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The electric field in northern England and southern Scotland: implications for geomagnetically induced currents.

机译:英格兰北部和苏格兰南部的电场:对地磁感应电流的影响。

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摘要

Magnetotelluric (MT) data, in the form of MT tensors, are used to estimate directly the size and spatial distribution of the electric field in northern England and southern Scotland with the aim of predicting the flow of geomagnetically induced currents in power networks in the region. MT and Geomagnetic Deep Sounding data from a number of different field campaigns, at a period of 750 s, are employed. The MT data are cast in the form of telluric vectors which allow a joint hypothetical event analysis of both Geomagnetic Deep Sounding and MT data. This analysis reveals qualitatively the pervasive effects of electric field distortion in the region. Two approaches are taken to understand how the spatial structure of the regional electromagnetic field is affected by local distortions, and what the origin of these distortions might be. The dimensionality, and form of electric field distortion, of the MT tensors is investigated using the Weaver et al.udand Bahr classification schemes, and by examining the misfit of a galvanic distortion model as a function of rotation angle. At sites where the galvanic distortion model is found to be appropriate the regional MT tensors are recovered using tensor decomposition techniques. It is found that recovering the regional MT response reconciles the geometry of induced currents implied by the MT data with that of the Magnetic Variation anomalies. Lilley's (1993) central impedudances are used to calculate rotationally invariant effective telluric responses. In the Southern Uplands the magnitude of the effective telluric response is approximately 0.25-0.5 mV/km.nT, but as the Southern Uplands Fault is approached it rises steadily to 3 mV/km.nT. In the Midland Valley, the effective telluric response is approximately 0.5 mV/km.nT which rises steadily to 2.5 mV/km.nT as the Southern Uplands and Highland Boundary Faults are approached to the south-east and north-west respectively. Therefore, the increase in the magnitude of the effective telluric response correlates with the approach of a major tectonic boundary such as the Southern Uplands Fault. These results show that the induced electric field strength varies considerably throughout the central Scotland region. In addition, the Hypothetical Event Analysis indicates that due to lateral changes in conductivity structure the direction of the electric field deviates significantly from the regional direction implied by the polarisation azimuth of the primary geomagnetic induction. Therefore, any attempts to model the flow of geomagnetically induced currents in the region need to account for the spatial variation of both the magnitude and azimuth of the electric field.
机译:以MT张量的形式的大地电磁(MT)数据直接用于估计英格兰北部和苏格兰南部电场的大小和空间分布,目的是预测该地区电网中地磁感应电流的流动。使用了来自750秒的多个不同野外活动的MT和地磁深度探测数据。 MT数据以特有的向量的形式转换,从而可以对地磁深度探测和MT数据进行联合假设事件分析。该分析定性地揭示了该区域中电场畸变的普遍影响。采取两种方法来了解局部电磁场如何影响区域电磁场的空间结构,以及这些畸变的根源可能是什么。使用Weaver等人的 udand Bahr分类方案,并通过研究电扭曲模型的失配作为旋转角的函数,研究了MT张量的维数和电场畸变的形式。在发现电变形模型合适的位置,使用张量分解技术恢复局部MT张量。发现恢复区域MT响应可以将MT数据所隐含的感应电流的几何形状与磁变化异常的几何形状相协调。 Lilley(1993)的中心阻抗用于计算旋转不变的有效碲响应。在南部高地,有效碲响应的幅度约为0.25-0.5 mV / km.nT,但随着南部高地断裂的临近,其稳定增加至3 mV / km.nT。在米德兰谷地,有效的碲响应约为0.5 mV / km.nT,随着南部高地和高原边界断裂分别向东南和西北方向靠近,有效的碲响应逐渐上升到2.5 mV / km.nT。因此,有效碲响应幅度的增加与诸如南部高地断裂等主要构造边界的进近相关。这些结果表明,在整个苏格兰中部地区,感应电场强度变化很大。此外,假设事件分析表明,由于电导率结构的横向变化,电场的方向明显偏离了主要地磁感应极化方位所暗示的区域方向。因此,对区域中地磁感应电流的流动进行建模的任何尝试都必须考虑电场强度和方位角的空间变化。

著录项

  • 作者

    McKay Allan; Whaler K.A.;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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