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Fish sampling data, water temperature data, and groundwater spring location data from the upper Snake River basin, WY, 2021-2023
Fish sampling data, stream temperature data, and observations of the locations of groundwater springs within the upper Snake River basin, Wyoming. These datasets were created to assess how stream temperature and groundwater spring sources are associated with the growth and production of young-of-year Yellowstone cutthroat trout (Oncorhynchus virginalis bouvieri; formerly Oncorhynchus clarkii bouvieri). Surveys were collected in tributaries and rivers within the upper Snake River Basin, Wyoming. The fisheries data represents seasonal sampling of young-of-year Yellowstone cutthroat trout (2021 - 2023) using dipnetting and standard backpack electrofishing methods. The stream temperature data were purposively collected in streams where we collected fish data. The groundwater spring data were opportunistically collected across the study area. Data were collected by the U.S. Geological Survey and the University of Wyoming and/or affiliated field crews with support from the U.S. Geological Survey, the University of Wyoming, and the Wyoming Game and Fish Department.
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Fish sampling data, water temperature data, and groundwater spring location data from the upper Snake River basin, WY, 2021-2023
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Fish sampling data, stream temperature data, and observations of the locations of groundwater springs within the upper Snake River basin, Wyoming. These datasets were created to assess how stream temperature and groundwater spring sources are associated with the growth and production of young-of-year Yellowstone cutthroat trout (Oncorhynchus virginalis bouvieri; formerly Oncorhynchus clarkii bouvieri). Surveys were collected in tributaries and rivers within the upper Snake River Basin, Wyoming. The fisheries data represents seasonal sampling of young-of-year Yellowstone cutthroat trout (2021 - 2023) using dipnetting and standard backpack electrofishing methods. The stream temperature data were purposively collected in streams where we collected fish data. The groundwater spring data were opportunistically collected across the study area. Data were collected by the U.S. Geological Survey and the University of Wyoming and/or affiliated field crews with support from the U.S. Geological Survey, the University of Wyoming, and the Wyoming Game and Fish Department.
Stream water isotope data from the Snake River Basin 2013-2019.
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The dataset includes water isotope values from samples spatially distributed across the Snake River basin collected between 2013-2015, and time series data collected from the Snake River at King Hill. The timeseries data were collected at the USGS 13154500 gage at approximately monthly intervals from 2013 through water year 2019. Site descriptions and watershed metrics are also included for the spatially distributed collection sites. Water Isotope QA data has also been included. This dataset is associated with the following publication: Windler, G., J.R. Brooks, H.M. Johnson, R. Comeleo, R. Coulombe, and G. Bowen. Climate Impacts on Source Contributions and Evaporation to Flow in the Snake River Basin Using Surface Water Isoscapes (δ2H and δ18O). WATER RESOURCES RESEARCH. American Geophysical Union, Washington, DC, USA, 57(7): e2020WR029157, (2021).
Stream water isotope data from the Snake River Basin 2013-2019.
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The dataset includes water isotope values from samples spatially distributed across the Snake River basin collected between 2013-2015, and time series data collected from the Snake River at King Hill. The timeseries data were collected at the USGS 13154500 gage at approximately monthly intervals from 2013 through water year 2019. Site descriptions and watershed metrics are also included for the spatially distributed collection sites. Water Isotope QA data has also been included. This dataset is associated with the following publication: Windler, G., J.R. Brooks, H.M. Johnson, R. Comeleo, R. Coulombe, and G. Bowen. Climate Impacts on Source Contributions and Evaporation to Flow in the Snake River Basin Using Surface Water Isoscapes (δ2H and δ18O). WATER RESOURCES RESEARCH. American Geophysical Union, Washington, DC, USA, 57(7): e2020WR029157, (2021).
Stream temperature and fish community data upstream and downstream of an impoundment in Big Hunting Creek, Maryland
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This Data Release provides stream temperature data (13 sites) and fish community data (3 sites) in Big Hunting Creek, Maryland. Data were collected during summer baseflow conditions in 2023. This product supports brook trout conservation and restoration research needs identified by Maryland Department of Natural Resources. We collected temperature data with Onset ProV2 water temperature gages in slotted PVC housings mounted to the stream substrates with rebar. Gages recorded temperature every 15 minutes from July 11, 2023 (midnight) until July 15, 2023 (midnight) (337 observations per site). We collected fish community data following Maryland Department of Natural Resources protocols (Maryland Biological Stream Survey) with 2-pass backpack electrofishing and dipnets. All fishes were identified to species and released. Sites include locations upstream and downstream of an impoundment (Frank Bentz Pond) in Big Hunting Creek.
Springs and Seeps Monitoring Protocol Data for Park Units in the Northern Colorado Plateau Network from 1999-02-19 to 2024-11-20
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This data package was created 2025-09-24 08:12:31 by NPSTORET and includes selected project, location, and result data. Data are from the Northern Colorado Plateau Network's Springs and Seeps database that was exported/converted into an NPS WQX Electronic Data Deliverable (EDD) for EQuIS. The EDD was also imported into NPSTORET to produce an NPSTORET version of the database named NCPN_SAS_NPSTORET_BE_20250922.ACCDB (NPSTORET back-end file). This NPSTORET version of the database was filtered to include the following data in the Data Package: Station: - Include Trip QC And All Station Visit Results Value Status: - Accepted or Certified (exported as Final) or Final The data package is organized into six data tables: - Projects.csv - describes the purpose and background of the monitoring efforts - Locations.csv - documents the attributes of the monitoring locations/stations - Results.csv - contains the field measurements, observations, and/or lab analyses for each sample/event/data grouping - HUC.csv - enumerates the domain of allowed values for 8-digit and 12-digit hydrologic unit codes utilized by the Locations data table - Characteristics.csv - enumerates the domain of characteristics available in NPSTORET to identify what was sampled, measured or observed in Results - Taxon.csv - enumerates the domain of taxa available in NPSTORET to identify the organism sampled for Results Period of record for filtered data is 1999-02-19 to 2024-11-20. This data package is a snapshot in time of one National Park Service project. The most current data for this project, which may be more or less extensive than that in this data package, can be found on the Water Quality Portal at: https://www.waterqualitydata.us/data/Result/search?project=NCPN_SAS&mimeType=csv&zip=yes&dataProfile=biological&providers=STORET
Chemistry Data for Geothermometry Mapping of Deep Hydrothermal Reservoirs in Southeastern Idaho
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This dataset includes chemistry of geothermal water samples of the Eastern Snake River Plain and surrounding area. The samples included in this dataset were collected during the springs and summers of 2014 and 2015. All chemical analysis of the samples were conducted in the Analytical Laboratory at the Center of Advanced Energy Studies in Idaho Falls, Idaho. This data set supersedes #425 submission and is the final submission for AOP 3.1.2.1 for INL. Isotopic data collected by Mark Conrad will be submitted in a separate file.
Chemistry Data for Geothermometry Mapping of Deep Hydrothermal Reservoirs in Southeastern Idaho
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This dataset includes chemistry of geothermal water samples of the Eastern Snake River Plain and surrounding area. The samples included in this dataset were collected during the springs and summers of 2014 and 2015. All chemical analysis of the samples were conducted in the Analytical Laboratory at the Center of Advanced Energy Studies in Idaho Falls, Idaho. This data set supersedes #425 submission and is the final submission for AOP 3.1.2.1 for INL. Isotopic data collected by Mark Conrad will be submitted in a separate file.
Water Quality Data starting in 2017 for the Snake River at Moose, WY in Grand Teton National Park
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Comma separated values for monthly water chemistry data and water quality field parameters.
Water Quality Data starting in 2017 for the Snake River at Moose, WY in Grand Teton National Park
공공데이터포털
Comma separated values for monthly water chemistry data and water quality field parameters.
Compiled data for groundwater levels, groundwater withdrawals by wells and quarries, and point-source discharges to streams in the vicinity of Willow Grove and Warminster, Bucks and Montgomery Counties, Pennsylvania, for selected years during 1999-2017
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This USGS Data Release includes hydrologic data compiled for selected years during the period 1990-2017 to support the development and calibration of a numerical groundwater model used to simulate groundwater flow paths at and near former and currently active military bases in Montgomery and Bucks Counties in southeastern Pennsylvania (Goode and Senior, 2020). The hydrologic data compiled for the study area include: 1) withdrawal (pumping) rates for production and other wells; 2) quarry pumping rates; 3) rates of flow discharged to streams from the National Pollution Discharge Elimination System (NPDES) sources, and 4) measured water levels in wells. The data were compiled from various sources described in the metadata for each type of data, with complete references for data sources listed in (Goode and Senior, 2020). Withdrawal (pumping) and discharge rates in the data release represent annual average rates computed as needed from data compiled from various sources. The principal time periods for compiled data include 1990's, 2010, 2013, 2016, and 2017. Some values are estimated where data were missing or not available.