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A new approach to obtaining relative permeability curves during chemical flooding process in a low-permeable reservoir

机译:低渗透油藏化学驱过程中获得相对渗透率曲线的新方法

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摘要

It is always difficult to obtain the relative permeability curve for a low-permeable reservoir using chemical flooding, as there are so many problems associated with the current measurement methods, especially when interfacial tension sigma, wettability cos theta and pore-throat radius ratio m are considered as the main factors that influence the shape of the relative permeability curve, and thereby the oil recovery. This paper presents a new concept of modified capillary numbers (N (CM)), associated with these three factors. First, laboratory experiments were carried out to get relationship between N (CM) and the residual oil saturation S (OR) under different conditions. Second, oil-water relative permeability curves for a target oil layer using the steady-state flow method were determined. Using these two steps, a relative permeability curve under different conditions of interfacial tension sigma, wettability cos theta and pore-throat radius ratio m has been drawn. Based on the calculated relative permeability curves, the oil displacement efficiency and flow capacity were determined. Subsequently, the relationships between the relative permeability curve, oil displacement efficiency, flow capacity and the factors for a low-permeable reservoir were established using chemical flooding.
机译:使用化学驱法获得低渗透储层的相对渗透率曲线总是很困难,因为与当前的测量方法相关的问题很多,尤其是当界面张力σ,润湿性cosθ和孔喉半径比m被认为是影响相对渗透率曲线形状从而影响采油率的主要因素。本文提出了与这三个因素相关的修饰毛细管数(N(CM))的新概念。首先,进行了实验室实验,以求得不同条件下的N(CM)与剩余油饱和度S(OR)之间的关系。第二,使用稳态流动方法确定目标油层的油水相对渗透率曲线。使用这两个步骤,绘制了在不同的界面张力σ,润湿性cosθ和孔喉半径比m的条件下的相对渗透率曲线。根据计算出的相对渗透率曲线,确定驱油效率和流量。随后,利用化学驱技术建立了相对渗透率曲线,驱油效率,流量与低渗透油藏因素之间的关系。

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