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Application of augmented free-water Rachford-Rice algorithm to water/hydrocarbons mixtures considering the dissolution of methane in the aqueous phase

机译:应用增强自由水rachford-米算法在水/烃类混合物中的应用,考虑水相溶解甲烷溶解

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Multiphase equilibria for water/hydrocarbon mixtures are frequently encountered in hydrocarbon reservoirs. The presence of water in these mixtures can lead to a higher number of equilibrating phases, increasing the complexity of the multiphase split calculations. It is a common approach to treating water as the bulk free phase and performing only two-phase split calculations on the hydrocarbon-rich liquid phase and vapor phase. The free-water flash algorithm uses a different approach; it considers the effect of water presence on the overall phase equilibrium of water/hydrocarbon mixtures, albeit also assuming the aqueous phase to be pure water. The free-water algorithm might be less accurate in some cases where the solubility of methane in the aqueous phase cannot be neglected. In this study, a modified version of the free-water flash method previously developed by the authors, i.e., the so-called augmented free-water flash, is extended to perform three-phase vapor-oleic-aqueous (VOA) flash calculations for water/hydrocarbons mixtures on the basis of the assumption that only the existence of water and methane is considered in the aqueous phase. The flash package incorporating this augmented free-water method can handle the single-phase, two-phase, or three-phase equilibrium calculations. Example calculations made on two water/hydrocarbons mixtures demonstrate that the phase compositions and phase mole fractions calculated by augmented free-water method provide better predictions compared with the traditional free-water method since the solubility of methane is considered in the aqueous phase. Our new algorithm is also shown to be computationally more efficient than the conventional full three-phase flash algorithm. Therefore, the augmented free-water approach strikes a good balance between computational efficiency and prediction accuracy.
机译:碳氢化合物储层经常遇到水/烃混合物的多相均衡。这些混合物中的水的存在可以导致较高数量的平衡相,增加了多相分裂计算的复杂性。它是将水作为大散相处理水的常用方法,并且仅对富含烃的液相和气相进行两相分裂计算。自由水闪存算法采用不同的方法;它考虑了水存在对水/烃混合物的总相平衡的影响,尽管也假设水相是纯水。在一些情况下,自由水算法可能不太准确,其中甲烷在水相中的溶解度不能被忽略。在该研究中,延伸了先前由作者开发的自由水闪光法的修改版本,以执行三相蒸汽 - 油 - 水(VOA)闪光计算水/烃类混合物的假设仅在水相中考虑了水和甲烷的存在。包含这种增强的自由水方法的闪存包可以处理单相,两相或三相平衡计算。在两个水/烃混合物上进行的实施例表明,通过增强的自由水方法计算的相组合物和相摩尔级分提供更好的预测,与传统的自由水方法相比,由于甲烷的溶解度在水相中考虑。我们的新算法还显示用于传统的全三相闪光算法的计算方式更有效。因此,增强的自由水方法在计算效率和预测准确性之间击中了良好的平衡。

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