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Regional conductivity structure of Cascadia: Preliminary results from 3D inversion of USArray transportable array magnetotelluric data

机译:卡斯卡迪亚的区域电导率结构:USArray可移动阵列大地电磁数据的3D反演的初步结果

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摘要

In conjunction with the USArray component of EarthScope, long period magnetotelluric (MT) data are being acquired in a series of arrays across the continental US. Initial deployments in 2006 and 2007 acquired data (10-10,000 s) at 110 sites covering the US Pacific Northwest, distributed with the same nominal spacing as the USArray seismic transportable array (similar to 75 km). The most striking and robust features revealed by initial three-dimensional inversion of this dataset are extensive areas of high conductivity in the lower crust beneath all of southeastern Oregon, and beneath the Cascade Mountains, contrasting with very resistive crust in Siletzia and the Columbia Embayment. Significant variations in upper mantle conductivity are also revealed by the inversions, with the most conductive mantle beneath the Washington backarc, and the most resistive corresponding to subducting oceanic mantle. Citation: Patro, P. K., and G. D. Egbert (2008), Regional conductivity structure of Cascadia: Preliminary results from 3D inversion of USArray transportable array magnetotelluric date, Geophys. Res. Lett., L20311, doi: 10.1029/2008GL035326.
机译:结合EarthScope的USArray组件,正在整个美国大陆范围内的一系列阵列中获取长期大地电磁(MT)数据。 2006年和2007年的初始部署在覆盖美国太平洋西北地区的110个站点上采集了数据(10-10,000 s),其标称间距与USArray地震可移动阵列(大约75 km)相同。该数据集最初的三维反演揭示的最显着和最强劲的特征是,在俄勒冈州东南部所有地区和喀斯喀特山脉下方的下部地壳中具有高电导率的广阔区域,与Siletzia和Columbia Embayment中的电阻性地壳形成鲜明对比。反演也揭示了上地幔电导率的显着变化,其中导电性最强的地幔位于华盛顿后弧之下,而电阻最大的则对应于俯冲的海洋地幔。引用:Patro,P. K.和G. D. Egbert(2008),卡斯卡迪亚的区域电导率结构:USArray可移动阵列大地电磁日期的3D反演的初步结果,Geophys。 Res。 Lett。,L20311,doi:10.1029 / 2008GL035326。

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