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Performance enhancement of wind energy harvester utilizing wake flow induced by double upstream flat-plates

机译:利用双上游平板引起的尾流提高风能采集器的性能

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Small-scale wind energy harvesting system is being considered to provide green long-term electric power to unattended sensor network nodes which are widely used in urban and natural environments. This paper proposes that placing a double-plate structure upstream of the bluff body in the wind energy harvesting system can significantly improve the output performance. At a certain wind speed, two wake flow zones with low-pressure are formed behind two upstream side-by-side plates, which induced the bluff body at the downstream intermediate position to deviate to both sides. Even at a low wind speed, the vibration of bluff body can still occur because the pressure fluctuation of the wake zone disturb the static equilibrium. Placing the double plates upstream of a wind energy harvester with a cylinder can change the vibration response from VIV (vortex-induced vibration) to galloping. Moreover, when the ratios of the horizontal and vertical distances to the windward width of the cylinder are 1 and 0.5, respectively, the cut-in wind speed is as low as 1.5 m/s. For the galloping-based wind energy harvester with a square prism, after the double plates are placed upstream, the cut-in wind speed decreases from 3.5 m/s to 1 m/s and the output voltage increases from 1 V to 12 V at 1.5 m/s. The increase of voltage caused by the addition of double plates to the upstream of six different bluff bodies indicates the good adaptability of this structure. The higher voltage output capability by this method at low wind speed significantly expands the application scope of wind energy harvesters.
机译:人们正在考虑使用小型风能收集系统,向无人值守的传感器网络节点提供绿色的长期电力,该节点广泛用于城市和自然环境。本文提出,在风能收集系统中,在阻流体的上游放置一个双板结构可以显着提高输出性能。在一定的风速下,在两个上游并排板的后面形成了两个低压尾流区,这导致下游中间位置的钝体向两侧偏斜。即使在低风速下,由于尾流区的压力波动也会干扰静平衡,因此仍然会发生钝体的振动。将双板放置在带有圆柱体的风能采集器的上游可以将振动响应从VIV(涡流引起的振动)改变为奔腾。而且,当水平距离和垂直距离与圆柱体的迎风宽度之比分别为1和0.5时,切入风速低至1.5m / s。对于带有方形棱镜的基于疾驰的风能采集器,在将双板放置在上游之后,切入风速从3.5 m / s降低到1 m / s,输出电压从1 V升高到12 V 1.5 m /秒在六个不同的钝体的上游增加双板会导致电压升高,表明这种结构具有良好的适应性。这种方法在低风速下具有较高的电压输出能力,大大扩展了风能采集器的应用范围。

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