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An Energy-Harvesting Power Supply for Underwater Bridge Scour Monitoring Sensors

机译:水下桥梁冲刷监测传感器的能量收集电源

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The natural force of scouring has become one of the most critical risk endangering the endurance of bridges, thus leading to the necessity of deploying underwater monitoring sensors to actively detect potential scour holes under bridges. Due to the difficulty in re-charging batteries for underwater sensors, super capacitors with energy harvesting (EH) means are exploited to prolong the sustainability of underwater sensors. In this paper, an energy harvesting power supply based on a helical turbine is proposed to power underwater monitoring sensors. A small helical turbine is designed to convert water flow energy to electrical energy with favorable environmental robustness. A 3-inch diameter, 2.5-inch length and 3-bladed helical turbine was designed with two types of waterproof coupling with the sensor housing. Both designs were prototyped and tested under different flow conditions and we get valid voltage around 0.91 V which is enough to power monitoring sensor. The alternating current (AC) electrical energy generated by the helical turbine is then rectified and boosted to drive a DC charger for efficiently charging one super capacitor. The charging circuit was designed, prototyped and tested thoroughly with the helical turbine harvester. The results were promising, that the overall power supply can power an underwater sensor node with wireless transceivers for long-term operations.
机译:冲刷的自然力已成为危害桥梁耐久性的最关键风险之一,因此需要部署水下监测传感器来主动检测桥梁下方的冲刷孔。由于难以为水下传感器的电池充电,因此开发了具有能量收集(EH)装置的超级电容器来延长水下传感器的可持续性。本文提出了一种基于螺旋涡轮机的能量采集电源,为水下监测传感器供电。小型螺旋涡轮机设计用于将水流能转换为电能,并具有良好的环境稳定性。设计了直径为3英寸,长度为2.5英寸,3叶片的螺旋涡轮机,并与传感器外壳进行了两种类型的防水连接。两种设计均在不同的流量条件下进行了原型设计和测试,我们获得了约0.91 V的有效电压,足以为监控传感器供电。然后,对由螺旋涡轮机产生的交流(AC)电能进行整流和升压,以驱动直流充电器,以有效地为一个超级电容器充电。使用螺旋涡轮收割机对充电电路进行了设计,原型设计和测试。结果令人鼓舞,整个电源可以通过无线收发器为水下传感器节点供电,以实现长期运行。

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