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Modeling and simulation of tapered fiber-optic oil concentration sensor using negative dielectrophoresis

机译:负介电电泳法用于锥形光纤油浓度传感器的建模与仿真

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摘要

This work presented the model of dieletrophoresis (DEP) and tapered fiber technology. The aim was to improve the sensitivity of oil concentration measurement in the separation of oil-water mixture process. Simulations via COMSOL v4.3b Multiphysics software were implemented to calculate and study the distribution of electric field, which was generated from both sides of tapered fiber with two metal-coated silver electrodes using direct current (DC) electric fields. The emulsified oil particles with radius of 0.09 μm could be repelled from the strong electric field region so as to change the refractive index around the tapered fiber region. Then, the evanescent wave field would induce to change the transmission intensity of the optical fiber. The finite element method (FEM) was used to solve optical wave field coupled convection-diffusion-migration (CDM) equation. The results indicated that the oil concentration measurement sensitivity of the proposed sensor was increased to be 25% higher than that of an identical tapered fiber sensor without negative DEP.
机译:这项工作提出了介电泳(DEP)和锥形纤维技术的模型。目的是提高油水混合物分离过程中油浓度测量的灵敏度。通过COMSOL v4.3b Multiphysics软件进行了仿真,以计算和研究电场的分布,该电场是通过直流(DC)电场从带有两个带有金属涂层的银电极的锥形纤维的两侧产生的。半径为0.09μm的乳化油颗粒可被强电场区域排斥,从而改变锥形纤维区域周围的折射率。然后,van逝波场将引起改变光纤的传输强度。用有限元法(FEM)求解光波场耦合的对流-扩散-迁移(CDM)方程。结果表明,与不带负DEP的相同锥形光纤传感器相比,该传感器的油浓度测量灵敏度提高了25%。

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