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首页> 外文期刊>Journal of Petroleum Science & Engineering >Characterization of two- and three-phase relative permeability of water-wet porous media through X-Ray saturation measurements
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Characterization of two- and three-phase relative permeability of water-wet porous media through X-Ray saturation measurements

机译:通过X射线饱和度测量表征水湿多孔介质的两相和三相相对渗透率

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We present experimental investigations of multi-phase (two-phase (oil/water, oil/gas) and three-phase (oil/water/gas)) relative permeabilities performed on laboratory scale rock cores. Two- and three-phase relative permeabilities data were obtained on two core samples (a Sand-pack and a Berea sandstone) by way of a Steady-State (SS) technique. Spatial and temporal dynamics of in-situ saturations along core samples were directly measured through an X-Ray absorption technology. The latter rendered detailed distributions of (section-averaged) fluid flow phases through the medium, which can then be employed for the characterization of relative permeabilities. The technique also enabled us to clearly identify the occurrence of end-effects during the experiments and to quantify the reliability of corrective strategies. For the oil/water settings we considered low and high viscosity oil, our findings supporting the observation that relative permeability to oil and water was sensitive to oil viscosity. Three-phase experiments were performed by following an IDI (Imbibition-Drainage-Imbibition) saturation path. The complete experimental data-base is here illustrated and juxtaposed to results obtained by the implementation of simple and commonly employed three-phase relative permeability models. In the three-phase setting, water and gas relative permeabilities display an approximately linear dependence on the logarithm of their own saturation. Consistent with the observation that oil behaves as an intermediate phase in our system, three-phase oil relative permeabilities lie in between those of their two-phase counterparts. Our data-set stands as a reliable reference for further model development and testing, as only a limited quantity of three-phase data are currently available. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们目前在实验室规模的岩心上进行的多相(两相(油/水,油/气)和三相(油/水/气))相对渗透率的实验研究。通过稳态(SS)技术获得了两个岩心样品(沙堆和Berea砂岩)的两相和三相相对渗透率数据。沿岩心样品的原位饱和度的时空动态是通过X射线吸收技术直接测量的。后者给出了通过介质的(截面平均)流体流动相的详细分布,然后可以将其用于表征相对渗透率。该技术还使我们能够清楚地识别实验过程中最终结果的发生,并量化纠正策略的可靠性。对于油/水设置,我们考虑了低粘度和高粘度油,我们的发现支持了以下观点:油和水的相对渗透率对油粘度敏感。通过遵循IDI(Imbibition-Drainage-Imbibition)饱和路径进行三相实验。此处说明了完整的实验数据库,并与通过实施简单且常用的三相相对渗透率模型获得的结果并列。在三相设置中,水和天然气的相对渗透率与其饱和度的对数近似呈线性关系。与观察到油在我们的系统中充当中间相的观察一致,三相油的相对渗透率介于两相油的相对渗透率之间。我们的数据集可作为进一步模型开发和测试的可靠参考,因为目前只有有限数量的三相数据可用。 (C)2016 Elsevier B.V.保留所有权利。

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