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QUALITATIVE AND QUANTITATIVE STUDY OF THE FLOW PHYSICS IN THE VICINITY OF AN OSCILLATING PLATE IN VISCOUS FLUIDS

机译:定性和定量研究粘性流体在振荡板附近的流动物理。

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In this paper, we report on a comprehensive experimental study on the fluid-structure interactions of a submerged rigid plate undergoing harmonic oscillations in a quiescent, Newtonian, viscous fluid. We conduct a detailed qualitative and quantitative analysis of the problem for broad ranges of oscillation parameters, including frequency and amplitude, to highlight the fluid-structure interaction mechanisms responsible for the hydro-dynamic forces acting on the plate. The primary objective of this study is to understand the effect of the oscillation parameters on the resulting qualitative flow patterns and analyze their relation with vortex shedding and hydrodynamic forces. We classify different flow regimes depending on the behavior of the flow in the vicinity of the structure, with particular focus on vortex shedding and symmetry breaking phenomena, and analyze the forces in each regime by using particle image velocimetry and direct force measurement via a load cell. Comparison of the obtained experimental results against values predicted from numerical and semi-analytical models shows good agreement between our approach and the literature. Fundamental findings from this work have direct relevance to various engineering applications, including energy harvesting devices, biomimetic robotic system, and micro-mechanical sensors and actuators.
机译:在本文中,我们报告了在静态牛顿粘性流体中经历谐波振荡的浸没式刚性板的流固耦合的综合实验研究。我们对振动参数的广泛范围(包括频率和振幅)进行了详细的定性和定量分析,以突出作用于板上流体动力的流体-结构相互作用机理。这项研究的主要目的是了解振荡参数对所得定性流型的影响,并分析它们与涡旋脱落和流体动力的关系。我们根据结构附近的流动行为对不同的流态进行分类,特别关注涡流脱落和对称破坏现象,并通过使用粒子图像测速和通过测力传感器直接测力来分析每种流态中的力。将获得的实验结果与通过数值和半分析模型预测的值进行比较,表明我们的方法与文献之间有很好的一致性。这项工作的基本发现与各种工程应用直接相关,包括能量收集设备,仿生机器人系统以及微机械传感器和执行器。

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