneities on heavy oil recovery of a reservoir analogue of meander belt through the Steam Assisted Gravity Drainage (SAGD) process by using numerical models. These models are obtained with different scales ofupscaling of the geological model. Meander belts consist of point bar deposits, characterized by a 3D complex internal architecture, with different scales of heterogeneities, which distribution is associated with the depositional processes. Based on a 3D outcrop description of a meander belt analogue to the Canadian heavy-oil fields, the approach includes three steps: 1) the construction of a reference static reservoir model based on a very fine description of the outcrops in terms of architecture and geological heterogeneities, 2) upscaling of the grid at different scales using different upscaling factors in order to evaluate their impact on the heterogeneity distribution in the reservoir, 3) reservoir SAGD simulations using horizontal well doublet (steam injector and producer) across the meander belt, so as to assess the impact of upscaling of heterogeneities on heavy oil production. The impact of heterogeneities on simulation results are evaluated for several upscaling stages. Results show that heterogeneity distribution has an impact on fluid flow at different stages of production. On the fine gridded model, small scale heterogeneities impact the steam chamber development and fluid flow in the wellbore vicinity at the beginning of the steam injection, whereas large scale heterogeneities strongly influence oil recovery during the whole recovery process and lower the efficiency of the reservoir drainage. On coarser grids, the effect of small-scale heterogeneities can be diminished, depending on the upscaling stage. The geomechanical effect is not taken into account in this work, the objective being to assess the impact of heterogeneities on oil recovery. . The performance of SAGD is clearly linked to the steam chamber development, which depends on the degree of heterogeneities present in the reservoir. The simulation workflow and the sensitivity study on the upscaling method contribute to a better restoration of the heterogeneity distribution in the reservoir. The negative effect of these heterogeneities during the oil recovery must thus be quantified in order to monitor the thermal production at crucial periods of the production process.
机译:这项工作的目的是通过使用数值模型,通过蒸汽辅助重力排水(SAGD)过程评估储层非均质性对曲折带储层类似物重油采收的影响。这些模型是通过不同比例的地质模型获得的。曲折带由点状点沉积物组成,其特征是3D复杂的内部结构,具有不同程度的异质性,其分布与沉积过程有关。基于加拿大稠油油田弯道带类似物的3D露头描述,该方法包括三个步骤:1)基于对露头的构造和地质方面的非常精细的描述,构建参考静态油藏模型。非均质性; 2)使用不同的放大因子在不同规模的网格上进行放大,以评估其对储层非均质性分布的影响; 3)使用曲折带上的水平井双合(蒸汽注入器和生产器)进行储层SAGD模拟,因此以评估异质性扩大对重油生产的影响。评估了几个升级阶段的异质性对仿真结果的影响。结果表明,异质性分布在生产的不同阶段对流体流动有影响。在精细网格模型中,小规模的非均质性在注汽开始时会影响蒸汽室的发展和井筒附近的流体流动,而大型的非均质性会在整个采油过程中强烈影响油的采收率并降低储层排油效率。在较粗的网格上,取决于放大阶段,可以减小小规模异质性的影响。在这项工作中没有考虑地质力学效应,目的是评估非均质性对石油采收率的影响。 。 SAGD的性能显然与蒸汽室的发展有关,蒸汽室的发展取决于储层中存在的非均质程度。模拟工作流程和对放大方法的敏感性研究有助于更好地恢复储层非均质性分布。因此,必须量化这些非均质性在采油过程中的负面影响,以便在生产过程的关键时期监控热量生产。

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