Electromagnetic radiation from VDT units: study of the effectiveness of an active shielding device.

R Sisto, S Casciardi, C Giliberti, A Moleti
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引用次数: 3

Abstract

Measurements of extremely low frequency electromagnetic fields and low frequency magnetic fields emitted by a set of video display terminal (VDT) units are reported. The field values measured at the position normally occupied by the user are below the safety limits. This is because the field amplitudes decrease rapidly (following a 1/R3 law) with the distance from the source, as has been verified in this work. Measurements with a commercial shielding device consisting of small plastic balls filled with a water solution of rare earth elements were also performed. The only physical mechanism that could be hypothesized to produce an active suppression of the VDT field is that rare earth atoms, which probably were chosen due to their large magnetic moment, behave as oscillating magnetic dipoles capable of emitting a secondary magnetic field that, along some particular directions, has a phase that is opposite to that of the exciting field. Unfortunately, if one analyzes this mechanism quantitatively, it is easy to show that the secondary magnetic field is absolutely negligible, as was confirmed by experimental measurements performed in this study.

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VDT装置的电磁辐射:有源屏蔽装置有效性的研究。
本文报道了一组视频显示终端(VDT)单元发出的极低频电磁场和低频磁场的测量。在用户通常占用的位置测量的场强值低于安全限值。这是因为磁场振幅随着距离源的距离而迅速减小(遵循1/R3定律),这在本工作中得到了验证。用一种商用屏蔽装置进行测量,该屏蔽装置由装满稀土元素水溶液的小塑料球组成。唯一可以假设产生VDT场主动抑制的物理机制是稀土原子,可能是由于它们的大磁矩而被选中的,表现为振荡磁偶极子,能够发射次级磁场,沿着某些特定方向,具有与激发场相反的相位。不幸的是,如果定量地分析这一机制,很容易表明二次磁场是绝对可以忽略不计的,正如本研究中进行的实验测量所证实的那样。
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