输入数据不足条件下凝析气混合气动力学方程的调整

О. V. Burachok, D. Pershyn, S. Matkivskyi, Ye. S. Bikman Ye. S. Bikman, О. Kondrat
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引用次数: 1

摘要

为了建立有效的连续运行的凝析气藏地质技术三维模型,本文描述了在使用“黑油”模型或全功能成分模型(借助状态方程(EOS))进行相行为模拟时出现的主要困难。3D过滤油藏建模的输入数据始于20世纪60年代,是最初的凝析气和热力学研究的结果。在现有的凝析气研究中,储层气的烃组分组成只给出了C5+馏分。考虑到初始热力学研究中使用微分冷凝实验的特殊性,以及商用PVT模拟器中标准实验列表中缺乏此类实验,似乎需要开发合理的方法和技术来正确整合PVT建模中现有的地质生产数据。本文描述了在输入数据不足的情况下,调整Peng-Robinson状态方程的方法。根据初始数据的可用性和质量,作者提出了两种不同的方法。第一种pvt建模方法是基于气体组分组成和稳定凝析油分数组成的数据,使状态方程的调整成为可能。在没有稳定凝析油馏分组成数据的情况下,作者建议采用第二种方法,即按照Whitson体积法拆分馏分C5+。建议的方法和两种不同的EOS调整方法可以使用可用的地质和生产数据进行有效的pvt建模。研究结果为配置状态方程前后储层气中潜在烃C5+含量变化对比的图形依赖关系,以及CVD实验合成的“液饱和”损失曲线。
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The Adjustment of EOS of Gas-condensate Mixture under the Condition of Input Data Shortage
The article characterizes the key difficulties which emerge during the simulation of phase behaviors described using the model of “black oil” or fully functional compositional model with the help of the equation-of-state (EOS) in order to create valid continuously operating geological-technological 3D models of gas-condensate reservoirs. The input data for 3D filtration reservoir modeling, the development of which started in the 1960s, are the results of initial gas-condensate and thermodynamic studies. Hydrocarbon component composition of reservoir gas in the existing gas-condensate studies is given only to fraction C5+. Taking into account the peculiarities of initial thermodynamic research with the use of the differential condensation experiment and the absence of such type of experiment in the list of standard experiments in commercially-available PVT-simulators, there appeared a need to develop rational approaches and techniques for correct integration of existing geological-production data in PVT modeling. This article describes the methods for adjusting Peng-Robinson equation-of-state under the condition of input data shortage. Depending on initial data availability and quality, the authors have suggested two different methods. The first PVT-modeling method, which makes it possible to adjust the equation-of-state, is based on the data of component composition of gases and fractional composition of the stable condensate. In case the data of fractional composition of the stable condensate are not available, the authors suggest the second method that is the splitting of fraction C5+ following Whitson volumetric methodology. The suggested methods and two different approaches to EOS adjustment allow effective PVT-modeling using available geological and production data. Study results are presented as the graphical dependencies of comparison of potential hydrocarbons C5+content change in reservoir gas before and after configuring the equation-of-state, as well as the synthetic “liquid saturation” loss curve of the CVD experiment.
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