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Performance Evaluation of Thermoelectric Energy Harvesting System on Operating Rolling Stock

机译:机车车辆热电能量采集系统的性能评估

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摘要

During rolling stock operation, various kinds of energy such as vibration, heat, and train-induced wind are dissipated. The amount of energy dissipation cannot be overlooked when a heavy railroad vehicle operates at high speed. Therefore, if the wasted energy is effectively harvested, it can be used to power components like low power sensor nodes. This study aims to review a method of collecting waste heat, caused by the axle bearing of bogie in a rolling stock. A thermoelectric module (TEM) was used to convert the temperature gradient between the surface of the axle bearing housing and the outdoor air into electric energy. In this study, the output performance by temperature difference in the TEM was lab-tested and maximized by computational fluid analysis of the cooling fins. The optimized thermoelectric energy harvesting system (TEHS) was designed and applied on a rolling stock to analyze the power-generating performance under operation. When the rolling stock was operated for approximately 57 min including an interval of maximum speed of 300 km/h, the maximum open circuit voltage was measured at approximately 0.4 V. Based on this study, the system is expected to be utilized as a self-powered independent monitoring system if applied to a low-power sensor node in the future.
机译:在机车车辆运行期间,会消散各种能量,例如振动,热量和火车产生的风。当重型铁路车辆高速运转时,能量的消耗量不容忽视。因此,如果有效地收集了浪费的能量,则可以将其用于为低功率传感器节点等组件供电。这项研究旨在回顾一种由机车转向架的轴瓦引起的废热收集方法。使用热电模块(TEM)将轴承箱表面与室外空气之间的温度梯度转换为电能。在这项研究中,通过TEM对温度差的输出性能进行了实验室测试,并通过对散热片的计算流体分析来使输出性能最大化。设计了优化的热电能量采集系统(TEHS),并将其应用到机车车辆上,以分析运行中的发电性能。当机车车辆运行了约57分钟(包括最大速度间隔为300 km / h)时,测得的最大开路电压约为0.4V。根据这项研究,该系统有望用作自供电的独立监控系统,如果将来应用于低功率传感器节点。

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