首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2011 >SYNERGISTIC WAKE INTERACTIONS IN AEROELASTIC FLUTTER VIBRATION ENERGY HARVESTER ARRAYS
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SYNERGISTIC WAKE INTERACTIONS IN AEROELASTIC FLUTTER VIBRATION ENERGY HARVESTER ARRAYS

机译:气动颤振能量捕获阵中的协同唤醒相互作用。

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This research experimentally investigates the operation of several aeroelastic flutter energy harvesters in an array. In order for such a wind energy harvesting array to operate effectively, it is important to understand the interaction between neighboring power harvesters including downstream wake effects, and how these interactions can be leveraged to maximize the output of the system. The fluttering motion of the energy harvester imparts an unsteady wake into the flow downstream of the device. Wind tunnel experiments with a pair of flutter energy harvesters show that this wake structure has significant effects on the oscillation amplitude, frequency, and power output of the trailing device. These wake interaction effects are shown to vary with the stream-wise and cross-stream separation distance between the two devices. At some separations, an advantageous frequency lock-in between the two devices occurs. When this occurs, the wake of the leading device adds constructively with the trailing device, causing larger oscillation amplitudes and higher power output in the trailing device. Experiments to characterize this variation in power output due to these wake interaction effects and to determine the optimal spacing of the energy harvesters are presented and discussed.
机译:这项研究实验性地研究了阵列中几个气动弹性颤振能量收集器的操作。为了使这样的风能采集阵列有效运行,重要的是要了解相邻功率采集器之间的相互作用(包括下游尾流效应),以及如何利用这些相互作用来最大化系统的输出。能量收集器的颤动会给设备下游的气流带来不稳定的唤醒。使用一对颤振能量收集器进行的风洞实验表明,这种尾流结构对拖曳装置的振荡幅度,频率和功率输出具有重大影响。这些尾流相互作用效应显示为随两个设备之间的流向和跨流分离距离而变化。在某些间隔处,在两个设备之间发生了有利的频率锁定。发生这种情况时,前导设备的唤醒会与尾随设备相长,从而在尾随设备中产生更大的振荡幅度和更高的功率输出。提出并讨论了表征由于这些尾流相互作用效应而导致的功率输出变化的实验,并确定了能量收集器的最佳间距。

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