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Investigation of the Effects of Electrode Geometry on the Performance of C4D Sensor with Radial Configuration

机译:电极几何与径向配置对C4D传感器性能的影响研究

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摘要

Electrodes are basic components of C4D (capacitively coupled contactless conductivity detection) sensors, and different electrode structures (the configuration pattern or the electrode geometry) can lead to different measurement results. In this work, the effects of electrode geometry of radial configuration on the measurement performance of C4D sensors are investigated. Two geometrical parameters, the electrode length and the electrode angle, are considered. A FEM (finite element method) model based on the C4D method is developed. With the FEM model, corresponding simulation results of conductivity measurement with different electrode geometry are obtained. Meanwhile, practical experiments of conductivity measurement are also conducted. According to the simulation results and experimental results, the optimal electrode geometry of the C4D sensor with radial configuration is discussed and proposed. The recommended electrode length is 5–10 times of the pipe inner diameter and the recommended electrode angle is 120–160°.
机译:电极是C4D(电容耦合接触式导电检测)传感器的基本组件,以及不同电极结构(配置图案或电极几何形状)可以导致不同的测量结果。在这项工作中,研究了径向配置对C4D传感器测量性能的电极几何形状的影响。考虑两个几何参数,电极长度和电极角。开发了基于C4D方法的FEM(有限元方法)模型。利用有限元模型,获得了具有不同电极几何形状的电导率测量的相应模拟结果。同时,还进行了电导率测量的实际实验。根据仿真结果和实验结果,讨论和提出了具有径向配置的C4D传感器的最佳电极几何形状。推荐的电极长度为管道内径的5-10倍,推荐电极角为120-160°。

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