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EOS Modelling for Two Oils with High Concentration of Organic Sulphur - Case Study

机译:eos造型两种具有高浓度有机硫磺的油 - 案例研究

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A reliable fluid characterization achieved through the use of an Equation of State (EOS) is vital to reproduce the phase behaviour of a reservoir fluid and consequently, to improve understanding of the reservoirs EOR potential. In this case, an EOS model was developed aimed at accurately reproducing the phase behaviour of two reservoir oils in the same field that contain, besides H2S, substantial amounts of organic sulphur components. The tuning of the EOS for both oils was more difficult to achieve than in cases without such level of sulphur components. The tuning of the Peng-Robinson EOS was achieved with 9 pseudo-components for both oils, following the selection of the lumping scheme considered adequate for reservoir simulation studies. Organic sulphur components are concentrated in the higher range of molecular weights and, consequently, were incorporated into the heavy fraction. The tuned EOS was then used on a 1 D reservoir simulation compositional model to match the available slim tube experiments, to verify the validity of the EOS tuning. Using the compositional simulation of slim tube displacements, minimum miscibility pressure (MMP) was estimated for both oils and different injection gases. Although a 9 component scheme is adequate for reservoir performance purposes, engineering of surface facilities requires more detail. Therefore, a delumping methodology was developed to allow engineers to estimate detailed fluid composition from the lumped components obtained from reservoir simulation studies. One of the objectives of this study is to obtain a table of variation of the detailed components distributions that can be used for delumping purposes at different stages of the gas injection project.
机译:通过使用状态方程(EOS)实现的可靠性流体表征对于再现储层流体的相位行为,因此可以改善对储层EOR潜力的理解。在这种情况下,开发了EOS模型,其旨在精确地再现与H2S,大量有机硫组分的相同领域中的两个储存油的相行为。在没有这种水平的硫组分的情况下,对两种油的调整更难以实现。在选择储层模拟研究的绝地形方案的选择之后,用9个伪组分进行了彭罗宾逊EOS的调整。有机硫组分在较高的分子量范围内浓缩,因此掺入重级分中。然后将调谐的EOS用于1 d储液模拟组成模型以匹配可用的修剪管实验,以验证EOS调谐的有效性。使用纤薄管位移的组成模拟,估计油和不同的注射气体的最小混溶性压力(MMP)。尽管9个组分方案足以进行储层性能目的,但表面设施的工程需要更多细节。因此,开发了一种德语方法,以允许工程师从储层模拟研究中获得的集体部件估计详细的流体组合物。本研究的目的之一是获得可用于在气体喷射项目的不同阶段剥离目的的详细部件分布的变化表。

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