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Field Case Studies of Completion FluidsTto Enhance Oil and Gas Production in Depleted Unconventional Reservoir

机译:完井液现场研究以提高枯竭非常规油藏的油气产量

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A study of completion techniques in depleted/low pressure tight permeability gas/oil reservoirs shows great promise through the use of a microemulsion (ME) additive in energized fracture stimulation treatment of new infill wells. This paper presents a comparison of four (4) wells completed according to historical stimulation practices and two (2) wells completed with microemulsion additive. See Table 1 for baseline data. The damage mechanisms from past practices were exacerbated by depleted/ low bottom-hole pressures, high water saturations, and low bubble point crude. The use of the microemulsion additive reduced the liquid load and promoted liquid recovery, enabling the base fluid gases to establish gas saturated pathways and promote the production of the natural solution gas that is the field’s primary economic resource. CO2 is thought to enhance this process by promoting the reduction of the near fracture face oil saturation. The microemulsion potentially enhances this action by reducing the mobility contrast between introduced fluids and reservoir oil, water, and gas phases. Analysis of the production histories shows that the microemulsion additive significantly enhanced the reservoir conductivity and effective fracture length when compared to the historical completions when in sustained production. The two wells treated with microemulsion additive also experienced less damage as a consequence of the long shut-ins prior to sustained production, than did those with historical completions, which had much shorter shut-ins.
机译:对贫化/低压致密渗透性气/油藏完井技术的研究表明,通过在新的填充井的通电压裂增产处理中使用微乳液(ME)添加剂,具有广阔的前景。本文介绍了根据历史增产实践完成的四(4)口井和装有微乳液添加剂的两(2)口井的比较。有关基准数据,请参见表1。过去的做法所造成的损害机制因井底压力降低/井底压力低,水饱和度高和原油沸点低而加剧。微乳液添加剂的使用减少了液体负荷并促进了液体回收,使基础流体气体能够建立气体饱和途径,并促进作为该领域主要经济资源的天然溶液气体的生产。据认为,CO 2通过促进降低近裂缝面油饱和度来增强该过程。微乳液通过降低引入的流体与储层油,水和气相之间的迁移率对比而潜在地增强了这一作用。对生产历史的分析表明,与持续生产时的历史完井相比,微乳液添加剂显着提高了储层电导率和有效裂缝长度。与持续完井时间短得多的历史完井井相比,用微乳液添加剂处理过的两口井由于持续生产前长期停井而遭受的损害也较小。

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