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Modelling of Polymer Coated-based Optical Fiber Sensor for Moisture Measurement in Transformer Oil

机译:基于聚合物涂层的光纤传感器模拟变压器油中的水分测量

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Optical fiber based on the polymer coating is one of the best options for water detection sensors in liquid insulation. The water diffusion can be simulated through the finite-element method (FEM) as it provides the finite element analysis to determine the performance of the moisture sensor based on optical fibers. In this work, a commercial COMSOL Multiphysics software was used for the FEM simulation of the coated optical fiber based moisture sensor. The response of the sensor was estimated for different thickness to select the coating thickness before the hardware design to opt for the best sensitivity. The electric field propagation used the 2D model and was estimated by using the boundary mode analysis and frequency domain study. Transport dilute species uses 3D model species to study the diffusion of water into the polymer by varying the thickness and concentration of water (mol/m3). The light propagation was simulated based on electromagnetic fields and water diffusion using Fick's law. The modelling of the sensor was done, and the response time required for the sensor was estimated along with the effect of the electric field with varying thickness of PVAc coating.
机译:基于聚合物涂层的光纤是液体绝缘中的水检测传感器的最佳选择之一。可以通过有限元方法(FEM)模拟水扩散,因为它提供了有限元分析,以确定基于光纤的湿度传感器的性能。在这项工作中,商业COMSOL Multiphysics软件用于涂层光纤的湿度传感器的有限元模拟。估计传感器的响应对于不同的厚度,以选择硬件设计前选择涂层厚度,以选择最佳灵敏度。电场传播使用了2D模型,并通过使用边界模式分析和频域研究估计。运输稀释物种使用3D模型物种来通过改变水的厚度和浓度来研究水的扩散到聚合物中(mol / m 3 )。基于使用Fick的定律,基于电磁场和水分扩散来模拟光传播。传感器的建模已经完成,并且估计传感器所需的响应时间随着电场与PVAC涂层的变化厚度的电场的效果估计。

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