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Core Floods vs.Field Pilot - Effectiveness of Microemulsions inConventional and Unconventional Waterfloods

机译:核心洪水vs.field飞行员 - 微乳液的有效性不响应和非传统的水运

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Application of chemistries for waterflooding has traditionally required a significant upfront investmentin core flood testing.Investments of this sort equate to money and time spent on a reservoir screeningtool which does not guarantee an accurate translation into pilots.The aim of this paper is to explorecore flood results in conjunction with pilot results for conventional and unconventional reservoirs wheremicroemulsions are deployed in order to enhance oil recovery.Microemulsions act as a delivery platform for solvent(terpene)and surfactant mixtures throughout agiven rock volume.Their ability to alleviate damage and change the energetics of surfaces is believed toenhance mobilization of oil.They're optimized for a given reservoir in the laboratory based on fluid-fluidand fluid-rock interactions.This includes adsorption(persistency),asphaltene wash-off,demulsification,drop size,and interfacial tension testing.We in turn label changes in injectivity of water as well as increasesin oil production as indicators of success in core floods and pilots.The above strategy has led to microemulsion optimization in Taylorton Bakken(which is moreconventional)and Lower Shaunavon(which is more unconventional)in SE and SW Saskatchewan,Canada.These are characterized by changes in permeability,temperature,mineralogy(quartz vs calcite),oil(paraffinic vs asphaltenic)and water(high vs low salinity).This study demonstrates a beneficial coreflood and pilot response in conventional reservoirs using microemulsions.What's however interesting andnoteworthy is that the core flood response is negligible in unconventionals(<5% incremental oil recovery)due in part to asphaltenes plating out on the core's exterior surface during restoration of wettability,whereasthe pilot response is quite positive.The major highlight of this work is the need to address the discrepancy in core flood testing and pilotresults in unconventional reservoirs.This is required before core flood testing can be used as a reliablescreening tool for unconventional reservoirs.We've furthermore demonstrated the beneficial impact ofmicroemulsions in both conventional and unconventional reservoirs as well as the need for optimizationbased on fluid-fluid and fluid-rock interactions.
机译:传统上,化学对水的应用传统上需要一个重要的前期投资核心泛洪测试。这种排序的投资等同于在水库筛选机上花费的金钱和时间,这不保证将其准确翻译进入飞行员。本文的目的是探索洪水结果结合常规和非传统储层的试点结果,展开液体乳液以增强石油恢复。溶剂(萜烯)和表面活性剂混合物作为溶剂的递送平台,其贯穿于动力岩石体积。危害损伤的能力和改变表面的能量。 oil.They're的信toenhance动员用于基于流体fluidand流体岩interactions.This实验室给定储层优化包括吸附(持久性),沥青质洗掉,破乳,墨滴尺寸,和界面张力测试。我们反过来标签水的注射变化以及增加石油作为核心洪水和飞行员成功的生产指标。上述战略导致了Taylorton Bakken(这是涉及狂热的)和少女的微型乳液优化,加拿大和斯巴克温班省的下绍尚(更加非传统)。这些特点是渗透性,温度,矿物学(石英vs Calcite),油(石蜡Vs沥青质)和水(高与低盐度)。本研究展示了使用微乳液的常规储层中的有益核心和导频响应。然而,有趣的是核心洪水响应是在非常规能源(<5%的增量油回收)部分由于沥青质的润湿性的恢复,在芯的外表面上镀出可以忽略不计的导频whereasthe响应是这样工作的相当阳性。大亮点是要解决的差异的需要在核心洪水测试和非传统水库中的飞行员。在核心洪水测试之前需要使用,以便使用用于非传统水库的相关性筛网工具。我们进一步证明了常规和非传统水库中的催乳素的有益影响以及对流体流体和流体岩相互作用的优化需求。

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