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Experimental study on viscosity reducers for SAGD in developing extra-heavy oil reservoirs

机译:开发超重油储层粘度粘度减速器的实验研究

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Steam assisted gravity drainage (SAGD) is an effective in situ oil recovery technology in developing extra-heavy oil reservoirs. Large volumes of steam are needed, however, to heat the extra-heavy oil because of its high viscosity. Steam generation consumes large amounts of natural gas, which adversely affects the economics of SAGD, especially when oil prices are low. Moreover, environmental concerns arise because of excessive freshwater use and greenhouse gas emissions from the burning of the fossil fuels to generate steam. Considering these limitations and concerns, this paper evaluates the effectiveness of different viscosity reducers to decrease the steam consumption and improve SAGD performance. We conducted a series of screening experiments, including viscosity-reduction ratio, thermal stability, and core flooding, for nine types of viscosity reducers, based on an extra-heavy oil sample from a commercial SAGD project in China. The results indicate that water-soluble viscosity reducer #8, a nanoemulsion, is suitable for SAGD. It has a viscosity-reduction ratio of 98.0% at 50 degrees C and is still effective after high-temperature and high-pressure (200 degrees C, 4.0 MPa) treatment, with a viscosity-reduction ratio of 92.6%. The displacement efficiency is improved by 29.1%, and the cumulative steam-to-oil-ratio is reduced by 45.3% compared with pure steam flooding. Despite viscosity-reduction, the effect of interfacial tension reduction plays an important role in improving displacement efficiency during the coinjection of steam and viscosity reducer #8 has good potential to improve SAGD performance in developing extra-heavy oil reservoirs.
机译:蒸汽辅助重力排水(SAGD)是开发超重油储层的原位石油回收技术。然而,需要大量的蒸汽,以加热超重的油,因为其高粘度。蒸汽生成消耗大量的天然气,这对SAGD的经济性产生了不利影响,特别是当油价低时。此外,由于从化石燃料燃烧的过度淡水使用和温室气体排放过度淡水和温室气体排放,因此产生了环境问题。考虑到这些限制和疑虑,本文评估了不同粘度减速器的有效性,以降低蒸汽消耗并提高落杆性能。我们进行了一系列筛选实验,包括粘度减少率,热稳定性和核心泛滥,用于九种类型的粘度减速剂,基于来自中国商业索拉德项目的超重石油样品。结果表明,水溶性粘度减速器#8,纳米乳液适用于SAGD。它的粘度降低率为98.0%,在50℃下,高温和高压(200摄氏度)处理后仍然有效,粘度降低率为92.6%。比相比,位移效率提高了29.1%,累积蒸汽与油比减少了45.3%。尽管粘度降低,界面张力减少的效果在提高蒸汽的投注期间提高位移效率的重要作用,并且粘度减速器#8具有良好的潜力,以提高开发超重油储层的SAGD性能。

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