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Study of the efficiency of electrical generator using ferromagnetic powders by electromagnetic analysis

机译:电磁分析法研究铁磁粉发电机的效率

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Batteries or electric wires are currently in wide use for sensor energy supply. However, industrial waste caused by battery disposal are recognized as a social issue. In addition, the weight of the electric wires supplying electric energy to sensors can reach several kilograms in a car or several hundred kilograms in a passenger aircraft. Thus, reduction of electric wire weight can bring weight saving for a car or a plane. We performed a basic study of development of generation system using ferromagnetic powders and fluid. Such an electrical generator is inexpensive, uses kinetic energy naturally available in the living environment such as wave force, vibration, or shock, is maintenance-free and safe. Magnetic field of a permanent magnet is used in the electrical generator using ferromagnetic powders, that significantly contributes to generation. Electromagnetic fluid simulation and liquid metal magnetohydrodynamic power generation considering dynamic behavior of magnetic particles in magnetic field was studied before. However, electromagnetic analysis for magnetic particle in magnetic field for energy harvesting purposes is not studied. Therefore, in this work, we performed electromagnetic analysis using a general-purpose finite element simulation program and studied the efficiency of the electrical generator using ferromagnetic powders. We were able to assess generation efficiency by analyzing the magnetic flux distribution of the permanent magnet used for electricity generation.
机译:当前,电池或电线被广泛用于传感器的能量供应。然而,由电池处理引起的工业废物被认为是社会问题。另外,向传感器提供电能的电线的重量在汽车中可能达到几公斤,在客机中可能达到几百公斤。因此,电线重量的减轻可以带来汽车或飞机的重量减轻。我们对使用铁磁粉末和流体的发电系统的开发进行了基础研究。这样的发电机是廉价的,使用在生活环境中自然可用的动能,例如波浪力,振动或冲击,是免维护且安全的。永磁体的磁场在使用铁磁粉末的发电机中使用,这大大有助于发电。以前研究了考虑流体中磁性粒子动力学行为的电磁流体模拟和液态金属磁流体动力发电。然而,没有研究用于磁场中的磁性粒子的电磁分析以用于能量收集的目的。因此,在这项工作中,我们使用通用的有限元模拟程序进行了电磁分析,并研究了使用铁磁粉末的发电机的效率。通过分析用于发电的永磁体的磁通量分布,我们能够评估发电效率。

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