低矿化度水驱技术提高采收率的潜力

H. Mahmud, S. Arumugam, W. Mahmud
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引用次数: 7

摘要

低矿化度水驱(LSWF)是一种潜在的提高砂岩和碳酸盐岩采收率(EOR)的新方法。由于相对于传统的水驱和其他化学提高采收率技术的潜在优势,LSWF方法已经引起了油气行业的关注。水驱过程的效率受地层岩石类型、孔隙度、渗透率、储层流体饱和度及分布、最佳注水时间等储液参数的影响。这些因素的综合作用决定了油气的最终采收率。本章的主要目的是回顾LSWF技术提高采收率的机理及其运作机制。近年来,LSWF的各种实验室研究和很少的现场应用主要是在实验室规模。此外,它还将探讨这种提高采收率方法的数值模拟发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential of Low-Salinity Waterflooding Technology to Improve Oil Recovery
Low-salinity waterflooding (LSWF) is a potential new method for enhanced oil recovery (EOR) in sandstone and carbonate rock formations. LSWF approach has gained an attention in the oil and gas industry due to its potential advantages over the conventional waterflooding and other chemical EOR technologies. The efficiency of waterflooding process is effected via reservoir and fluid parameters such as formation rock type, porosity, permeability, reservoir fluid saturation and distribution and optimum time of water injection. Combined effect of these factors can define the ultimate recovery of hydrocarbon. The main objective of this chapter is to review the mechanism of LSWF technique in improving oil recovery and the mechanism under which it operates. Various laboratory studies and few field applications of LSWF in recent years have been presented mainly at the lab scale. Also it will explore numerical modeling developments of this EOR approach.
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