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Fluid coupling interfaces for hydraulic pressure energy harvesters

机译:液压能量收集器的液力偶合接口

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The need for wireless sensor networks that can run for long times without the need of battery replacement has risen the need for energy harvesters. Industrial environments have plenty of energy sources that can be harvested; pressure fluctuations are a high energy density source that can be harvested using piezoelectric devices. Present devices have introduced flat metallic plates as the main force transmission elements for hydraulic fluctuations energy harvesters. In this paper, we analyze the force transmission efficiency of flat plates when used as the primary fluid coupling interface in hydraulic energy harvesters. Previous work has been focused on the optimization of circuit matching and pressure ripple amplification. In this work, we offer a look into the efficiencies of flat plates in different configurations and pressure loads. The analysis shows that despite the reasonable force transmission efficiency of flat plates in low-pressure environments, the overall efficiency of hydraulic energy harvesters can be improved if instead of flat plates, conventional hydraulic actuators, such as piston cylinders, could be used.
机译:对于可以长时间运行而不需要更换电池的无线传感器网络的需求,已经增加了对能量收集器的需求。工业环境中有大量可以收集的能源。压力波动是一种高能量密度源,可以使用压电设备进行采集。当前的设备已经引入了平坦的金属板作为用于液压波动能量收集器的主要力传递元件。在本文中,我们分析了平板用作液压能量收集器的主要流体耦合接口时的传力效率。先前的工作集中在优化电路匹配和压力纹波放大上。在这项工作中,我们将介绍不同配置和压力负载下平板的效率。分析表明,尽管在低压环境下平板具有合理的传力效率,但如果可以代替平板使用常规液压执行器(例如活塞缸),则可以提高液压能量收集器的整体效率。

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