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Numerical Calculation of Geoelectric Fields That Affect Critical Infrastructure

机译:影响关键基础设施的地电场的数值计算

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One of the modern applications of geomagnetism is determining the effect of geomagnetic disturbances on critical infrastructure such as power systems and pipelines. Assessing the geomagnetic hazard to such systems requires calculation of the geoelectric fields produced during geomagnetic disturbances. Such geoelectric fields can then be used as input to system models to calculate the impact on the system. This paper describes what is involved in calculating the geoelectric fields produced during real geomagnetic disturbances. The theory of geomagnetic induction is presented and used to derive the Earth transfer function relating the geoelectric and geomagnetic field variations at the Earth’s surface. It is then shown how this can be used to make practical calculations of the geoelectric fields and how the calculation process can be verified by comparison with analytic solutions obtained with synthetic geomagnetic variation data. The accuracy of the calculated geoelectric fields for geomagnetic risk assessments is limited, not by the accuracy of the calculation methods, but by the availability of geomagnetic field measurements and Earth conductivity information over the whole extent of the affected infrastructure.
机译:地磁的现代应用之一是确定地磁干扰对关键基础设施(如电力系统和管道)的影响。评估此类系统的地磁危害需要计算在地磁干扰期间产生的地电场。然后可以将此类地电场用作系统模型的输入,以计算对系统的影响。本文介绍了计算实际地磁干扰过程中产生的地电场所涉及的内容。提出了地磁感应理论,并将其用于推导与地球表面的地电场和地磁场变化有关的地球传递函数。然后说明如何将其用于实际计算地电场,以及如何通过与合成地磁变化数据获得的解析解进行比较来验证计算过程。计算出来的用于地磁风险评估的地电场的准确性不仅受到计算方法的准确性的限制,而且还受到地磁场在整个受影响基础设施范围内的测量和地球电导率信息的限制。

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