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Modeling of the Interaction Between Asphaltene and Water for Multiphase Reservoir Fluids by Use of Cubic-Plus-Association Equation of State

机译:用立方 - 加元关联方程模拟多相储层流体沥青质与水的相互作用

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Asphaltene is a group of complex compounds commonly present in reservoir fluids, especially in viscous oils. It is conceivable that asphaltene strongly interacts with water through hydrogen bonding, affecting phase behavior of water/oil mixtures with/without forming an asphaltene-rich phase. Modeling of these polar components in reservoir fluids is challenging with cubic equations of state (EOS) due to the size- symmetricity and self- and cross-associations of asphaltene and water. In this research, the cubic-plus-association (CPA) EOS is applied to represent complex multiphase behavior associated with water and asphaltene. Asphaltene-containing heavy oils are characterized by the CPA EOS with four pseudo components (asphaltene and the other three pseudo components) based on their experimental data. Asphaltene is the only associating component in the oil models. Then, multiphase behavior data for mixtures of water with each of these oils are represented by the CPA EOS. Calculated phase behavior by the CPA EOS models is compared with experimental data and also with the Peng-Robinson EOS for several cases. This paper also presents a new correlation for binary interaction parameters (BIPs) for water with n-alkanes for the CPA EOS on the basis of experimental data for three-phase coexistence for water/n-alkane binaries (Brunner 1990). In case studies, the CPA EOS is shown to be able to represent multiphase behavior for water/oil mixtures with up to four equilibrium phases: asphaltene-rich, solvent-rich, aqueous, and vapor phases. In particular, the CPA EOS is successfully applied to bitumen/water mixtures, involving asphaltene-water emulsion, water solubility in bitumen, and their continuous transition with varying temperature. Furthermore, results show that the CPA EOS can reasonably represent the multiphase data measured for a n-butane/bitumen/water mixture that were not accurately correlated with the PR EOS in the literature. Modeling an asphaltene-rich phase in several cases is possible only with consideration of the water-asphaltene interaction, which is worth the additional complexities of the CPA EOS in comparison with the PR EOS.
机译:沥青质是一组通常存在于储集层流体,尤其是在粘稠油复杂化合物。可以想象的是,沥青质与通过氢键水强烈地相互作用,影响与/水/油的混合物的相行为而不形成富含沥青质的相。在储层流体这些极性组分的建模​​与三次方程状态(EOS)的由于尺寸 - 对称性和沥青质和水的自我和交叉关联挑战。在这项研究中,立方加协会(CPA)EOS被施加到表示与水和沥青质相关的复杂的多相行为。沥青质的含重油通过与基于他们的实验数据的四个伪组分(沥青质和其他三个伪分量)的CPA EOS表征。沥青质在石油车型的唯一关联组件。然后,与每个这些油中的水的混合物的多相行为数据由CPA EOS表示。注册会计师EOS模型计算相行为是与实验数据,并且还与鹏罗宾逊EOS的几种情况进行比较。本文还提出了一种新的用于二元相互作用参数(的BIP),用于水的正构烷烃的实验数据的基础上用于三相共存相关的CPA EOS为水/正烷烃的二进制文件(布伦纳1990)。在案例研究,该CPA EOS被示出为能够代表为水/油混合物与多达四个平衡相的多相行为:沥青质丰富,溶剂丰富,含水的,和汽相。特别地,该CPA EOS成功应用于沥青/水混合物,沥青质涉及 - 水乳液,在沥青的水溶解度,以及它们与不同温度的连续过渡。此外,结果表明,该CPA EOS可以合理地代表对于未准确地在文献中的PR EOS相关的正丁烷/沥青/水混合物测得的多相数据。在若干情况下的建模富含沥青质的阶段可能只考虑水沥青质相互作用,这是值得的CPA EOS的与PR EOS比较额外的复杂性的。

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