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Conversion of atmospheric variations into electric power - Design and analysis of an electric power generator system

机译:大气变化转化为电能-发电机系统的设计与分析

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Given its abundant availability, ambient thermal energy harvesting has the potential to power standalone microelectronic systems. The challenge in efficiently harvesting temperature and pressure variations is the low thermal to electric conversion ability of current harvesters. Most thermal harvesters require high temperature gradients. This paper presents the design, analysis, and implementation of an energy harvesting system that effectively harnesses naturally occurring temperature variations using ethyl chloride filled mechanical bellows. A mechanical drivetrain scales the bellows displacement and a coil spring stores the potential energy. This energy is periodically released and converted into useable electric power by a DC generator. A series of mathematical models are developed and accompanying numerical analyses completed on the harvester system. For a low frequency sinusoidal temperature cycle of +/- 1 degrees C about 22 degrees C, 9.6 mW of electrical power was produced using a 1.5 V micro DC generator for a 24 h harvesting period. The power generation capacity of the proposed harvester is sufficient to indefinitely operate low power sensors and microelectronics in environments with small temperature gradients. (C) 2018 Elsevier Ltd. All rights reserved.
机译:鉴于其丰富的可用性,环境热能收集有潜力为独立的微电子系统提供动力。有效收集温度和压力变化的挑战是电流收集器的低热电转换能力。大多数热收集器都需要高温梯度。本文介绍了一种能量收集系统的设计,分析和实现,该系统可以使用填充有氯的机械波纹管有效地利用自然发生的温度变化。机械传动系统可缩放波纹管的位移,而螺旋弹簧则存储势能。该能量被周期性地释放,并通过直流发电机转换为可用的电能。开发了一系列数学模型,并在收割机系统上完成了数值分析。对于+/- 1摄氏度(约22摄氏度)的低频正弦温度循环,使用1.5 V微型DC发生器在24小时的收获期内产生了9.6 mW的电功率。所提出的收割机的发电能力足以在温度梯度较小的环境中无限期地运行低功率传感器和微电子设备。 (C)2018 Elsevier Ltd.保留所有权利。

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