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Modification of the Network-MT method and its first application in imaging the deep conductivity structure beneath the Kii Peninsula, southwestern Japan

机译:Network-MT方法的修改及其在对日本西南部纪伊半岛下方的深层电导率结构成像中的首次应用

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The Network-Magnetotelluric (NMT) method is well-suited for investigating deep and large-scale conductivity structure; however, application of the method is strongly dependent on the availability of telecommunication facilities (specifically, metallic transmission cables). To overcome the problem posed by the progressive replacement of metallic transmission cables with fiber cables, we developed a modified NMT (modified NMT) method consisting of purpose-built electrodes, making use of local metallic telecommunication lines, without a transmission cable. We first applied this modified NMT method over the Kii Peninsula, southwestern Japan, undertaking two-dimensional conductivity modeling along a transect across the central part of the peninsula. The model is characterized by a large (~20 km wide and depths of 10-60 km) and highly conductive (<10 Ω m) zone in the central part of the peninsula between the Conrad discontinuity and the upper surface of the Philippine Sea slab. This zone contains the hypocenters of many deep low-frequency tremors but regular earthquakes are rare. The zone also corresponds to a high-Vp/Vs area. The presence of fluid in the zone plays a key role in the absence of regular earthquakes, occurrence of deep low-frequency tremors, and elevated Vp/Vs values, as well as enhancing conductivity.
机译:网络-大地电磁法(NMT)非常适合研究深层和大型电导率结构。但是,该方法的应用在很大程度上取决于电信设施(特别是金属传输电缆)的可用性。为了克服用光纤电缆逐步替换金属传输电缆带来的问题,我们开发了一种改进的NMT(改进的NMT)方法,该方法由专用电极组成,利用本地金属电信线路,而没有传输电缆。我们首先在日本西南部的纪伊半岛上应用了这种改进的NMT方法,沿着横跨半岛中部的样条进行了二维电导率建模。该模型的特征是在康拉德间断面和菲律宾海平板上表面之间的半岛中央部分有一个较大的区域(宽约20 km,深度为10-60 km)和高导电性区域(<10Ωm)。 。该区域包含许多深部低频震颤的震源,但定期地震很少见。该区域也对应于高Vp / Vs区域。在没有定期地震,深部低频震颤,Vp / Vs值升高以及增强电导率的情况下,该区域中流体的存在起着关键作用。

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