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Optimizing Harbor Seal Whisker Morphology for Developing 3D-Printed Flow Sensor

机译:优化港口密封晶须形态开发3D印刷流量传感器

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This paper presents a flow-structure interaction simulation-aided morphology optimization of harbor seal whisker, for generating a whisker-like structure that could possibly perform better in minimizing vortex-induced vibrations (VIVs) when subjected to steady flows. We also propose a whisker-inspired flow sensor design that features a 3D printed polymer model of the optimized seal whisker mounted on a 3D-printed cantilevered sensor base consisting of graphene nanoplatelets piezoresistors at the hinges. The designed flow sensor's performance in sensing the flow velocity and its sensitivity to the external force are demonstrated by computational fluid dynamics simulations and proof-of-concept experiments, respectively.
机译:本文介绍了港口密封晶须的流动结构相互作用仿真辅助形态优化,用于产生晶须状结构,其在经受稳定流动时可能表现更好地在最小化涡旋诱导的振动(VIV)。 我们还提出了一种晶须灵感的流量传感器设计,其具有安装在3D印刷的悬臂传感器基座上的优化密封晶须的3D印刷聚合物模型,该传感器基座包括在铰链处的压阻器。 通过计算流体动力学模拟和概念验证实验,证明了设计流动传感器对传感流速及其对外力的敏感性的性能。

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