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Electrical conductivity of old oceanic mantle in the northwestern Pacific I: 1-D profiles suggesting differences in thermal structure not predictable from a plate cooling model

机译:西北太平洋老海幔的电导率I:一维剖面表明热结构差异无法通过板块冷却模型预测

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摘要

Seafloor magnetotelluric (MT) experiments were recently conducted in two areas of the northwestern Pacific to investigate the nature of the old oceanic upper mantle. The areas are far from any tectonic activity, and "normal" mantle structure is therefore expected. The data were carefully analyzed to reduce the effects of coastlines and seafloor topographic changes, which are significant boundaries in electrical conductivity and thus distort seafloor MT data. An isotropic, one-dimensional electrical conductivity profile was estimated for each area. The profiles were compared with those obtained from two previous study areas in the northwestern Pacific. Between the four profiles, significant differences were observed in the thickness of the resistive layer beyond expectations based on cooling of homogeneous oceanic lithosphere over time. This surprising feature is now further clarified from what was suggested in a previous study. To explain the observed spatial variation, dynamic processes must be introduced, such as influence of the plume associated with the formation of the Shatsky Rise, or spatially non-uniform, small-scale convection in the asthenosphere. There is significant room of further investigation to determine a reasonable and comprehensive interpretation of the lithosphere-asthenosphere system beneath the northwestern Pacific. The present results demonstrate that electrical conductivity provides key information for such investigation.
机译:最近在西北太平洋的两个地区进行了海底大地电磁(MT)实验,以研究古老的大洋上地幔的性质。该地区远非任何构造活动,因此可以预期“正常”地幔结构。对数据进行了仔细分析,以减少海岸线和海底地形变化的影响,这是电导率的重要边界,因此会扭曲海底MT数据。估计每个区域的各向同性一维电导率分布。将这些剖面与从西北太平洋先前两个研究区域获得的剖面进行了比较。在这四个剖面之间,观察到电阻层厚度的显着差异超出了基于均匀海洋岩石圈随时间冷却的预期。现在,从先前的研究中可以进一步阐明这一令人惊讶的功能。为了解释观测到的空间变化,必须引入动态过程,例如与Shatsky Rise形成相关的羽流的影响,或软流圈中空间上不均匀的小尺度对流。为了确定对西北太平洋下方岩石圈-软流圈系统的合理而全面的解释,还有大量的进一步研究的空间。目前的结果表明,电导率为此类研究提供了关键信息。

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