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Effect of small-scale heterogeneity on biopolymer performance in carbonates

机译:小规模异质性对碳酸酯生物聚合物性能的影响

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Polymer flooding is a well-established chemical method for enhancing oil recovery in sandstones; however, it has a limited application in carbonates. This is due to the harsh reservoir conditions in carbonates including high temperature, high salinity, and high heterogeneity with low permeability. This paper numerically investigates the effect of Schizophyllan biopolymer on oil recovery from carbonates. The effect of biopolymer on oil recovery was predicted by running several 1D simulations. Biopolymer flow behavior was modeled based on experimental data. The results showed that the effect of the investigated biopolymer on oil recovery was not much pronounced compared to conventional waterflooding. This is due to small-scale heterogeneity, which increased effective shear rate and hence, decreased in-situ polymer viscosity. Formation permeability, polymer viscosity, and oil saturation maps were consistent in justifying this observation. The findings of this study were supported by fractional flow and mobility ratio analyses. This work highlights the importance of small-scale heterogeneity of the core in modeling polymer flooding, particularly the shear effect on polymer viscosity.
机译:聚合物洪水是一种熟悉的化学方法,可提高砂岩中的采油;然而,它在碳酸盐中具有有限的应用。这是由于碳酸盐中苛刻的储层条件,包括高温,高盐度和具有低渗透性的高异质性。本文数值研究了斯齐齐奇兰生物聚合物对碳酸盐储存油回收的影响。通过运行几次1D模拟预测了生物聚合物对油回收的影响。基于实验数据建模的生物聚合物流动行为。结果表明,与常规的水上塑化相比,研究的生物聚合物对油回收的影响并没有太大明显。这是由于小规模的异质性,这增加了有效的剪切速率,因此降低了原位聚合物粘度。形成渗透性,聚合物粘度和油饱和图在证明该观察中是一致的。通过分数流动和迁移率分析支持该研究的结果。这项工作突出了核心小规模异质性在建模聚合物洪水中的重要性,特别是对聚合物粘度的剪切效应。

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