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Modeling of biomimetic flow sensor based fish dome shaped cupula using PDMS for underwater sensing

机译:基于仿生流量传感器的鱼圆顶形吸盘的PDMS水下建模

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This paper presents the initial modeling on the biomimetic flow sensor based fish dome-shaped cupula for underwater sensing. Fish depend on this cupula to monitor the flow fields especially for maneuvering and survival underwater. We proposed the design structure and the principle of sensing using microchannel which is consist of liquid and electrolyte. PDMS material was chosen because it is easy to deform and soft. By using a computational fluid dynamic and finite element method, the optimal performance was obtained by optimizing the geometrical dimension of the radius and thickness of the dome. The sensor performance is measured on the basis of displacement and strain. The sensitivity of the sensor has been investigated by using different radius and thickness of the dome. Dome with a radius of 0.2mm until 1.2mm was chosen for this study. The resulting in a maximum displacement is 0.27μm and the strain is 3.98E-4 for a flow rate of 1m/s. Simulation results show that the sensitivity of the dome is a maximum when the radius of the dome at the maximum and the thickness of the dome at the minimum.
机译:本文介绍了仿生流量传感器基于鱼圆顶形吸盘的水下建模的初始模型。鱼依靠此吸盘来监测流场,尤其是在水下操纵和生存时。我们提出了由液体和电解质组成的微通道传感的设计结构和原理。选择PDMS材料是因为它易于变形和柔软。通过使用计算流体动力学和有限元方法,可以通过优化圆顶半径和厚度的几何尺寸来获得最佳性能。传感器性能基于位移和应变进行测量。已经通过使用不同的圆顶半径和厚度研究了传感器的灵敏度。本研究选择半径为0.2mm至1.2mm的圆顶。对于1m / s的流速,最大位移为0.27μm,应变为3.98E-4。仿真结果表明,当球顶半径最大,球顶厚度最小时,球顶灵敏度最大。

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