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Experimental control from wake induced autorotation with applications to energy harvesting

机译:唤醒诱导自动应用与能源收获的实验控制

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摘要

This study is devoted to the investigation of optimal conditions for flow-induced autorotation of a hinged cylinder in a direction perpendicular to the flow in a water tunnel. Previous studies of hinged, immersed cylinders inflow have shown autorotation to be dependent upon the geometric aspects of the body and flow speed when the speed is beyond a critical threshold. Our experiments indicate that introducing a blockage of the appropriate width and at the right distance, upstream of the cylinder, can help induce autorotation, even at much lower flow speeds. Additionally, the percentage of the cylinder?s area blocked (i.e. the blockage ratio), is a significant control parameter, which can be used to manipulate the rotational speed of the cylinder. This phenomenon can be used to generate power which is demonstrated here by a suitable modification of our setup. Our mechanism deviates from traditional wind and hydro-power generators which use blade turbines by considering a cylinder and its modifications as a turbine. Such a design is easy to manufacture and control as is demonstrated in our experiments. Induced autorotation by the introduction of a control body upstream of the turbine is shown to increase power generation in our setup up to 400%.
机译:该研究致力于调查在垂直于水隧道中流动的方向上的流动诱导的铰接式气缸的自动的最佳条件。以前的铰接研究,浸入的汽缸流入已经示出了自动化,以取决于身体的几何方面和当速度超出临界阈值时的流速。我们的实验表明,在汽缸上游引入适当的宽度和右距离的堵塞,可以帮助诱导自动化,即使在低得多的流速下也是如此。另外,汽缸区域的百分比(即堵塞比)是一个重要的控制参数,可用于操纵气缸的旋转速度。这种现象可用于产生功率,通过适当的修改我们的设置。我们的机构偏离了传统的风力和水力发电机,通过考虑汽缸及其作为涡轮机的修改来偏离使用刀片涡轮机。这种设计易于制造和控制,如我们实验中所示。通过引入涡轮机上游的控制体引起的自动化被示出了在我们的设置中增加了功率,高达400%。

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