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Measurement And Numerical Simulation Of Flow And Electric Fields In Charge Injection Type Of Electrostatic Oil Filter

机译:电荷注入式静电滤油器中流场和电场的测量与数值模拟

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This paper presents experimental and numerical simulation results of the flow and electric fields in a two-dimensional model of charge injection type of electrostatic oil filter. A previous work has shown that flow is generated from the tips of the projections of the emitter electrode towards the smooth electrodes because of ion drag phenomenon and that the flow may detach part of the contaminant particles captured on the smooth electrodes and may be the principal cause of the saturation of the filtration speed at higher applied voltages and oil temperatures. In order to minimize the bad influence of the ion drag flow on the filter performance, it is important to be able to predict the flow in filters of various configurations by numerical simulation. Numerical simulation results of the flow field are compared to experimental results. In addition, electric potential distribution is measured and is compared between experiment and simulation. It is shown that the flow fields obtained by numerical simulation agree relatively well with measured ones. It is expected that the numerical simulation contributes to designing a filter with a better performance.
机译:本文介绍了电荷注入式静电滤油器二维模型中流场和电场的实验和数值模拟结果。先前的工作表明,由于离子拖曳现象,从发射电极的突起的尖端向光滑电极产生了流动,并且该流动可能使捕获在光滑电极上的部分污染物颗粒脱离,并且可能是主要原因较高的施加电压和油温下过滤速度的饱和度。为了使离子阻力流对过滤器性能的不利影响最小化,重要的是能够通过数值模拟来预测各种配置的过滤器中的流量。将流场的数值模拟结果与实验结果进行了比较。另外,测量电势分布并在实验和仿真之间进行比较。结果表明,数值模拟得到的流场与实测流场比较吻合。期望数值模拟有助于设计具有更好性能的滤波器。

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