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Semi Cylindrical Non-Tactile Capacitive Sensor: Equipotential Contour and Electrical Field Analysis

机译:半圆柱形非触觉电容式传感器:等电位轮廓和电场分析

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The use of Non-Tactile Semi Cylindrical Capacitive Sensors is quite common in petroleum applications. While these devices are comparatively inexpensive and effective way of measurements in horizontal pipes, they lack the required accuracy in vertical pipes applications. The measurements have shown a drift of up to 35%, when 500 ml water is used as a test sample, due to spatial variation of the electric field inside the sensor. In order to analyse the situation, a two-dimensional mapping of the electric field and equipotential lines inside the sensor has been numerically calculated by employing finite difference method model using MATLAB programming environment. The electric field diversifies spatially across the cross-sectional area of the pipe and a non-homogeneous distribution has been shown by the results. This compromises the accuracy of semi cylindrical sensors in vertical pipes application.
机译:非触觉半圆柱形电容式传感器在石油应用中非常普遍。尽管这些设备在水平管道中是相对便宜且有效的测量方式,但它们在垂直管道应用中却缺乏所需的精度。当使用500毫升水作为测试样品时,由于传感器内部电场的空间变化,测量结果显示漂移高达35%。为了分析这种情况,在MATLAB编程环境下,采用有限差分法模型,对传感器内部的电场和等电位线进行了二维映射。电场在管道的整个横截面上在空间上是分散的,结果显示出非均匀分布。这损害了垂直管道应用中半圆柱形传感器的精度。

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