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Energy harvesting from atmospheric variations - Theory and test

机译:来自大气变化的能量收集-理论与测试

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摘要

The last two decades have offered a dramatic rise in the use of digital technologies such as wireless sensor networks that require small isolated power supplies. Energy harvesting, a method to gather energy from ambient sources including sunlight, vibrations, heat, etc., has provided some success in powering these systems. One of the unexplored areas of energy harvesting is the use of atmospheric temperature variations to obtain usable energy. This paper investigates an innovative device to extract energy from atmospheric variations using ethyl chloride filled mechanical bellows. The apparatus consists of a bellows filled with ethyl chloride working against a spring in a closed and controlled environment. The bellows expand/contract depending upon the ambient temperature and the energy harvested is calculated as a function of the bellows' length. The experiments showed that 6 J of energy may be harvested for a 23 ℃ change in temperature. The numerical results closely correlated to the experimental data with a deviation of 1%. In regions with high diurnal temperature variation, such an apparatus may yield approximately 250 μW depending on the ambient temperature range.
机译:在过去的二十年中,数字技术的使用急剧增加,例如需要小型隔离电源的无线传感器网络。能量收集是一种从包括太阳光,振动,热等在内的环境中收集能量的方法,已经为这些系统提供了一定的动力。能量收集的未探索领域之一是利用大气温度变化来获得可用能量。本文研究了一种创新的设备,该设备可使用充满氯乙烯的机械波纹管从大气变化中提取能量。该设备由一个装有氯乙烯的波纹管组成,该波纹管在封闭和受控的环境中靠着弹簧工作。波纹管的膨胀/收缩取决于环境温度,并且所收集的能量根据波纹管的长度进行计算。实验表明,温度变化23℃可以收获6 J的能量。数值结果与实验数据紧密相关,偏差为1%。在昼夜温度变化大的区域中,这种设备可能会产生大约250μW的功率,具体取决于环境温度范围。

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