石油学报 ›› 2000, Vol. 21 ›› Issue (5): 45-51.DOI: 10.7623/syxb200005010

• 油田开发 • 上一篇    下一篇

粘弹性聚合物溶液能够提高岩心的微观驱油效率

王德民1, 程杰成2, 杨清彦1   

  1. 1. 大庆油田有限责任公司, 黑龙江大庆163453;
    2. 大连理工大学, 辽宁大连116012
  • 收稿日期:2000-05-29 修回日期:2000-06-12 出版日期:2000-09-25 发布日期:2010-05-21
  • 作者简介:王德民,男,1937年2月生,1960年毕业于北京石油学院钻采系.现在大庆油田有限责任公司工作,中国工程院院士.通讯处:黑龙江省大庆市.

VISCOUS-ELASTIC POLYMER CAN INCREASE MICRO-SCALE DISPLACEMENT EFFICIENCY IN CORES

WANG De-min1   

  1. Daqing Oil Fild Co. Ltd., Daqing 163453, China
  • Received:2000-05-29 Revised:2000-06-12 Online:2000-09-25 Published:2010-05-21

摘要: 人们普遍认为,聚合物驱不能提高微观驱油效率.而新近的大量研究成果不再支持这一观点.通过实验室岩心驱油实验,对水驱后的不同残余油类型进行了研究,并将残余油的类型划分为:1岩石表面的油膜;2“盲端”状残余油;3毛管力作用下的孔喉残余油;4岩心微观非质部分未被波及的残余油.研究表明,粘弹性的聚合物溶液驱替后,所有类型的微观残余油均减少.而且其在孔隙中的速度分布与牛顿流体有很大不同,在驱替不同类型的残余油时,表现出很强的“拉、拽”作用.研究证实了微观驱油效率的提高与聚合物溶液的弹性有关.不同性质的聚合物溶液具有不同的弹性.选用不同的聚合物驱油时,其提高采收率幅度的差异可高达6%OOIP以上.大庆油田工业规模聚合物驱开发区块的密闭取心资料也证实了这一观点.研究较全面地阐述了:1一些聚合物驱成功与失败的原因;2开展聚合物驱油时应考虑的因素;3如何进一步提高聚合物驱油的采收率.粘弹性的流体在孔隙介质中的流变性还需进一步做大量的研究工作.研究牛顿流体所得到的许多结论在用于粘弹性流体时,还有待于重新评价.

关键词: 聚合物溶液, 粘、弹性, 提高, 宏观, 微观, 驱油效率

Abstract: When flooding with viscous Polymers,due to the increase in viscosity and decrease in permeability (for polymers that absorb on the rock surface), the mobility ratio compared to water flooding becomes more favorable.Therefore the volumetric sweep efficiency increases and the recovery of the reservoir on a macro scale increases also. Most people think that polymer flooding does not increase the recovery at a micro scale.But numerous results in this work do not support this conclusion. From cores in the lab,the effect of flooding with viscous-elastic polymers on different types of residual oil after water flooding was studied.The different types of residual oil are:(1)oil film on the rock surface; (2)oil in "dead ends"; (3)oil in pores throats retained by capillary forces; (4)oil un-swept in micro scale heterogeneous portions of the core.It could be seen that all types of micro-scale residual oil were reduced after flooding with viscous-elastic polymers. Due to the elastic nature of the polymer,the velocity distribution in the pores are quite different from Newtonian Fluids and the polymer could also exert a very strong "pulling effect" on different types of residual oil.The study pointed out that the relationship between Capillary Number and Recovery of cores for Newtonian Fluids does not apply to fluids with elastic properties. In the study,it was seen that the increase in micro scale recovery was related to the elastic properties of the polymer fluids.Different polymer fluids had quite different elastic properties.Some had practically no elasticity.Therefore,when selecting polymers for flooding,its elastic properties must be considered.The difference in incremental recovery can be more than 6% OOIP (original oil in place), which is substantial,it can make a polymer flood successful (both technically and economically) or not.The above conclusions can also be confirmed by pressure coring data and field results of large scale polymer (PAM) flooding in Daqing Oil Field,which is obtaining an incremental oil recovery of more than 13% OOIP.This magnitude of incremental oil recovery can not be explained by just an increase in volumetric sweep efficiency. The above conclusions 1) can explain why some polymer floods were successful of not; 2) should be considered when selecting polymer floods and,3) should be able to increase the incremental oil of future polymer floods.The rheology of viscous-elastic fluids in porous media is very much different from fluids with no elasticity.Much work needs to be done in this field.Many conclusion obtained by studies on Newtonian Fluids need to be re-assessed when used on visco-elastic fluids.

Key words: polymer, viscosity-elasticity, increase, macro-micro scale, displacement efficiency

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