Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona

The Tucson basin, Pima County, Arizona, is an alluvial aquifer partially recharged by underflow from bordering mountain ranges. Llountain-front recharge from Tanque Verde Canyon to the Tucson basin was analyzed to estimate the magnitude of underflow. Chemical, physical, and stable isotope analyses o...

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Main Author: Olson, Mark Caviño.
Other Authors: Davis, Stanley N.
Language:en
Published: The University of Arizona. 1982
Online Access:http://hdl.handle.net/10150/191768
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-1917682015-10-23T04:37:46Z Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona Olson, Mark Caviño. Davis, Stanley N. The Tucson basin, Pima County, Arizona, is an alluvial aquifer partially recharged by underflow from bordering mountain ranges. Llountain-front recharge from Tanque Verde Canyon to the Tucson basin was analyzed to estimate the magnitude of underflow. Chemical, physical, and stable isotope analyses of well and spring water were used to locate and qualitatively describe underflow along the Tanque Verde mountain front. Stratigraphie and structural data helped identify zones of recharge and describe the hydrologic system. Petrologic and stratigraphic data were used in geochemical correlations. Two distinct types of underflow were identified discharging from Tanque Verde Canyon. Mountain-front recharge of ground water in the alluvial aquifer of the Tucson basin occurs as subsurface flow through the unconsolidated sediments of ephemeral mountain-draining stream channels. The alluvial aquifer is also recharged by ground-water flow through the fractured bedrock of the mountain mass. Total recharge was found to be minimal. 1982 Thesis-Reproduction (electronic) text http://hdl.handle.net/10150/191768 212844049 en Copyright © is held by the author. Digital access to this material is made possible by the University Libraries, University of Arizona. Further transmission, reproduction or presentation (such as public display or performance) of protected items is prohibited except with permission of the author. The University of Arizona.
collection NDLTD
language en
sources NDLTD
description The Tucson basin, Pima County, Arizona, is an alluvial aquifer partially recharged by underflow from bordering mountain ranges. Llountain-front recharge from Tanque Verde Canyon to the Tucson basin was analyzed to estimate the magnitude of underflow. Chemical, physical, and stable isotope analyses of well and spring water were used to locate and qualitatively describe underflow along the Tanque Verde mountain front. Stratigraphie and structural data helped identify zones of recharge and describe the hydrologic system. Petrologic and stratigraphic data were used in geochemical correlations. Two distinct types of underflow were identified discharging from Tanque Verde Canyon. Mountain-front recharge of ground water in the alluvial aquifer of the Tucson basin occurs as subsurface flow through the unconsolidated sediments of ephemeral mountain-draining stream channels. The alluvial aquifer is also recharged by ground-water flow through the fractured bedrock of the mountain mass. Total recharge was found to be minimal.
author2 Davis, Stanley N.
author_facet Davis, Stanley N.
Olson, Mark Caviño.
author Olson, Mark Caviño.
spellingShingle Olson, Mark Caviño.
Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona
author_sort Olson, Mark Caviño.
title Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona
title_short Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona
title_full Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona
title_fullStr Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona
title_full_unstemmed Mountain-front recharge to the Tucson Basin from Tanque Verde Canyon, Arizona
title_sort mountain-front recharge to the tucson basin from tanque verde canyon, arizona
publisher The University of Arizona.
publishDate 1982
url http://hdl.handle.net/10150/191768
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