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Study of article training ffect on roduced ater anagement and njectivity nhancement

机译:关于啮合射伤和咬合性纳米术的文章培训培训

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Theoretical and laboratory studies are performed aiming at the development of a predictive model for transport and retention of particles from produced water and crude oil/gas based on grain size distribution and particle sizes only. The particle capture by straining is thoroughly investigated. In the laboratory, injections of different sized particles suspended in fluid with different salinity and pH values have been carried out into the newly designed porous media holder with single-layer grains and into the column packed engineering porous media. The retained particles are filmed using microscope; their breakthrough concentrations are measured by particle counter. A new mathematical model accounting for pore connectivity and triangular pore throat shape is derived and applied to the experimental conditions. Agreement between test data and modelling results supports application of the model to the evaluation of straining effect on the produced water management and injectivity enhancement.
机译:在仅基于晶粒尺寸分布和粒度的粒度分布和粒度的粒度分布和颗粒尺寸的情况下,进行理论和实验室研究旨在开发用于运输和保留来自生产的水和原油/天然气的颗粒的预测模型。通过紧张彻底研究颗粒捕获。在实验室中,已经在具有不同盐度和pH值中悬浮在流体中的不同尺寸颗粒的注射到新设计的多孔介质座上,用单层晶粒并进入柱填充工程多孔介质中。保留的颗粒使用显微镜拍摄;它们的突破浓度由粒子计数器测量。衍生出对孔连接和三角形孔喉形状的新数学模型核算,并应用于实验条件。测试数据与建模结果之间的协议支持将模型应用于对生产的水管理和注射性增强的应变效果的评估。

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