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Tapered galloping energy harvester for power enhancement and vibration reduction

机译:锥形疾驰能量采集器,可增强功率并降低振动

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摘要

The cantilever beam was commonly designed with uniform cross-section for the galloping energy harvesters. To improve its performance, two tapered galloping energy harvesters are proposed in this work. In the first tapered design, the beam's thickness is linearly changed with constant width. In the second tapered design, both the beam's thickness and width are linearly varied. A generalized fluid-structure-electricity coupled distributed-parameter model is established by the Hamilton principle and Gauss law for the tapered galloping energy harvesters. By means of the properties of the Bessel function and the modal analysis method, the exact analytical modal shape of the tapered beam is derived. The effects of the tapered ratio on the beam mass, bending stiffness, electrical field, electromechanical coupling, and piezoelectric capacitance are accounted by the proposed theoretic model. Finite element analyses and wind tunnel experiments are performed, and the results show good agreement with the proposed beam modal shape, corresponding natural frequency and harvested power. The tapered ratio is tuned to realize the even distribution of the piezoelectric strain along the beam length. Compared with the uniform design, the tapered galloping energy harvester exhibits merits on up to 61% power enhancement and 44% vibration deduction.
机译:悬臂梁通常设计成具有均匀的横截面,用于奔腾的能量收集器。为了提高其性能,在这项工作中提出了两个锥形驰energy式能量收集器。在第一个锥形设计中,梁的厚度以恒定的宽度线性变化。在第二个锥形设计中,光束的厚度和宽度都是线性变化的。利用汉密尔顿原理和高斯定律,为锥形驰gall能量收集器建立了广义的流固耦合耦合参数模型。利用贝塞尔函数的性质和模态分析方法,得出了锥形束的精确分析模态形状。所提出的理论模型考虑了锥度比对梁质量,弯曲刚度,电场,机电耦合和压电电容的影响。进行了有限元分析和风洞实验,结果与拟议的光束模态形状,相应的固有频率和收获的功率具有很好的一致性。调整锥度比以实现压电应变沿梁长度的均匀分布。与均匀设计相比,锥形疾驰能量收集器在提高功率高达61%和减少振动达44%方面具有优势。

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