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首页> 外文期刊>Annales Geophysicae >Earth conductivity structures and their effects on geomagnetic induction in pipelines
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Earth conductivity structures and their effects on geomagnetic induction in pipelines

机译:地电导率结构及其对管道中地磁感应的影响

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Anomalous, large pipe-to-soil potentials (PSP) have been observed along a natural gas pipeline in eastern Ontario, Canada, where there is a major geological contact between the highly resistive rocks of the Precambrian Shield to the west and the more conductive Paleozoic sediments to the east. This study tested the hypothesis that large variations of PSP are related to lateral changes of Earth conductivity under the pipeline. Concurrent and co-located PSP and magne-totelluric (MT) geophysical data were acquired in the study area. Results from the MT survey were used to model PSP variations based on distributed-source transmission line theory, using a spatially-variant surface geoelectric field. Different models were built to investigate the impact of different subsurface features. Good agreement between modelled and observed PSP was reached when impedance peaks related to major changes of subsurface geological conditions were included. The large PSP could therefore be attributed to the presence of resistive intrusive bodies in the upper crust and/or boundaries between tectonic terranes. This study demonstrated that combined PSP-MT investigations are a useful tool in the identification of potential hazards caused by ge-omagnetically induced currents in pipelines.
机译:在加拿大安大略省东部的天然气管道上已观察到异常的大型管道到土壤的电势(PSP),该地区西部的前寒武纪盾构的高电阻岩石与更具导电性的古生界之间存在着重要的地质接触沉积物向东。这项研究检验了以下假设:PSP的较大变化与管道下的土壤电导率的横向变化有关。在研究区域内同时获取并置的PSP和镁地球物理(MT)地球物理数据。 MT调查的结果用于基于空间分布地表电场的分布式源传输线理论对PSP变化进行建模。建立了不同的模型来研究不同地下特征的影响。当包括与地下地质条件的重大变化有关的阻抗峰值时,在建模和观测到的PSP之间达成了良好的一致性。因此,较大的PSP可以归因于上地壳和/或构造地层之间的边界中存在电阻侵入体。这项研究表明,PSP-MT的综合研究是确定管道中地磁感应电流所引起的潜在危害的有用工具。

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