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Determining Characteristic Relative Permeability From Coreflooding Experiments: A Simplified Model Approach

机译:从岩心驱替实验确定特征相对渗透率:简化模型方法

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Relative permeability measurements from drainage coreflooding experiments are effective properties that vary with injection rate when capillary heterogeneity effects are present. It is therefore important to estimate the fine-scale characteristic relative permeability (krchar), which is independent of flow rate and can be used for accurate reservoir simulation and numerical modeling of coreflooding. Previous methods for krchar estimation are based on two-phase flow simulations with fine-scale heterogeneous permeability and capillary pressure. These are computationally complex and prone to error. This work presents a reduced method, based on a simplified model, requiring only solutions of steady state single-phase flow equations. The simplified model is used to study a number of synthetic 2-D permeability realizations and 3-D core models constructed based on experimental data from previous literature. The krchar estimation method is tested on these examples and shown to be generally accurate. Cases where estimation error is significant are characterized by low injection rates, large nonwetting phase fractional flow, strong capillary heterogeneity, and small capillary number (ratio between core average pressure drop and capillary pressure drop). The estimation error is believed to be related to errors in the full-model (two-phase flow) simulations; that is, we find that for low injection rates, our simulator presents significantly different results compared to a commercial simulator. This could explain the source of mismatch between full and simplified methods and calls for further investigation of inaccuracy in numerical simulations at low flow rates, which could have implications for coreflood modeling and low rate reservoir simulation.
机译:当存在毛细管异质性影响时,排水岩心驱替实验的相对渗透率测量是有效的属性,其随注入速率而变化。因此,重要的是要估算与流量无关的细尺度特征相对渗透率(krchar),可用于精确的油藏模拟和岩心驱替的数值模拟。先前的krchar估计方法基于具有精细非均质渗透率和毛细管压力的两相流模拟。这些计算复杂并且容易出错。这项工作提出了一种基于简化模型的简化方法,只需要稳态单相流方程的解即可。简化模型用于研究许多合成的2-D渗透率实现和基于先前文献的实验数据构建的3-D岩心模型。在这些示例上测试了krchar估计方法,并且显示出通常是准确的。估计误差显着的情况的特征在于低注入速率,较大的非润湿相分流,较强的毛细管异质性和较小的毛细管数(岩心平均压降与毛细管压降之比)。估计误差被认为与全模型(两相流)模拟中的误差有关。也就是说,我们发现,对于低注入率,与商用模拟器相比,我们的模拟器呈现出明显不同的结果。这可以解释完全方法和简化方法之间不匹配的根源,并要求进一步研究低流速数值模拟中的不准确性,这可能对岩心驱油模型和低速率油藏模拟有影响。

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