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Ozark aquifer groundwater well point dataset, SIM3348

Dates

Publication Date
Start Date
2014-11-01
End Date
2015-01-31

Citation

Nottmeier, A.M., 2016, Regional potentiometric surface dataset of the Ozark aquifer in Arkansas, Kansas, Missouri, Oklahoma, November 2014 - January 2015: U.S. Geological Survey data release, http://dx.doi.org/10.5066/F74747XS.

Summary

This dataset shows the altitude at which the water level would have risen in tightly cased wells and represents conditions during the period from November 2014 through January 2015. Water levels were measured during this period to ensure that wells had adequate time to recover from previous summer pumping and prior to the start of the 2015 summer pumping season. Groundwater-level data from 178 wells cased completely in and open to the Ozark aquifer are available from the USGS National Water Information System (NWIS; data available at http://water.data.usgs.gov/nwis). Groundwater wells were determined to be completed within Ozark aquifer geologic units by evaluating lithology from geophysical logs, groundwater driller logs, total depth, [...]

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Shapefile: Ozarkaquifer_wells.zip
Ozarkaquifer_wells.cpg 5 Bytes
Ozarkaquifer_wells.dbf 255.07 KB
Ozarkaquifer_wells.prj 480 Bytes
Ozarkaquifer_wells.sbn 1.88 KB
Ozarkaquifer_wells.sbx 252 Bytes
Ozarkaquifer_wells.shp 4.96 KB
Ozarkaquifer_wells.shp.IGSKEACWLT7AMN.10636.8252.sr.lock 0 Bytes
Ozarkaquifer_wells.shx 1.49 KB

Purpose

Groundwater-level measurements were used in the construction of a regional potentiometric surface of the Ozark aquifer representing synoptic conditions from November 2014 through January 2015. The regional potentiometric-surface mapping is part of the U.S. Geological Survey (USGS) Groundwater Resources Program initiative (http://water.usgs.gov/ogw/gwrp/activities/regional.html) and the Ozark system groundwater availability project (http://ar.water.usgs.gov/ozarks), which seeks to quantify current groundwater resources, evaluate changes in these resources over time, and provide the information needed to simulate system response to future human-related and environmental stresses.

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ScienceBase WMS

ScienceBase WFS

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  • USGS Lower Mississippi-Gulf Water Science Center

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