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On the determination of CO2-crude oil minimum miscibility pressure using genetic programming combined with constrained multivariable search methods

机译:基于遗传规划和约束多变量搜索方法确定CO2原油最低混溶压力

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摘要

In addition to reducing carbon dioxide (CO2) emission, the high oil recovery efficiency achieved by CO2 injection processes makes CO2 injection a desirable enhance oil recovery (EOR) technique. Minimum miscibility pressure (MMP) is an important parameter in successful designation of any miscible gas injection process such as CO2 flooding; therefore, its accurate determination is of great importance. The current experimental techniques for determining MMP are expensive and time-consuming. In this study, multi-gene genetic programming has been combined with constrained multivariable search methods, and a simple empirical model has been developed which provides a reliable estimation of MMP in a wide range of reservoirs, injection gases and crude oil systems. The experimental data for developing the proposed correlation consists of 270 data points from twenty-six authenticated literature sources. This model utilizes reservoir temperature, molecular weight of C-5(+), volatile (N-2 and C-1) to intermediate (H2S, CO2, C-2, C-3, C-4) ratio and pseudo critical temperature of the injection gas as input parameters. Both statistical and graphical error analyses have been employed to evaluate the accuracy and validity of the proposed model compared to the pre-existing correlations. The results showed that the new model provides an average absolute relative error of 11.76%. Moreover, the relevancy factor indicated that the reservoir temperature has the greatest impact on the minimum miscibility pressure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:除了减少二氧化碳(CO2)排放外,通过CO2注入工艺实现的高采油效率使CO2注入成为一种理想的提高采油率(EOR)的技术。最小溶混压力(MMP)是成功指定任何混溶气体注入过程(例如CO2驱油)的重要参数。因此,准确确定其重要性。用于确定MMP的当前实验技术既昂贵又费时。在这项研究中,多基因遗传规划已与受约束的多变量搜索方法相结合,并且已开发出一种简单的经验模型,该模型可为各种储层,注入气和原油系统中的MMP提供可靠的估计。用于发展建议的相关性的实验数据由来自26个经过验证的文献来源的270个数据点组成。该模型利用了储层温度,C-5(+)的分子量,挥发物(N-2和C-1)与中间物(H2S,CO2,C-2,C-3,C-4)的比率和伪临界温度注入气体作为输入参数。与先前的相关性相比,统计和图形错误分析都已被用来评估所提出模型的准确性和有效性。结果表明,新模型提供的平均绝对相对误差为11.76%。此外,相关因子表明储层温度对最小混溶压力影响最大。 (C)2016 Elsevier Ltd.保留所有权利。

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