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Nondimensionalized Parametric Modeling of Fringing Electric-Field Sensors

机译:边缘电场传感器的无量纲参数化建模

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Fringing electric field (FEF) sensors are widely used for noninvasive measurement of material properties, such as porosity, viscosity, temperature, hardness, and degree of cure. They are also used to detect the presence of a material or estimate the concentration of a material within the test environment. No generic analytical models exist for FEF sensors. Optimization of FEF sensor design often involves complex and time-consuming finite element simulations. This paper presents a nondimensionalized parametric model to improve the design process. The effects of design parameters, such as sensor geometry and substrate material, are quantified in the model. The model parameters are determined from a three-dimensional surface fit of finite element simulation results for the most common type of sensor geometry. The variables in the model are nondimensionalized, which makes the model applicable to a wider range of sensor designs
机译:边缘电场(FEF)传感器广泛用于无创测量材料特性,例如孔隙率,粘度,温度,硬度和固化度。它们还用于检测材料的存在或估计测试环境中材料的浓度。没有针对FEF传感器的通用分析模型。 FEF传感器设计的优化通常涉及复杂且费时的有限元模拟。本文提出了一种无量纲的参数模型来改进设计过程。在模型中量化了设计参数的影响,例如传感器的几何形状和基板材料。模型参数是根据最常见类型的传感器几何形状的有限元模拟结果的三维表面拟合确定的。模型中的变量是无量纲的,这使得该模型适用于更广泛的传感器设计

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