不同注气组分下界面张力相对渗透率对波及效率和采收率的影响

Mohd Ghazali Abd Karim, W. Hidayat, Alzahrani Abdulelah
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引用次数: 0

摘要

本文的目的是利用成分模拟模型研究不同注气成分下界面张力相关相对渗透率(Kr_IFT)对驱油和采收率的影响。注混相气时,由于油气成分和其他储层性质(如压力和温度)的变化,会导致界面张力(IFT)的变化。室内实验表明,IFT的变化会影响两相相对渗透率曲线(Kr),特别是油气系统。在从非混相到混相的过程中,使用单一的相对渗透率曲线将导致气体对水的流动性不准确,从而可能导致对波及效率和采收率的估计不准确。建立了一个综合部门构成模型来评估这一现象的影响。针对不同的注气成分(贫气、富气和二氧化碳气)、流体性质和储层特征,研究了几个模拟案例,以证明这些参数的影响。模拟模型结果表明,Kr_IFT在注气模拟建模中的应用可以捕捉到不同的驱替行为,从而更好地估计采收率并识别任何上升潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effects of Interfacial Tension Dependent Relative Permeability on Sweep Efficiency and Oil Recovery Under Different Gas Injection Composition
The objective of this paper is to investigate the effects of interfacial tension dependent relative permeability (Kr_IFT) on oil displacement and recovery under different gas injection compositions utilizing a compositional simulation model. Oil production under miscible gas injection will result in variations of interfacial tension (IFT) due to changes in oil and gas compositions and other reservoir properties, such as pressure and temperature. Laboratory experiments show that changes in IFT will affect the two-phase relative permeability curve (Kr), especially for oil-gas system. Using a single relative permeability curve during the process from immiscible to miscible conditions will result in inaccurate gas mobility against water, which may lead to poor estimation of sweep efficiency and oil recovery. A synthetic sector compositional model was built to evaluate the effects of this phenomenon. Several simulation cases were investigated over different gas injection compositions (lean, rich and CO2), fluid properties and reservoir characterizations to demonstrate the impact of these parameters. Simulation model results show that the application of Kr_IFT on gas injection simulation modelling has captured different displacement behavior to provide better estimation of oil recovery and identify any upside potential.
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