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首页> 外文期刊>Journal of bridge engineering >Experimental Validation of Piezoelectric Energy-Harvesting Device for Built Infrastructure Applications
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Experimental Validation of Piezoelectric Energy-Harvesting Device for Built Infrastructure Applications

机译:建筑基础设施中压电能量收集装置的实验验证

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Vibration energy-harvesting devices are increasingly becoming more efficient and useful. The performance of such devices for energy harvesting from vibrations of civil infrastructure can be theoretically quantified, and energy harvesting under harmonic loadings can be validated experimentally. Experimental validation of such devices for civil infrastructure applications, such as bridges, remains an important but more complex and challenging issue, in part due to the more uncertain nature of the dynamic response of structures under operational conditions and problems with access for such testing. Lack of existing experimental benchmarks is also a major obstacle behind adopting this technology for bridges. This study presents a laboratory-based experimental procedure through which a piezoelectric energy harvester was experimentally verified for rail bridges in their operational condition with trains traversing them. A general experimental arrangement required for validating a piezoelectric cantilever energy-harvesting device is presented, along with the fabrication of a prototype device and detailed experimental setup. A model bridge undergoing loadings from an international train fleet was chosen, and the acceleration response from the bridge was used as the excitation source for the energy-harvesting device. Numerically estimated performances of the energy harvester were validated by experimentation for a range of trains. The method is applicable for validating energy harvesting from arbitrary vibrations of built infrastructure within the laboratory environment without the need of scaling. The device and related experimental procedure will serve as a benchmark for similar unscaled tests within a laboratory environment and can be useful for assessing devices or their applications in monitoring built infrastructure under realistic conditions without the need for deployment on site.
机译:振动能量收集装置正变得越来越有效和有用。可以从理论上量化此类设备从民用基础设施的振动中收集能量的性能,并且可以通过实验验证谐波负载下的能量收集。用于民用基础设施应用(例如桥梁)的此类设备的实验验证仍然是一个重要但更为复杂和具有挑战性的问题,部分原因是在操作条件下结构动态响应的不确定性以及此类测试的访问问题。缺乏现有的实验基准也是在桥梁中采用该技术的主要障碍。这项研究提出了一个基于实验室的实验程序,通过该程序,压电式能量收集器通过了铁路桥梁在运行条件下经过列车的实验验证。提出了验证压电悬臂能量收集装置所需的一般实验装置,以及原型装置的制造和详细的实验装置。选择了承受国际火车车队载荷的模型桥梁,并将桥梁的加速度响应用作能量收集装置的激励源。通过一系列火车的实验验证了能量采集器的数字估算性能。该方法适用于验证实验室环境中建筑基础设施的任意振动所产生的能量收集,而无需进行缩放。该设备和相关的实验程序将作为实验室环境中类似规模测试的基准,可用于评估设备或其在现实条件下监控已建基础架构中的应用,而无需现场部署。

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