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Streamflow, Groundwater, and Lakes

Continuous and discrete surface-water, groundwater, and water-quality data are collected to provide long-term hydrologic records critical to investigating hydrology, modeling climate-change, evaluating natural and anthropogenic changes in the hydrologic regime, and providing information on water availability to water managers.

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Assessing drought resilience of the South Loup River using age tracer, streamflow, and continuous water-quality data

Streams in the Loup River basin have a close hydrologic connection between groundwater and surface water. Groundwater springs are important hydrologic features that sustain the flow of the South Loup River. This study assesses the ability of these springs to maintain consistent flow of the South Loup River over periods of prolonged drought.
Assessing drought resilience of the South Loup River using age tracer, streamflow, and continuous water-quality data

Assessing drought resilience of the South Loup River using age tracer, streamflow, and continuous water-quality data

Streams in the Loup River basin have a close hydrologic connection between groundwater and surface water. Groundwater springs are important hydrologic features that sustain the flow of the South Loup River. This study assesses the ability of these springs to maintain consistent flow of the South Loup River over periods of prolonged drought.
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Interpretation of hydrogeological data in Bazile Groundwater Management Area: A case demonstration of the Nebraska Geocloud

Nitrate, age tracer, and continuous groundwater-level data within the BGMA were interpreted in conjunction with AEM data as a case demonstration of the Nebraska Geocloud. The Nebraska Geocloud was initiated to protect taxpayer investments in AEM data collection and realize maximum benefit of these data by creating a publicly available, online digital database for long-term data storage. The Lower...
Interpretation of hydrogeological data in Bazile Groundwater Management Area: A case demonstration of the Nebraska Geocloud

Interpretation of hydrogeological data in Bazile Groundwater Management Area: A case demonstration of the Nebraska Geocloud

Nitrate, age tracer, and continuous groundwater-level data within the BGMA were interpreted in conjunction with AEM data as a case demonstration of the Nebraska Geocloud. The Nebraska Geocloud was initiated to protect taxpayer investments in AEM data collection and realize maximum benefit of these data by creating a publicly available, online digital database for long-term data storage. The Lower...
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Groundwater/surface-water interaction near the confluence of the Elkhorn and Lower Platte Rivers

Recent droughts in Nebraska (2000–06; 2012–13) have amplified concerns about the long-term sustainability of groundwater and surface-water resources as well as concerns about the effect of groundwater irrigation on streamflow and water supplies needed to meet wildlife, recreational, and municipal needs. The Lower Platte River Basin-wide Management Plan is currently being developed jointly by the...
Groundwater/surface-water interaction near the confluence of the Elkhorn and Lower Platte Rivers

Groundwater/surface-water interaction near the confluence of the Elkhorn and Lower Platte Rivers

Recent droughts in Nebraska (2000–06; 2012–13) have amplified concerns about the long-term sustainability of groundwater and surface-water resources as well as concerns about the effect of groundwater irrigation on streamflow and water supplies needed to meet wildlife, recreational, and municipal needs. The Lower Platte River Basin-wide Management Plan is currently being developed jointly by the...
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Continuous Water-Quality Monitoring Network

The USGS Nebraska Water Science Center maintains a network of continuous water-quality monitors across Nebraska which provide near-real-time water-quality data. Continuous water-quality monitors are typically installed at or near existing USGS stream gages or wells. Parameters that are monitored at continuous water-quality sites include water temperature, specific conductance, dissolved oxygen...
Continuous Water-Quality Monitoring Network

Continuous Water-Quality Monitoring Network

The USGS Nebraska Water Science Center maintains a network of continuous water-quality monitors across Nebraska which provide near-real-time water-quality data. Continuous water-quality monitors are typically installed at or near existing USGS stream gages or wells. Parameters that are monitored at continuous water-quality sites include water temperature, specific conductance, dissolved oxygen...
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High Plains Groundwater Availability Study

Water availability is a function of many factors, including the quantity and quality of water and the laws, regulations, economics, and environmental factors that control its use. The focus of the High Plains Groundwater Availability Study is on improving fundamental knowledge of the water balance of the basin, including the flows, storage, and water use by humans and the environment. An improved...
High Plains Groundwater Availability Study

High Plains Groundwater Availability Study

Water availability is a function of many factors, including the quantity and quality of water and the laws, regulations, economics, and environmental factors that control its use. The focus of the High Plains Groundwater Availability Study is on improving fundamental knowledge of the water balance of the basin, including the flows, storage, and water use by humans and the environment. An improved...
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High Plains Water-Level Monitoring Study

The High Plains aquifer underlies 111.8 million acres (about 175,000 square miles) in parts of eight States—Colorado, Kansas, Nebraska, New Mexico, Oklahoma, South Dakota, Texas, and Wyoming. In response to a directive from Congress, the U.S. Geological Survey (USGS), in cooperation with local, state, and federal entities, has collected water-level data from wells screened in the High Plains...
High Plains Water-Level Monitoring Study

High Plains Water-Level Monitoring Study

The High Plains aquifer underlies 111.8 million acres (about 175,000 square miles) in parts of eight States—Colorado, Kansas, Nebraska, New Mexico, Oklahoma, South Dakota, Texas, and Wyoming. In response to a directive from Congress, the U.S. Geological Survey (USGS), in cooperation with local, state, and federal entities, has collected water-level data from wells screened in the High Plains...
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Elkhorn-Loup Model

In the Elkhorn River and Loup River Basins, Natural Resources Districts (Upper Elkhorn, Lower Elkhorn, Upper Loup, Lower Loup, Middle Niobrara, Lower Niobrara, Lewis and Clark, and Lower Platte North) are collecting data and developing tools to assist with water resource planning. Critical planning issues in the Elkhorn River and Loup River basins are focused on the availability of the groundwater...
Elkhorn-Loup Model

Elkhorn-Loup Model

In the Elkhorn River and Loup River Basins, Natural Resources Districts (Upper Elkhorn, Lower Elkhorn, Upper Loup, Lower Loup, Middle Niobrara, Lower Niobrara, Lewis and Clark, and Lower Platte North) are collecting data and developing tools to assist with water resource planning. Critical planning issues in the Elkhorn River and Loup River basins are focused on the availability of the groundwater...
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Groundwater Quality and Age of Secondary Bedrock Aquifers, Eastern Nebraska

In eastern Nebraska, secondary aquifer systems are increasingly being considered to supplement growing municipal, domestic, and agricultural water demands. Within the Eastern Nebraska Water Resources Assessment (ENWRA) area, airborne geophysical surveys have mapped the thickness and extent of these aquifers over much of eastern Nebraska; however little is known about the age and quality of water...
Groundwater Quality and Age of Secondary Bedrock Aquifers, Eastern Nebraska

Groundwater Quality and Age of Secondary Bedrock Aquifers, Eastern Nebraska

In eastern Nebraska, secondary aquifer systems are increasingly being considered to supplement growing municipal, domestic, and agricultural water demands. Within the Eastern Nebraska Water Resources Assessment (ENWRA) area, airborne geophysical surveys have mapped the thickness and extent of these aquifers over much of eastern Nebraska; however little is known about the age and quality of water...
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Papio-Missouri River Natural Resources District Groundwater Quality Monitoring

The USGS Nebraska Water Science Center has been collecting groundwater quality samples in cooperation with the Papio-Missouri River Natural Resources District (NRD) since 1992 in support of the NRD's groundwater management plan. The basic geochemistry and age of the groundwater was established. Well waters are sampled yearly throughout the NRD to monitor the resource and assess concentrations of...
Papio-Missouri River Natural Resources District Groundwater Quality Monitoring

Papio-Missouri River Natural Resources District Groundwater Quality Monitoring

The USGS Nebraska Water Science Center has been collecting groundwater quality samples in cooperation with the Papio-Missouri River Natural Resources District (NRD) since 1992 in support of the NRD's groundwater management plan. The basic geochemistry and age of the groundwater was established. Well waters are sampled yearly throughout the NRD to monitor the resource and assess concentrations of...
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Flood Inundation Mapping

Flood inundation maps are a sequence of maps which show where flooding may occur at different stream levels. These maps can help communities prepare for, understand, and mitigate flood risks in their area.
Flood Inundation Mapping

Flood Inundation Mapping

Flood inundation maps are a sequence of maps which show where flooding may occur at different stream levels. These maps can help communities prepare for, understand, and mitigate flood risks in their area.
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Water Movement Through the Unsaturated Zone of the High Plains Aquifer in the Central Platte Natural Resources District, Nebraska

Eight unsaturated-zone research sites were installed in the Central Platte Natural Resources District as part of the High Plains Unsaturated-Zone Research Network. These 8 sites were installed to determine recharge and chemical transport rates in the unsaturated zone beneath important land-use settings and climate gradients across the Central Platte Natural Resources District.
Water Movement Through the Unsaturated Zone of the High Plains Aquifer in the Central Platte Natural Resources District, Nebraska

Water Movement Through the Unsaturated Zone of the High Plains Aquifer in the Central Platte Natural Resources District, Nebraska

Eight unsaturated-zone research sites were installed in the Central Platte Natural Resources District as part of the High Plains Unsaturated-Zone Research Network. These 8 sites were installed to determine recharge and chemical transport rates in the unsaturated zone beneath important land-use settings and climate gradients across the Central Platte Natural Resources District.
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Groundwater-Quality Monitoring near Ashland, Nebraska

Since 1991, the USGS Nebraska Water Science Center has collected water samples from six monitoring wells in the Platte River alluvial aquifer near Ashland. Analytes include major and trace metals, nutrients, dissolved organic carbon, pesticides and their degradates, and arsenic species. The samples are analyzed by the USGS National Water Quality Laboratory. The USGS also collects additional...
Groundwater-Quality Monitoring near Ashland, Nebraska

Groundwater-Quality Monitoring near Ashland, Nebraska

Since 1991, the USGS Nebraska Water Science Center has collected water samples from six monitoring wells in the Platte River alluvial aquifer near Ashland. Analytes include major and trace metals, nutrients, dissolved organic carbon, pesticides and their degradates, and arsenic species. The samples are analyzed by the USGS National Water Quality Laboratory. The USGS also collects additional...
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