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The Application of Signal Collection and Disposal Technology in Measuring the Front of Oil and Water with Polymer Flooding

机译:信号采集与处理技术在含有聚合物洪水测量油水前的应用

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The signal identification technology is applied in tertiary recovery of oil field, which is based on that everything has own resistivity. The artificial physical models are established basis on the heterogeneity of Daqing oilfield main oil layers. The matrix of reservoir does not conduct electricity, but the water with salt in the reservoir can. So the electrodes are inserted in the physical model according to some regulars in the process of polymer flooding experiment. The change of resistivity can reflect the front movement of oil and water with different time, so the distribution with water and oil saturation, sweep efficiency can be obtained. The experiments are done with one dimension and three dimensions heterogeneous physical model interlayer or intraformational layer respectively. The polymer solutions are compound with 1500mg/L KCl high salinity water. The experimental results show that the front of polymer solutions can be recognized with this method. The sweep efficiency is 0.92 and 0.67 in the medium and low permeability interlayers model with 570mg/L·PV polymer solutions, the sweep efficiency of medium and low permeability intraformational heterogeneity model is 0.83 and 0.34 simultaneity, the time when the polymer has effect is later than interlayer model, the total recovery is also lower than interlayer model 2.63%. This paper will help study the macro movement laws of oil and water, micro percolation mechanics and residual oil distribution with experiment technology. This study further extends the technology application between cross subjects.
机译:信号识别技术应用于油田的三级回收,这是基于一切都有自身的电阻率。人工物理模型是基于大庆油田主油层的异质性的基础。储层基质不会导电,但水库中盐的水可以。因此,在聚合物洪水实验过程中,电极根据一些常规插入物理模型中。电阻率的变化可以反映油和水与不同时间的正面运动,因此可以获得水和油饱和度的分布,可以获得扫描效率。实验用一个尺寸和三维异质性物理模型层间或组成层进行。聚合物溶液是具有1500mg / L KCl高盐度水的化合物。实验结果表明,聚合物溶液的前部可以通过该方法识别。扫描效率为0.92和0.67,中介质和低渗透性层间模型,具有570mg / L·光伏聚合物溶液,培养基和低渗透性的扫描效率为0.83和0.34同时,聚合物具有效果的时间比层间模型,总回收率也低于中间层模型2.63%。本文将有助于研究石油和水的宏观运动规律,微观渗透力学和实验技术的残留油分布。本研究进一步扩展了交叉主题之间的技术应用。

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