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Sensitivity Prediction of Multiturn Fiber Coil-Based Fiber-Optic Flexural Disk Seismometer via Finite Element Method Analysis

机译:基于有限元分析的多匝光纤线圈光纤弯曲磁盘地震仪灵敏度预测

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摘要

This paper presents a method for predicting strain and sensitivity of a fiber-optic flexural disk seismometer (FODS) based on multiturn fiber coils (MTFC) via finite element method (FEM) analysis. FEM can be used to evaluate sensitivity by taking into account the strain distribution in MTFC. A sample MTFC-based FODS was fabricated according to simulation parameters; the experimental results of strain distribution and sensitivity were determined by Brillouin optical time-domain analysis and vibrator, respectively, which in turn can be used to confirm the correctness of the prediction model. The tested strain distribution of MTFC has the same characteristic with its simulation model; the predicted sensitivity of MTFC-based FODS is 6448.0 rad/g. Three sample sensors are fabricated and tested, which have a fabrication error of 7%. All FODS simulations were carried out in the COMSOL Multiphysics environment, which has significant potential for application as a tool of predicting the FODS sensitivity when designing or fabrication an MTFC-based FODS.
机译:本文提出了一种基于有限元方法(FEM)分析的基于多匝光纤线圈(MTFC)的光纤挠性盘式地震仪(FODS)的应变和灵敏度预测方法。通过考虑MTFC中的应变分布,可以使用FEM评估灵敏度。根据模拟参数制造了基于MTFC的FODS样本。分别通过布里渊光学时域分析和振动器确定了应变分布和灵敏度的实验结果,进而可用于确认预测模型的正确性。测试的MTFC应变分布与其仿真模型具有相同的特性;基于MTFC的FODS的预测灵敏度为6448.0 rad / g。制作并测试了三个样品传感器,其制造误差为7%。所有FODS仿真都是在COMSOL Multiphysics环境中进行的,在设计或制造基于MTFC的FODS时,它具有巨大的潜力,可作为预测FODS灵敏度的工具。

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