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Radiated radio-frequency hazards with electric detonators: Influence of wiring configuration, dipole vs V-antenna

机译:电雷管的辐射射频危险:接线配置,偶极与V天线的影响

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The safety of personnel is of a major concern when using and manipulating hotwire electric detonators. A lot of publications exist regarding the influence of electric fields on electric detonators. Most of them give safety distances in function of the E.I.R.P. (Equivalent Isotropic Radiated Power) taking into account several hypotheses, like the maximum electric fieldstrength in the presence of which the detonator is safe, related to the MNFS (Maximum No-Fire Stimulus) and the dipole configuration of the electric detonator wiring. To our knowledge all the standards and guides, military and civil, published up to now take as the worst case for wiring the dipole configuration (with the exception of loop and other antennas without further details). The present paper establishes that the worst case is rather when the wiring is arranged as a V-antenna with an aperture angle between the detonator wires of about 20¿¿. When the angle is close to about 20¿¿ the current in the hotwire is higher than in the dipole configuration and reduce the safety margin of demining personnel.
机译:人员的安全性在使用和操纵Hotwire电动雷管时的主要问题。关于电场对电动雷管的影响存在许多出版物。其中大多数是e.i.r.p的功能的安全距离。 (等同的各向同性辐射功率)考虑到几个假设,如在存在雷管在存在的情况下,与MNF(最大无火刺激)和电动雷管布线的偶极配置有关的最大电场经长。据了解所有标准和指南,军事和民用,发布到现在,作为接线偶极配置的最坏情况(循环和其他天线除外)。本文建立了最坏情况,而是当布线被布置为V-天线时,雷管线约20之间的孔径。当角度接近约20英寸时,热线中的电流高于偶极配置,降低排雷人员的安全余量。

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