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Viscous oil recovery and in-situ deasphalting in fractured reservoirs - Part 2: Effect of solvent type and temperature

机译:裂缝性油藏中的稠油回收和原位脱沥青第2部分:溶剂类型和温度的影响

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This paper advances the understanding of the solvent-based EOR methods from our previous work by investigating the effect of solvent type and temperature on the recovery of viscous oil by liquid extraction using sandstone cores with an artificial fracture. The production mechanisms were identified through the analysis of oil production rate, ultimate recovery, and in-situ deasphalting in different sections of the core. The use of dichloromethane (DCM) was introduced as the reference to study the production without in-situ deasphalting whereas n-pentane injection was compared to that of n-butane injection to study the effect of paraffin length on production with in-situ deasphalting. Sustained high production rates, which deviate from the behavior of typical gravity drainage processes, were observed in the cases with in-situ deasphalting. This discrepancy was attributed to the enhanced convection in the matrix due to the alteration of fracture aperture by asphaltene precipitation and deposition. Temperature has a significant impact on oil production through its effect on mass diffusivity as well as asphaltene rheology. The result of this work indicates that solvent selection is a key factor in the optimizing solvent EOR process and potential asphaltene deposition should be taken into consideration.
机译:本文通过研究溶剂类型和温度对使用人工裂缝砂岩岩心进行液体萃取回收粘性油的影响,从我们以前的工作中提高了对基于溶剂的EOR方法的理解。通过对核心不同部分的产油率,最终采收率和原地脱沥青进行分析,确定了生产机理。引入了使用二氯甲烷(DCM)作为参考,以研究不进行原位脱沥青的生产,而将正戊烷注入与正丁烷注入的注入进行比较,以研究石蜡长度对采用原位脱沥青的生产的影响。在原地脱沥青的情况下,观察到持续的高生产率,这与典型的重力排水过程的行为有所不同。这种差异归因于由于沥青质沉淀和沉积而改变的裂缝孔径,导致基质对流的增强。温度通过影响质量扩散率和沥青质流变学而对石油生产产生重大影响。这项工作的结果表明,溶剂选择是优化溶剂EOR工艺的关键因素,应考虑潜在的沥青质沉积。

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