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Analysis of electromotive force characteristics and device implementation for ferrofluid based energy harvesting system

机译:基于铁磁流体的能量收集系统的电动势特性分析和装置实现

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This paper investigates the concept and implementation of an energy harvesting device using a ferrofluid sloshing movement to generate an electromotive force (EMF). Ferrofluids are often applied to energy harvesting devices because they have both magnetic properties and fluidity, and they behave similarly to a soft ferromagnetic substance. In addition, a ferrofluid can change its shape freely and generate an EMF from small vibrations. The existing energy harvesting techniques, for example those using piezoelectric and thermoelectric devices, generate minimal electric power, as low as a few micro-watts. Through flow analysis of ferrofluids and examination of the magnetic circuit characteristics of the resultant electromagnetic system, an energy harvester model based on an electromagnetic field generated by a ferrofluid is developed and proposed. The feasibility of the proposed scheme is demonstrated and its EMF characteristics are discussed based on experimental data.
机译:本文研究了利用铁磁流体晃动运动产生电动势(EMF)的能量收集装置的概念和实现。铁磁流体由于具有磁性和流动性,并且与软铁磁物质的行为相似,因此经常应用于能量收集设备。此外,铁磁流体可以自由改变其形状,并通过微小的振动产生电动势。现有的能量收集技术,例如那些使用压电和热电设备的能量收集技术,产生的电能很少,低至几微瓦。通过对铁磁流体进行流动分析并检查所得电磁系统的磁路特性,开发并提出了一种基于铁磁流体产生的电磁场的能量收集器模型。通过实验数据证明了该方案的可行性,并讨论了其EMF特性。

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