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Rapid and Low-Cost Methodology To Obtain an Updated Compositional Model of Produced Fluids Using Separator Discharge Data Analysis

机译:快速和低成本的方法,以使用分离器放电数据分析获得产生的流体的更新的组合模型

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Fluid characterization data used to build representative reservoir fluid models for reservoir and production engineering is generally scarce and very costly, due to the expense of fluid sampling and analysis and, operational related problems of well intervention. The problem turns more dramatic when the field to be studied has been producing for some time and its bottom-hole pressure has reached the bubble point. In those cases, initial reservoir fluid data is more difficult to be used as some portion of the hydrocarbon's heaviest or lightest components, whether oil or gas is produced, may have been left in the reservoir and initial PVT data is no longer valid or very difficult to match to current fluid behavior. One of the most common practices of obtaining fluid data is by taking well bottom-hole samples, or by obtaining surface oil and gas mixture samples and analyzing them in the lab using recombined methods. Due to the costs involved, including loss of time and production, operating companies do not obtain fluid data with the required frequency. Accordingly, engineers are left with the only option of using non-updated or insufficient data that will affect the outcome of their simulation studies. This work describes a rapid and low cost methodology to obtain an updated compositional model for produced fluids using gas chromatography, oil characterization and GOR from analysis of the separator fluid discharge. The required samples are easily collected with low cost to the operating company. Then, a case history is shown where compositional fluid models obtained with the proposed method are used in well, surface network and process facility simulation models, withexcellent results. A comparison of field data against the simulation model results is also shown.
机译:由于流体采样和分析,并且井干预的运行相关问题,用于构建水库和生产工程代表储层流体模型的流体表征数据通常稀缺,并且非常昂贵,并且井干预的操作相关问题。当要研究的现场产生一段时间时,问题变得更加戏剧性,并且其底部孔压力已达到气泡点。在这些情况下,初始储层流体数据更难以用作烃的最重或最轻部件的一部分,是否生产油或气体,可能已留在储存器中,初始PVT数据不再有效或非常困难匹配当前的流体行为。获得流体数据的最常见实践之一是取出底部孔样品,或通过在使用重组方法中获得表面油和气体混合物样品并在实验室中分析它们。由于所涉及的成本,包括损失时间和生产,运营公司没有获得所需频率的流体数据。因此,工程师留下了使用不会影响其仿真研究结果的未更新或不足的数据的唯一选择。该工作描述了一种快速和低成本的方法,以获得使用气相色谱,油特征和GOR从分离器流体放电分析中获得产生的流体的更新组合模型。易于收集所需的样品,以低成本收集到运营公司。然后,示出了用所提出的方法获得的组成流体模型井,表面网络和过程设施仿真模型,结果具有大量的结果。还显示了对模拟模型结果的现场数据的比较。

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