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Magnetic and Electric Fields Produced in the Sea During Geomagnetic Disturbances

机译:地磁干扰期间海洋中产生的磁场和电场

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摘要

— To understand geomagnetic effects on systems with long conductors it is necessary to know the electric field those systems experience. For surface conductors such as power systems and pipelines this can easily be calculated from the magnetic field variations at the surface using the surface impedance of the earth. However, for calculating the electric fields in pipelines and submarine cables at the seafloor it is necessary to take account of the attenuating effect of the conducting seawater. Assuming that the fields are vertically propagating plane waves, we derive the transfer functions between the electric and magnetic fields at the seafloor and the magnetic field variations at the sea surface. These transfer functions are then used, with surface magnetic field data, to determine the power spectra of the seafloor magnetic and electric fields in a shallow sea (depth 100 m) and in the deep ocean (depth 5 km) for different values of the Kp magnetic activity index . For the period range considered (2 min to 3 hrs) the spectral characteristics of the seafloor magnetic and electric fields for a 100 m deep sea are very similar to those of the surface fields. For the deep ocean the seafloor spectra show a faster decrease in spectral density with increasing frequency compared to the surface fields. The results obtained are shown to be consistent with seafloor observations. Assessment of the seafloor electric fields produced by different levels of geomagnetic activity can be useful in the design of the power feed equipment for submarine cables and cathodic protection for undersea pipelines.
机译:—要了解长导体系统上的地磁效应,有必要了解这些系统所经历的电场。对于诸如电力系统和管道之类的表面导体,可以使用地球的表面阻抗从表面的磁场变化轻松计算得出。但是,为了计算海底管道和海底电缆中的电场,必须考虑到导电海水的衰减作用。假设这些场是垂直传播的平面波,我们得出海底电场与磁场之间以及海面磁场变化之间的传递函数。然后将这些传递函数与表面磁场数据一起用于确定Kp值不同的浅海(深度100 m)和深海(深度5 km)中海底磁场和电场的功率谱磁活动指数。对于所考虑的时间段(2分钟至3小时),对于100 m深海来说,海底磁场和电场的光谱特性与表面场的光谱特性非常相似。与深海场相比,深海海底光谱显示频谱密度随频率增加而更快地下降。结果表明,所获得的结果与海底观测结果一致。评估由不同程度的地磁活动产生的海底电场,对于设计海底电缆的供电设备和海底管道的阴极保护很有用。

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