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Design of Capacitive Sensor for Phase Concentration Measurement in Two-phase Flow

机译:用于两相流中相浓度测量的电容传感器的设计

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Concave capacitive sensors are widely applied for phase concentration measurement in two-phase flow. Fringing electric fields exist between any two concave capacitance electrodes of finite length and the additional capacitance these fields add is not easily accounted for. It is important to account for fringe effect in many capacitive sensing applications in order to ensure accurate measurement results. In this paper, a capacitive sensor with axis and radial grounded guard electrodes is proposed. The performance of the sensor with and without guard electrodes in term of fringe effect and output linearity is investigated. For the determination of the optimal structure of the capacitive sensor, numerical simulation and response surface method are adopted. Numerical simulation and static phantom experiments show the effectiveness of the proposed capacitive sensor which allowed a significant reduction of the fringe effect and good linearity and good sensing field homogeneity.
机译:凹形电容传感器广泛应用于两相流的相浓度测量。在有限长度的任何两个凹入电容电极之间存在条纹电场,这些字段添加的附加电容不容易考虑。重要的是要考虑在许多电容传感应用中的条纹效果,以确保准确的测量结果。本文提出了一种具有轴和径向接地保护电极的电容传感器。研究了传感器的性能和没有防护电极的条纹效果和输出线性的性能。为了确定电容传感器的最佳结构,采用数值模拟和响应面法。数值模拟和静态模拟实验表明了所提出的电容传感器的有效性,其允许显着降低条纹效果和良好的线性度和良好的感测场均匀性。

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