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Magnetotelluric mapping of upper crustal isotherms beneath the Valles Caldera hydrothermal system

机译:Valles Caldera热液系统下的上地壳等温线的大地电磁测绘

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Magnetotelluric (MT) soundings across the western margin of the Valles Caldera hydrothermal system in New Mexico have revealed a striking correlation between depth of the electrically conductive portion of the upper crust and isotherms projected from deep geothermal test wells. The crust is highly resistive (approx > 1000 ohm-m) in the range of 2 to 4 km depth where temperatures of over 300 C have been logged in test wells. However, at greater depths the upper crust becomes increasingly conductive; in this range, the conductivity contours closely match the projected isotherms. The inferred geoelectric section was obtained by two-dimensional inversion after shallow three-dimensional distortion corrections were applied to the data. Inversions were constrained to depths as great as 4 km by borehole electric logs which highly compatible with the nearby MT soundings. Possible reasons for the positive correlation between the conductive depth patterns and the isotherms are: (1) fluid accumulation within the thermally controlled brittle-ductile transition and (2) a halo of conductive mineralization (e.g., connected sulfide films) surrounding a still cooling, shallow intrusive.

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