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Analysis of induced current density in ellipsoidal human model exposed to concurrent ELF electric and magnetic fields with phase differences

机译:椭球人体模型在同时存在相位差的ELF电场和磁场作用下的感应电流密度分析

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In this paper, the characteristics of total current density in a homogeneous ellipsoidal human model exposed to 60 Hz electric and magnetic fields have been discussed in consideration of the phase difference between electric and magnetic fields. According to the calculated results using the values of 1kV/m electric field and 1/spl mu/T magnetic field, it is found considering the phase difference that the induced current densities in the ellipsoidal model are affected by the relationship between Bx and Ez, and are hardly affected by Bz. As a result, it is clear that the phase difference is a significant factor which affects the total induced current density in the ellipsoidal model.
机译:在本文中,考虑了电场和磁场之间的相位差,讨论了在均质椭圆形人体模型中暴露于60 Hz电场和磁场的总电流密度的特性。根据使用1kV / m电场和1 / spl mu / T磁场的计算结果,考虑到相差,椭圆模型中的感应电流密度受Bx和Ez之间关系的影响,而且几乎不受Bz的影响。结果,很明显,相位差是影响椭圆模型中总感应电流密度的重要因素。

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