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Hotspot: The Snake River Geothermal Drilling Project--Initial Report

Shervais, J. W.; Nielson, D.; Evans, J. P.; Lachmar, T.; Christiansen, E. H.; Morgan, L.; Shanks, W. C. P.; Delahunty, C.; Schmitt, D. R.; Liberty, L. M.; Blackwell, D. D.; Glen, J. M.; Kessler, J. A.; Potter, K. E.; Jean, M. M.; Sant, C. J.; Freeman, T.

Key words
Snake River Plain; basalt; rhyolite; hotspot; Idaho; exploration
Location
Snake River; Kimama, Idaho; Kimberly, Idaho; Mountain Home, Idaho
Conference
Geothermal Resources Council Transactions
Year
2012
Session
Exploration; Core sampling; Lithology; Geological surveys; W
Language
English

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Abstract

The Snake River volcanic province (SRP) overlies a thermal anomaly that extends deep into the mantle; it represents one of the highest heat flow provinces in North America. The primary goal of this project is to evaluate geothermal potential in three distinct settings: (1) Kimama site: inferred high sub-aquifer geothermal gradient associated with the intrusion of mafic magmas, (2) Kimberly site: a valley-margin setting where surface heat flow may be driven by the up-flow of hot fluids along buried caldera ringfault complexes, and (3) Mountain Home site: a more traditional fault-bounded basin with thick sedimentary cover. The Kimama hole, on the axial volcanic zone, penetrated 1912 m of basalt with minor intercalated sediment; no rhyolite basement was encountered. Temperatures are isothermal through the aquifer (to 960 m), then rise steeply on a super-conductive gradient to an estimated bottom hole temperature of ~98°C. The Kimberly hole is on the inferred margin of a buried rhyolite eruptive center, penetrated rhyolite with intercalated basalt and sediment to a TD of 1958 m. Temperatures are isothermal at 55-60°C below 400 m, suggesting an immense passive geothermal resource. The Mountain Home hole is located above the margin of a buried gravity high in the western SRP. It penetrates a thick section of basalt and lacustrine sediment overlying altered basalt flows, hyaloclastites, and volcanic sediments, with a TD of 1821 m. Artesian flow of geothermal water from 1745 m depth documents a power-grade resource that is now being explored in more detail. In-depth studies continue at all three sites, complemented by high-resolution gravity, magnetic, and seismic surveys, and by downhole geophysical logging.

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