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首页> 外文期刊>Journal of natural gas science and engineering >Modified vanishing interfacial tension (VIT) test for CO2-oil minimum miscibility pressure (MMP) measurement
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Modified vanishing interfacial tension (VIT) test for CO2-oil minimum miscibility pressure (MMP) measurement

机译:改进的消失界面张力(VIT)测试,用于测量CO2油的最小混溶压力(MMP)

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摘要

Miscible gas injection is one of the most popular and applicable enhanced oil recovery method in oil fields. Minimum miscibility pressure (MMP) is an important parameter for an enhanced oil recovery process involving carbon dioxide or hydrocarbon miscible gas injection. There are many methods for measuring MMP but the most standard method for measuring MMP value in oil field gas injection process is slim tube method, which is very time consuming (4-6 weeks). Measurements of the interfacial tension of mixtures of a reservoir fluid and injection gas at various pressures have been proposed recently as an experimental method for predicting the minimum miscibility pressure (MMP) in an experiment called the vanishing interfacial tension (VIT) technique. This method is quantitative in nature and fast (2-3 days) with respect to slim tube method. VTT technique is based on the concept that the interfacial tension between the gas and crude oil phases at reservoir temperature must reduce to zero as these two phases approach the point of miscibility. The concept of zero interfacial tension at miscibility is, in turn, based on the well-accepted fact that the interface between the phases must vanish, as they become miscible with one another. Our results show the MMP value obtained from VIT method exceeds the slim tube MMP and miscibility pressure does not necessarily occur at zero IFT. Using zero 1FT criteria cause MMP overestimation. In this study, by using the VIT and slim tube test, we measured the IFT in which slim tube MMP occur in VIT test for CO2-oil system for various types of reservoir oil. These IFT values are correlated by oil properties and test condition to help us measure the accurate value of MMP by using VIT method.
机译:混溶气体注入是油田中最流行和适用的增强采油方法之一。最小混溶压力(MMP)是涉及二氧化碳或烃类混溶气体注入的强化采油工艺的重要参数。测量MMP的方法有很多,但是在油田注气过程中测量MMP值的最标准方法是细管法,这非常耗时(4-6周)。近来,已经提出了在各种压力下测量储层流体和注入气体的混合物的界面张力的方法,作为在称为消失界面张力(VIT)技术的实验中预测最小混溶压力(MMP)的实验方法。该方法本质上是定量的,并且相对于细管法而言是快速的(2-3天)。 VTT技术基于以下概念:在储层温度下,气相和原油相之间的界面张力必须减小到零,因为这两个相都接近混溶点。互溶时界面张力为零的概念又是基于公认的事实,即相之间变得互溶时,相之间的界面必须消失。我们的结果表明,通过VIT方法获得的MMP值超过了细管MMP,并且在IFT为零时不一定会发生混溶压力。使用零1FT标准会导致MMP高估。在这项研究中,通过使用VIT和细管测试,我们测量了在CO2油系统的VIT测试中,对于各种类型的储层油,细管MMP发生的IFT。这些IFT值与油性和测试条件相关联,以帮助我们使用VIT方法测量MMP的准确值。

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