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Temperatures and Their Dependence on Groundwater Flow in Shallow Geothermal Systems

Chapman, David S.; Kilty, Kevin T.; Mase, Charles W.

Key words
Reservoir Engineering; Exploration; USA; Utah; Monroe Hot Springs; Model; Reservoir Models; Reservoir Evaluation; Hydrothermal; Temperature Gradient; Dipole
Location
Monroe Hot Springs, Utah
Conference
Geothermal Resources Council Transactions
Year
1978
Session
Hydrogeology; Reservoir modeling; Geophysical surveys; Tempe
Language
English

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Abstract

A conceptual model of a shallow geothermal system is characterized by groundwater percolating into a storage area, being heated and then discharging to the surface through a permeable conduit. The analysis of this system involved finite difference solutions to the equation of conductive and convective heat transfer with appropriate boundary conditions. Our model is successfully applied at Monroe Hot Springs, Utah where dipole-dipole resistivity, an ground magnetic surveys have effectively mapped the system an where eleven thermal gradient/heat flow boreholes provide temperature field is shown to be controlled by groundwater discharge through the Sevier fault zone.

Copyright 1978, Geothermal Resources Council. Readers who download papers from this site should honour the copyright of the original authors, and may not copy or distribute the work further without the permission of the original publisher.

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