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Annual variations in the electromagnetic field of the earth and electrical conductivity of the geological environment

机译:地球电磁场和地质环境电导率的年度变化

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摘要

Synchronous annual variations in the geoelectric and geomagnetic field are studied on the basis of long-term electromagnetic monitoring. It is shown that the annual geoelectric variations have intraterrestrial origin and are not related to the annual geomagnetic variations. Temporal variations in the magnetotelluric impedance and magnetic tipper, which characterize the electrical conductivity of the geological environment, are analyzed. It is established that annual variations in the magnetotelluric impedance mainly describe the variations in the electrical conductivity of surface crustal layers and are less sensitive to the deep electrical conductivity of the Earth. The annual variations in the imaginary magnetic tipper at the periods of 1000-3000 s probably reflect the changes in conductivity of a deep transversal low-resistive zone (the fault). It is suggested that annual variations in the geoelectrical and geomagnetic fields, as well as in the electrical conductivity of the geological environment, arise as a response to the changes in the geodynamical processes caused by the revolution of the Earth around the Sun.
机译:在长期电磁监测的基础上,研究了地电场和地磁场的年同步变化。结果表明,年度地电变化具有地面内起源,与年度地磁变化无关。分析了大地电磁阻抗和磁性自卸车的时间变化,这些变化表征了地质环境的电导率。可以确定的是,大地电磁阻抗的年度变化主要描述了地壳表层电导率的变化,并且对地球的深层电导率不那么敏感。假想的自卸车在1000-3000 s内的年度变化可能反映了深部横向低阻区(断层)的电导率变化。有人提出,地球电场和地磁场以及地质环境电导率的年度变化是对地球绕太阳公转引起的地球动力学过程变化的反应。

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