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Study on the Mechanism of Reversing Oil Displacement for Increasing the Production of Crude Oil in Low Permeability and Ultra-Low Permeability Oil Field

机译:逆流油位移对低渗透率和超低低渗透油田生产原油产量的机理研究

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Conventional water flooding method becomes ineffective facing low and ultra-low permeability oilfields,and the recovery rate of the non water harvesting period is only about 20%.Most residual oil is trapped in the reservoir and cannot be recovered.The conversion of injection well into production ones is used on some scale at home and abroad as a technique of oilfield adjustment,stimulation and EOR.Yet,problems like the optimum converting time,microscopic stimulation mechanisms,etc.,have not been clearly studied.The optimum time for reverse displacement can be acquired through forward and reverse displacement experiments of man-made cores with different permeability.Then,based on CT scanning technology an analysis is made of the processes of the forward displacement(till the converting time point)and the reverse displacement(till the end).According to the information of pores and water-oil distribution extracted from the CT graphs,water flooding characteristics and the change in residual oil distribution in different layers and at different displacement stages can be recognized.With the process of forward water injection,the residual oil in the core behave as types of discontinuous phases,including film flow,blob flow,slug flow,multi-pore flow,etc.,the total volume fraction of which increases with the displacement continuing.During the reverse displacement,in contrast,the former dispersed residual oil gradually gathered in cluster that is comparatively more recognizable.Meanwhile,the amount of multi-pore flow ascend,which is most obvious.These factors made part of the residual oil better displaced.By above analysis,a reasonable microscopic explanation of the stimulation technology by converting injection wells into production ones.The article concisely and directly uncovered the microscopic mechanism of the reverse displacement to enhance oil recovery.Based on the study and taking other influential factors of development into account,instructions can be made on further EOR process of low and ultra-low permeability oilfield at lower costs and with higher efficiency,which is one of the top concerns for most low permeability oilfields.
机译:常规的水驱方法面对低和超低渗透油田无效,非水收集时期的回收率仅为20%。最剩余的油被困在储层中,不能恢复。注射孔的转化率生产产品用于国内外的某些规模作为油田调整,刺激和EOR.YET的技术,尚未清楚地研究了最佳转换时间,微观刺激机制等的问题。反向位移的最佳时间可以通过具有不同渗透性的人造核的前向和逆转位旋转实验获得。该改变,基于CT扫描技术,分析是对前向位移的过程(直到转换时间点)和反向位移(直到结束)。根据CT图中提取的毛孔和水油分布的信息,水利泛滥特征和Residua的变化L可以识别出不同层和不同位移阶段的油分布。核心的过程中,核心中的残余油作为不连续阶段的类型,包括薄膜流动,Blob流,块流,多孔流动等等,其总体积分数随着置换率的增加而增加。相反,相反,前者分散的残余油逐渐收集在相对较为识别的簇中。虽然,多孔隙流量的数量,这是最明显的。这些因素使得一部分残留的油更好地取代。上面分析,通过将注射井转化为生产的刺激技术的合理显微镜解释。文章简洁地揭示了反向排量的微观机制加强石油恢复。基于研究并考虑到其他发展的影响因素,可以在FATH上进行说明ER EOR过程的低和超低渗透油田的成本较低,效率更高,这是大多数低渗透油田的最重要问题之一。

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