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This dataset contains hydrodynamic metrics from particle tracking simulations for two sub-reaches of the Upper Missouri River near Wolf Point, MT. The upstream reach is referred to as the “upper” reach while the downstream reach is referred to as the “lower” reach. Simulations were performed for 16 flows in the range of 185-635 cms at increments of 30 cms.
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This dataset contains two subsets of animations corresponding to particle tracking simulations of the Upper Missouri River near Wolf Point, MT. Animations do not contain audio and depict particles moving from the top of the reach (left side) to the bottom of the reach (right side). The first subset are animations from simulations of a July 1, 2019, larval drift experiment. A total of 9 animations are included with each corresponding to the combination of 1 of 3 vertical movement methods (active60pct, active75pct, or passive) and 1 of 3 lateral eddy viscosity scenarios (LEVx0p5, LEVx1, or LEVx2). The second subset contains animations corresponding to particle simulations for the upper and lower sub-reaches of the...
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This dataset includes 5 measurements of flow and turbulence made with a Nortek Signature 1000 in a short reach of the Missouri River at Searcys Bend near Huntsdale, Missouri. The discharge at the U.S. Geological Survey Streamflow gaging station 06909000 fifteen miles upstream at Boonville, Missouri on September 16, 2021 was 1,291 cubic meters per second.
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In 1995, the Missouri River Benthic Fishes Study was initiated to provide improved information on Missouri River fish populations and how alterations might affect them. Missouri River Benthic Fishes Study (MRBFS) documented annual patterns, habitat, and water quality associations of 21 Missouri River benthic fish species based on relative abundance, including sicklefin and sturgeon chub from 1996 to 1998. Data sets include capture data and habitat characterization. The objective was to evaluate population structure and habitat use of benthic fishes along the entire mainstem Missouri River, exclusive of reservoirs.
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These datasets are outputs from LOADEST regression models for estimating Escherichia coli (E. coli) concentration in the Missouri River at four sites near Omaha, Nebraska. The datasets described by this metadata are yearly (both water year, Mar - Nov, and recreation season, May - Sept) and daily E. coli concentrations predicted using developed LOADEST models. The development of LOADEST regression models at each of the four sites is described in Densmore and others, 2020. These data sets are in .csv format. The files are named Yearly_Ecoli_Predictions.csv and Daily_Ecoli_Predictions.csv. Sites include Missouri River at NP Dodge Park at Omaha, Nebr. (USGS Site ID 412126095565201), Missouri River at Freedom Park Omaha,...
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The 1966 USGS 7.5 minute quadrangle map and aerial imagery available for the years of 1991, 2004, 2005, 2006, 2008, and 2010 was used to trace the shoreline of Lake Sharpe near Lower Brule, South Dakota. The Heads-up digitizing in ArcMap was used to trace shorelines from the 1966 quadrangle map and the aerial imagery. The resulting shoreline trace lines were saved in shapefile format. This work was completed by the U.S. Geological Survey in cooperation with the Lower Brule Sioux Tribe Environmental Protection Office.
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These data are high-resolution bathymetry (riverbed elevation) and depth-averaged velocities in ASCII format, generated from hydrographic and velocimetric surveys of the Missouri River near structures A4757/L0568 on Missouri State Highway 291 in Kansas City, Missouri, in 2010, 2011, and 2015. Hydrographic data were collected using a high-resolution multibeam echosounder mapping system (MBMS), which consists of a multibeam echosounder (MBES) and an inertial navigation system (INS) mounted on a marine survey vessel. Data were collected as the vessel traversed the river along planned survey lines distributed throughout the reach. Data collection software integrated and stored the depth data from the MBES and the horizontal...
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This dataset contains outputs from the simulation of a larval drift experiment conducted on July 1, 2019, on the Upper Missouri River near Wolf Point, MT using a one-dimensional advection-dispersion model. The model used to perform simulations was developed by the US Army Corps of Engineers (USACE) for the Upper Missouri River and several major tributaries in HecRAS (Fischenich, Reynolds, and Halteman 2021; Fischenich et al. 2018). Fischenich, J.C., Robert McComas, Donald Meier, Jeffery Tripe, Daniel Pridal, Paul Boyd, Standford Gibson, John Hickey, Thomas Econopouly, and Larry Strong. 2018. Habitat Analyses for the Missouri River Effects Analysis. U.S. Army Corps of Engineers, Engineer Research and Development...
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This dataset contains retention and transport time metrics from particle tracking simulations for two sub-reaches of the Upper Missouri River near Wolf Point, MT. The upstream reach is referred to as the “upper” reach while the downstream reach is referred to as the “lower” reach. Simulations were performed for 16 flows in the range of 185-635 cubic meters per second (cms) at increments of 30 cms. Simulations were performed in each reach for all 16 flows for a combination of 1 of 3 vertical movement methods (passive, active60pct, and active75pct)* and 1 of 3 lateral eddy viscosity (LEV) scenarios (0.5, 1, and 2 times the base value, referred to as LEVx0p5, LEVx1, or LEVx2, respectively), resulting in 288 total simulations....
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This child data release includes fluorometer measurements of Rhodamine WT dye concentration and turbidity acquired during a tracer experiment performed on the Missouri River near Columbia, Missouri, on May 5, 2021. One of the primary goals of this tracer experiment was to assess the feasibility of inferring concentrations of a visible dye (Rhodamine WT) from various types of remotely sensed data in a large, highly turbid natural river channel. Previous research on remote sensing of tracer dye concentrations has focused on clear-flowing streams, but the Missouri River is much more turbid. As a result, the effect of the dye on the reflectance of the water could be obscured by the effects of suspended sediment on reflectance....
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These data are high-resolution bathymetry (riverbed elevation) and depth-averaged velocities in comma-delimited table format, generated from hydrographic and velocimetric surveys near highway bridge structures over the Missouri and Mississippi Rivers on the periphery of Missouri, June 13–22, 2021. Hydrographic data were collected using a high-resolution multibeam echosounder mapping system (MBMS), which consists of a multibeam echosounder (MBES) and an inertial navigation system (INS) mounted on a marine survey vessel. Data were collected as the vessel traversed the river along planned survey lines distributed throughout the reach. Data collection software integrated and stored the depth data from the MBES and the...
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These data are high-resolution bathymetry (riverbed elevation) and depth-averaged velocities in ASCII format, generated from hydrographic and velocimetric surveys near highway bridge structures over the Missouri and Mississippi Rivers on the periphery of Missouri, for dates ranging from 2008 to 2018. Hydrographic data were collected using a high-resolution multibeam echosounder mapping system (MBMS), which consists of a multibeam echosounder (MBES) and an inertial navigation system (INS) mounted on a marine survey vessel. Data were collected as the vessel traversed the river along planned survey lines distributed throughout the reach. Data collection software integrated and stored the depth data from the MBES and...
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These data were released prior to the October 1, 2016 effective date for the USGS’s policy dictating the review, approval, and release of scientific data as referenced in USGS Survey Manual Chapter 502.8 Fundamental Science Practices: Review and Approval of Scientific Data for Release. An Innerspace 456 single-beam echosounder in conjunction with a Trimble® differential Global Positioning System (DGPS), HYPACK® navigation software, and Ashtech Z-Xtreme and Trimble® R8 Global Navigation Satellite System (GNSS) receivers was used to survey 7 chutes and 3 backwaters on the Missouri River yearly from 2011-13. These chutes and backwaters are located on the Missouri River between Newcastle, Nebraska and Rulo, Nebraska...
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These data were released prior to the October 1, 2016 effective date for the USGS’s policy dictating the review, approval, and release of scientific data as referenced in USGS Survey Manual Chapter 502.8 Fundamental Science Practices: Review and Approval of Scientific Data for Release. A RESON SeaBat™ 7125 multibeam echosounder in conjunction with an Applanix Position Orientation Solution for Marine Vessels (POS MV™) WaveMaster system motion sensor, HYPACK®/HYSWEEP® navigation software, and Ashtech Z-Xtreme GPS receivers or Trimble R8 receivers was used to survey the Missouri River bed at 15 pipeline crossings at four different locations, at three power plant locations, and at one transmission tower during the...
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These data were released prior to the October 1, 2016 effective date for the USGS’s policy dictating the review, approval, and release of scientific data as referenced in USGS Survey Manual Chapter 502.8 Fundamental Science Practices: Review and Approval of Scientific Data for Release. A RESON SeaBat™ 7125 multibeam echosounder in conjunction with an Applanix Position Orientation Solution for Marine Vessels (POS MV™) WaveMaster system motion sensor, HYPACK®/HYSWEEP® navigation software, and Ashtech Z-Xtreme GPS receivers or Trimble R8 receivers was used to survey the Missouri River bed at 15 pipeline crossings at four different locations, at three power plant locations, and at one transmission tower during the...
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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.
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Fish muscle tissue was analyzed for stable carbon and nitrogen isotope values (delta 13C and delta 15N) for two filter-feeding fishes native to China, silver carp (Hypophthalmichthys molitrix) and bighead carp (Hypophthalmichthys nobilis), and three native filter-feeding fish including bigmouth buffalo (Ictiobus cyprinellus), gizzard shad (Dorosoma cepedianum) and paddlefish (Polyodon spathula) in the lower Missouri River, USA,
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Deltaic sand deposits at the head of Lewis and Clark Lake, Nebraska-South Dakota were investigated for suitability for use as a proppant feedstock resource in unconventional oil or gas production. The physical characteristics of the deposits are described in four supplemental data sets in varied file formats. First, for the direct-push cores collected at four sandbar complexes in the Missouri River delta, detailed descriptions of core lithology and texture are provided in Comma Separated Values (CSV) file format. Second, apparent resistivity results from capacitively coupled (CC) resistivity profiles collected along surface-geophysical reconnaissance lines are displayed using standardized color ramps and vertically...
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These data are high-resolution bathymetry (riverbed elevation) and depth-averaged velocities in ASCII format, generated from hydrographic and velocimetric surveys of the Missouri River near highway bridge structures on U.S. Highway 40 near St. Louis, Missouri, in 2010, 2011, and 2016. Hydrographic data were collected using a high-resolution multibeam echosounder mapping system (MBMS), which consists of a multibeam echosounder (MBES) and an inertial navigation system (INS) mounted on a marine survey vessel. Data were collected as the vessel traversed the river along planned survey lines distributed throughout the reach. Data collection software integrated and stored the depth data from the MBES and the horizontal...


map background search result map search result map Streambed sediment data for Missouri and Niobrara Rivers, Nebraska and South Dakota, 2015 Site 23 Missouri River Bathymetry and Velocimetry Data at Highway Bridges on U.S. Highway 40 near St. Louis, Missouri, October 2010 through May 2016 Historical shoreline traces of Lake Sharpe near Lower Brule, South Dakota, 1966–2010 Stable carbon and nitrogen isotope values in muscle tissue of bigheaded carps and native filter-feeding fish from the lower Missouri River, USA, 2005-2006 Modeling Escherichia coli in the Missouri River near Omaha, Nebraska, 2012-16: Model Outputs Bathymetry and Velocity Data from Surveys at Highway Bridges crossing the Missouri and Mississippi Rivers on the Periphery of Missouri, December 2008 through August 2018 Site 13 Missouri River Bathymetry and Velocimetry Data at Structures A4757/L0568 on Missouri State Highway 291 in Kansas City, Missouri, March 2010 through June 2015 Hybrid bathymetric-topographic digital elevation model for a 20-km reach of the Missouri River downstream from Wolf Point, MT In situ measurements of Rhodamine WT dye concentration and turbidity made along transects by a moving boat during a tracer experiment on the Missouri River near Columbia, MO, on May 5, 2021 Flow and turbulence measurements using a Nortek Signature 1000 at Searcys Bend, near Huntsdale, Missouri September 16, 2021 Hydrographic Surveys of the Missouri River at Plattsmouth backwater, 2011-13 Missouri River bed elevations near Nebraska City coal power plant surveyed during 2011 flood on July, 19 Missouri River bed elevations at pipeline crossing near Union, Nebraska surveyed during 2011 flood on July, 27 Bathymetry and Velocity Data from Surveys at Highway Bridges crossing the Missouri and Mississippi Rivers on the Periphery of Missouri, June 13–22, 2022 Supporting files for particle tracking simulations of the Upper Missouri River near Wolf Point, MT Child 6: Animations of particle tracking simulations of the Upper Missouri River near Wolf Point, MT Captures and habitat classification of benthic fishes along the Missouri and Lower Yellowstone Rivers, 1996-1998 Simulation of a July 1, 2019, larval drift experiment on the Upper Missouri River near Wolf Point, MT using a one-dimensional advection-dispersion model Retention and transport time metrics from particle tracking simulations of two sub-reaches of the Upper Missouri River near Wolf Point, MT Hydrodynamic metrics from particle tracking simulations of two sub-reaches of the Upper Missouri River near Wolf Point, MT Missouri River bed elevations at pipeline crossing near Union, Nebraska surveyed during 2011 flood on July, 27 Missouri River bed elevations near Nebraska City coal power plant surveyed during 2011 flood on July, 19 Flow and turbulence measurements using a Nortek Signature 1000 at Searcys Bend, near Huntsdale, Missouri September 16, 2021 Site 13 Missouri River Bathymetry and Velocimetry Data at Structures A4757/L0568 on Missouri State Highway 291 in Kansas City, Missouri, March 2010 through June 2015 Hydrographic Surveys of the Missouri River at Plattsmouth backwater, 2011-13 Site 23 Missouri River Bathymetry and Velocimetry Data at Highway Bridges on U.S. Highway 40 near St. Louis, Missouri, October 2010 through May 2016 Historical shoreline traces of Lake Sharpe near Lower Brule, South Dakota, 1966–2010 In situ measurements of Rhodamine WT dye concentration and turbidity made along transects by a moving boat during a tracer experiment on the Missouri River near Columbia, MO, on May 5, 2021 Hybrid bathymetric-topographic digital elevation model for a 20-km reach of the Missouri River downstream from Wolf Point, MT Simulation of a July 1, 2019, larval drift experiment on the Upper Missouri River near Wolf Point, MT using a one-dimensional advection-dispersion model Retention and transport time metrics from particle tracking simulations of two sub-reaches of the Upper Missouri River near Wolf Point, MT Hydrodynamic metrics from particle tracking simulations of two sub-reaches of the Upper Missouri River near Wolf Point, MT Supporting files for particle tracking simulations of the Upper Missouri River near Wolf Point, MT Child 6: Animations of particle tracking simulations of the Upper Missouri River near Wolf Point, MT Modeling Escherichia coli in the Missouri River near Omaha, Nebraska, 2012-16: Model Outputs Stable carbon and nitrogen isotope values in muscle tissue of bigheaded carps and native filter-feeding fish from the lower Missouri River, USA, 2005-2006 Streambed sediment data for Missouri and Niobrara Rivers, Nebraska and South Dakota, 2015 Bathymetry and Velocity Data from Surveys at Highway Bridges crossing the Missouri and Mississippi Rivers on the Periphery of Missouri, December 2008 through August 2018 Bathymetry and Velocity Data from Surveys at Highway Bridges crossing the Missouri and Mississippi Rivers on the Periphery of Missouri, June 13–22, 2022 Captures and habitat classification of benthic fishes along the Missouri and Lower Yellowstone Rivers, 1996-1998