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Data set contains depth and velocity grids centerpoints generated from hydrodynamic model (SRH-2D) simulations run for a range of discharges. Date range corresponds to month(s) that bathymetric survey was performed. Three study reaches were considered in this analysis: the Fairview reach of the Yellowstone River, MT, the Miami and Lisbon-Jameson reaches of the Lower Missouir River. Data and application are described in detail in accompanying journal article (Erwin et al., 2017).
Data were collected in June 2016 as part of a dye-trace experiment in the Missouri River downstream from Fort Peck Dam, Montana, USA. Fluorometers were deployed at 8 measurement stations over a 135-km study reach. Approximately 51 L of Rhodamine WT (RWT) dye was injected on 26 June 2016 at 14:30 MDT. The injection occured along a transect located approximately 3000 meters downstream from the confluence of the Milk and Missouri Rivers. Injection was performed via a gravity-feed system and was complete within seven minutes of initaition. RWT dye was diluted by at least half to facilitate mixing and was injected approximately 0.30 m below the water surface. Fluorometers were placed approximately 4 to 8 m from shore...
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Data set contains depth and velocity grids centerpoints generated from hydrodynamic model (SRH-2D) simulations run for a range of discharges. Date range corresponds to month(s) that bathymetric survey was performed. Three study reaches were considered in this analysis: the Fairview reach of the Yellowstone River, MT, the Miami and Lisbon-Jameson reaches of the Lower Missouir River. Data and application are described in detail in accompanying journal article (Erwin et al., 2017).
Data consist of geolocation, temperature, turbidity, time, and dye concentrations collected at four downstream locations from Rhodamine WT dye injection point on Yellowstone River in June 2017
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This data release contains river bed surface grain size measurements, water-surface elevation measurements, and digital elevation models (DEMs) for select reaches of the Big River, Missouri. These data were collected in support of research assessing the hydraulic conditions of freshwater mussel habitat in the Big River. The individual metadata associated with each data type describe the process steps, data inputs and sources, and the locations where the data were collected.
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This dataset contains cross-sectionally averaged flow metrics from measurements made with acoustic Doppler current profilers (ADCP) on the Missouri River near Wolf Point, MT during 2018 and 2019. Each data point represents a single-pass measurement with a boat-mounted ADCP driven from bank-to-bank along lateral transects spaced ~15 meters apart along a 33 kilometer reach. The measurements were collected as part of a bathymetric survey in which two USGS survey boats were each mounted with an ADCP and single beam echosounder that were deployed simultaneously. Cross-sectionally averaged flow metrics such as velocity, depth, and temperature along with the total measured discharge and starting coordinate of the measurement...
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This data release contains numerous shapefiles that describe baseline characterization of the physical attributes of the riverine ecosystems in two national parks – Ozark National Scenic Riverways (ONSR), Missouri, and Buffalo National River (BNR), Arkansas. The individual metadata associated with each shapefile describe in detail the specific process steps, source inputs for the data, and the specific river the data characterize.
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The dataset is a digital elevation model (DEM) for a 20-km reach of the Missouri River downstream from Wolf Point, MT. Channel topography was generated from data collected by USGS staff from the Columbia Environmental Research Center during single-beam sonar surveys of the channel bed in June 2018 and terrestrial light detection and ranging (LiDAR) surveys of channel banks in September 2018. Floodplain topography was generated from airborne LiDAR data collected in November 2012 by Furgo Horizons, Inc. for the U.S. Army Corps of Engineers.
Data set contains depth and velocity grids centerpoints generated from hydrodynamic model (SRH-2D) simulations run for a range of discharges. Date range corresponds to month(s) that bathymetric survey was performed. Three study reaches were considered in this analysis: the Fairview reach of the Yellowstone River, MT, the Miami and Lisbon-Jameson reaches of the Lower Missouri River. Data and application are described in detail in accompanying journal article (Erwin et al., 2017).
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This data release includes field spectra, UAS-based hyperspectral and RGB images, and in situ measurements of turbidity and Rhodamine WT dye concentration acquired during an experiment performed at the USGS Columbia Environmental Research Center, near Columbia, Missouri, on April 2, 2019. The purpose of the experiment was to assess the feasibility of inferring concentrations of a visible dye (Rhodamine WT) tracer from various types of remotely sensed data in water with varying levels of turbidity. Whereas previous research on remote sensing of tracer dye concentrations has focused on clear-flowing streams, the Missouri River is much more turbid and the reflectance signal associated with the sediment-laden water...
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Data set contains depth and velocity grids centerpoints generated from hydrodynamic model (SRH-2D) simulations run for a range of discharges. Date range corresponds to month(s) that bathymetric survey was performed. Three study reaches were considered in this analysis: the Fairview reach of the Yellowstone River, MT, the Miami and Lisbon-Jameson reaches of the Lower Missouir River. Data and application are described in detail in accompanying journal article (Erwin et al., 2017).
This dataset contains digital elevation models (DEMs) for four reaches of the Big River in Missouri. The study reaches are as follows: Site W (STW), Rockford Beach (RFB), Phelps Bend (PHB), and Washington State Park (WSP). The reach DEMs were created in support of research assessing the hydraulic conditions of freshwater mussel habitat in the Big River. Channel and bank elevations were generated from data collected by USGS staff from the Columbia Environmental Research Center between February 2019 and January 2020 using single-beam echosounder surveys, manual Global Navigation Satellite System (GNSS) topographic surveys, and terrestrial light detection and ranging (lidar) surveys. Elevations for areas beyond the...


    map background search result map search result map Lisbon-Jameson Reach of Lower Missouri River hydrodynamic model outputs Fairview Reach of Yellowstone River hydrodynamic model outputs Miami Reach of Lower Missouri River Hydrodynamic Model Outputs Hybrid bathymetric-topographic digital elevation model for a 20-km reach of the Missouri River downstream from Wolf Point, MT Field spectra, UAS-based hyperspectral and RGB images, and in situ measurements of turbidity and Rhodamine WT dye concentration from an experiment conducted at the USGS Columbia Environmental Research Center, Columbia, MO, on April 2, 2019 Hydraulic measurements from select reaches of the Big River, Missouri 2017 Yellowstone River Dye-Trace Experiment Stream classification and gravel bar inventory for Buffalo National River and Ozark National Scenic Riverways, 1982-2014 Cross-sectionally averaged flow metrics from ADCP measurements of the Missouri River downstream of Wolf Point, MT during 2018-2019 Bathymetric-topographic digital elevation models for four reaches of the Big River, Missouri Supporting files for particle tracking simulations of the Upper Missouri River near Wolf Point, MT Field spectra, UAS-based hyperspectral and RGB images, and in situ measurements of turbidity and Rhodamine WT dye concentration from an experiment conducted at the USGS Columbia Environmental Research Center, Columbia, MO, on April 2, 2019 Fairview Reach of Yellowstone River hydrodynamic model outputs Miami Reach of Lower Missouri River Hydrodynamic Model Outputs Lisbon-Jameson Reach of Lower Missouri River hydrodynamic model outputs Cross-sectionally averaged flow metrics from ADCP measurements of the Missouri River downstream of Wolf Point, MT during 2018-2019 Hybrid bathymetric-topographic digital elevation model for a 20-km reach of the Missouri River downstream from Wolf Point, MT Supporting files for particle tracking simulations of the Upper Missouri River near Wolf Point, MT Hydraulic measurements from select reaches of the Big River, Missouri Bathymetric-topographic digital elevation models for four reaches of the Big River, Missouri 2017 Yellowstone River Dye-Trace Experiment Stream classification and gravel bar inventory for Buffalo National River and Ozark National Scenic Riverways, 1982-2014