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Analysis and experimental verification of multiple scattering of acoustoelastic waves in thin plates for enhanced energy harvesting

机译:薄板中声波散射多次散射的分析与实验验证,提高能量收集

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Acoustoelastic wave energy harvesting in thin plates and other structures has recently gained attention from the energy harvesting research community. Metamaterial-inspired concepts for enhancing wave power generation have been investigated, including metamaterial funnels, mirrors, and defect-based resonators. In support of such concepts, this paper presents an electromechanically coupled, multiple scattering formulation for accurately modeling, exploring, and optimizing metamaterial-based harvesting systems incorporating scatterers (e.g., cylindrical inclusions and voids). Following development, the formulation is applied to determining optimal arrangements of scatterers, nominally in a semi-elliptical path, which maximize electrical power harvested, This is done, in part, by diminishing side lobes resulting from ellipse truncation. Optimization results exhibit minimized side lobes and harvester power nearly ten times that of the non-optimized case. Finally, an experimental study is presented which confirms many of the model predictions.
机译:薄板和其他结构中的声波能量收获最近从能量收集研究界获得了关注。已经研究了用于增强波发电的超材料启发概念,包括超材料漏斗,镜子和基于缺陷的谐振器。为了支持这种概念,本文提出了一种机电耦合的多散射配方,用于准确建模,探索和优化包含散射体(例如,圆柱形夹杂物和空隙)的超材料的收获系统。在开发之后,将制剂用于确定标称在半椭圆路上的散射体的最佳布置,其最大化收获的电力,部分地通过递减由椭圆截断引起的侧瓣来完成。优化结果表现出最小化的侧瓣和收割机功率接近未优化案例的近十倍。最后,提出了一个实验研究,该研究证实了许多模型预测。

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