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A piezoelectric energy harvester based on flow-induced flexural vibration of a circular cylinder

机译:基于圆柱的流致弯曲振动的压电能量采集器

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This article proposes a new piezoelectric structure for energy harvesting from flow-induced vibrations. It consists of a properly poled and electroded flexible ceramic cylinder. When it is in a flow perpendicular to its axis, the flow exerts a transverse force on the cylinder due to asymmetric vortex shedding, which drives the cylinder into flexural vibrations with an electrical output. A one-dimensional model is derived for the motion of the cylinder, which allows an analytical solution from which the basic behaviors of the energy harvester are calculated and examined. For a cylinder of 40 cm in length and 1cm in diameter in flowing air with a speed of 5 m/s, the output power is of the order of 10~(-3) W. It becomes significantly higher if the flow speed is increased.
机译:本文提出了一种新的压电结构,用于从流动引起的振动中收集能量。它由正确极化和带电极的柔性陶瓷圆柱体组成。当它处于垂直于其轴线的流中时,由于不对称的涡旋脱落,该流在圆柱体上施加了横向力,这使圆柱体产生弯曲振动并产生电输出。为汽缸的运动导出一维模型,该模型提供了一种解析解决方案,从该解析解可以计算和检查能量收集器的基本行为。对于长度为40 cm,直径为1 cm的圆柱体,以5 m / s的速度在流动的空气中,输出功率约为10〜(-3)W。如果提高流速,则功率会大大提高。 。

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