利用状态方程代理模型组合混合成分油气流进行组合综合生产管理

S. F. Mello, J. C. H. Filho, D. Schiozer
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引用次数: 0

摘要

当两个不同的海上储层在同一地区生产时,两个储层可以使用相同的收集系统。建议对油气组成进行建模,因为其影响会影响储层预测。建模不正确的集成生产管理(IPM),即数据不足的集成生产管理,由于缺乏严格的组成建模影响评估,可能会对系统管理产生负面影响。为了充分研究这一问题,需要一种模拟混合成分油气流的方法。大多数提出的完成这项任务的方法是伪成分(基于k值)或基于Black-Oil模型。这项工作的目的是开发一种混合成分石油流的方法,用于未来的成分IPM优化研究。本文实现、验证并讨论了混合成分油气流的局限性和可重复性。它基于状态方程(EoS)和PVT数据对方法进行建模,并结合Carpio(2012)提出的概念来实现过程自动化。本工作将提出的方法与文献中的两种混合方法进行了比较。所研究的三种混合方法是基于Peng-Robinson(1978)的调谐微分方程和著名的微分方程方法的概念,以及Jhaveri-Youngren(1988)的体积翻译。分析和比较的方法是基于常规数据和模拟调优实验,如果适用。该研究结果表明,三种替代方法的混流性质具有较小但显著的可变性,有可能影响最佳油藏控制条件。因此,混合流模型的偏差潜力值得进一步研究,因此,有必要进行后续的敏感性研究,重点关注闭环IPM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMBINING MIXED-COMPOSITION PETROLEUM STREAMS USING PROXY MODELS OF EQUATION OF STATE FOR COMPOSITIONAL INTEGRATED PRODUCTION MANAGEMENT
When two distinct offshore reservoirs produce in the same region, the same gathering system for both reservoirs may be used. It is recommended that the gas/oil composition is modeled because its effects can impact reservoir forecasting. An incorrectly-modeled Integrated Production Management (IPM), i.e. one with insufficient data, can impact system management negatively due to the lack of a rigorous compositional modeling impact assessment. To fully study this problem, there need to be a method to model mixed-composition petroleum streams. Most proposed methods to carry this task are Pseudo-Compositional (based on K-values) or are based on Black-Oil models. The objective of this work is to develop a method for mixed-composition petroleum streams to be used in future compositional IPM optimization studies. This paper implements, validates, and discusses the limitations and reproducibility of a mixed-composition petroleum stream. It models a methodology based on an Equation of State (EoS) and PVT data, and combines concepts proposed by Carpio (2012) to automate the process. This work compares the proposed method with two mixing methods from the literature. The three mixing methods studied are based on concepts of tuned EoS and the well-known methods of EoS from Peng-Robinson (1978), and volume translation from Jhaveri-Youngren (1988). The analysis and comparison of the methods are based on conventional data and simulated tuned experiments, when applicable. The results of this study show a small but significant variability of mixed-stream properties from the three proxy methods with the potential to impact optimal reservoir control conditions. Therefore, the deviation potential of mixed-stream models is worth further investigation, thus, justifying a subsequent sensitivity study, with focus on closed-loop IPM.
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