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Effects of salinity and ionic composition of smart water on mineral scaling in carbonate reservoirs during water flooding

机译:散热对碳酸盐储层矿泉水矿泉水盐水和离子组成的影响

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This work was conducted to study the risk of formation damage as the result of mineral scales deposition during smart waterflooding into carbonate core sample,as well as the influence of injected water salinity and ionic composition on mineral scaling and precipitation.The reservoir flowing conditions were simulated by a new laboratory core-flooding procedure,which took into count of the effect of in-situ contact time(CT)of injected water and formation water on scaling.After the optimum CT was determined,extent of permeability decline was studied by the change in the salinity and ionic composition of injection seawater.The scaled core sample was analyzed visually by scanning electron microscopy(SEM)to study the crystal morphology of the scale.Under the experimental conditions,extent of permeability decline caused by CaSO_(4) and CaSO_(3) composite scales ranged from 61% to 79.1% of the initial permeability.The salinity and the ionic composition of injected smart water,and CT of the mixing waters had significant effects on the co-precipitation of CaSO_(4) and CaSO_(3) scales.The SEM images reveal that the loss of permeability is mainly caused by the accumulation and growth perpendicular to the pore wall of scale crystals.
机译:进行这项工作,以研究在智能水上沉积到碳酸盐核样品中矿物质沉积的结果,以及注入水盐度和离子组成对矿物缩放和降水的影响。模拟储层流动条件通过新的实验室核心泛滥手续,该程序参与了原位接触时间(CT)注入的水和地层水在缩放上的效果。确定最佳CT后,通过变化研究了渗透率下降的程度在注射海水的盐度和离子组合物中。通过扫描电子显微镜(SEM)来研究缩放的核心样品以研究规模的晶体形态。实验条件下,Caso_(4)和Caso_造成的渗透率下降的程度(3)复合尺度范围为初始渗透率的61%至79.1%。注入智能水的盐度和离子组成,以及混合物的CT对水域的共沉淀有显着影响,对Caso_(4)和Caso_(3)尺度的共沉淀。SEM图像揭示了渗透性的损失主要是由垂直于晶粒孔壁的累积和生长引起的。

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