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The dataset contains data collected with an acoustic Doppler current profiler (ADCP) for a reach of the Missouri River at Sheepnose Bend downstream from Lexington, Missouri. Velocity data was collected using a TeleDyne Marine RD Instruments (Poway, California) Rio Grande Workhorse 600 kilohertz ADCP on June 4, 2020. Positioning used a Trimble Real-Time-Kinematic Global Navigation Satellite System. This data release consists of one shapefile with depth-averaged velocity magnitude and direction data and 40 text files that contain processed ascii velocity data exported from WinRIver II, Teledyne Marine RD Insturments (Poway, California) ADCP software.
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This dataset contains two- and quasi-three-dimensional hydrodynamic model outputs from the Flow and Sediment Transport with Morphologic Evolution of CHannels (FaSTMECH) hydrodynamic model in the open-source binary Visualization Toolkit (VTK) format (https://vtk.org/). The simulations were run at flows in the range of 185-635 cms at increments of 30 cms. This set of flow conditions pertains to the base lateral eddy viscosity scenario referred to as LEVx1 in Call et al., 2023. Files can be opened using the open-source software program Paraview: (https://www.paraview.org/).
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These two datasets contain metrics from hydrodynamic and 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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Data includes grass carp position and sampling data from 2020 to 2022. We used grass carp that were implanted with acoustic transmitters. The position data was generated in Fathom Position from receivers that composed several VEMCO Positioning Systems (VPS). We also queried the Great Lakes Acoustic Telemetry Observation Network (GLATOS) to obtain non-VPS position detections from receivers made from multiple projects across Lake Erie and associated tributaries. Sampling data was downloaded from the grass carp capture database hosted on ArcGIS Online These data contain information such as location of event, time gears were deployed and retrieved, and number of grass carp caught.
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This dataset contains particle starting location files for particle tracking simulations of the Upper Missouri River near Wolf Point, MT using the “Fluvial Particle” particle tracking model (https://doi.org/10.5066/P9K1U4O0). The file “DriftExperiment_StartLocations_n30000.csv” corresponds to particle simulations of a July 1, 2019, larval drift experiment. This file is configured to simulate 30,000 particles run in serial (i.e., 30,000 particles run on a single CPU). The files “ReachComparison_StartLocations_Lower_n250.csv” and “ReachComparison_StartLocations_Upper_n250.csv” correspond to particle simulations comparing the upper and lower sub-reaches of the larger model reach. Each of these simulations also used...
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This dataset contains two- and quasi-three-dimensional hydrodynamic model outputs from the Flow and Sediment Transport with Morphologic Evolution of CHannels (FaSTMECH) hydrodynamic model in the open source binary Visualization Toolkit (VTK) format (https://vtk.org/). The simulations were run at 348 cms as measured on July 1, 2019, during a larval drift experiment conducted on the Upper Missouri River near Wolf Point, MT. Three different variations of the model were run at multiples of 0.5, 1, and 2 times the calculated lateral eddy viscosity (LEV) value to account for uncertainty in this parameter. These are labeled as LEVx0p5, LEVx1, and LEVx2 respectively. Files can be opened using the open-source software program...
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This dataset contains shapefiles for three longitudinal water surface elevation profiles collected by boat on the Upper Missouri River near Wolf Point, MT between June 2018 and July 2019. The dataset was collected to calibrate a multidimensional hydrodynamic model.
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The dataset contains a hybrid bathymetric-topographic digital elevation model (DEM) of the Upper Missouri River near Wolf Point, MT. The DEM was generated within ArcGIS by compositing bathymetric data from multiple single beam sonar surveys collected between June 2018 and July 2019 with previously existing topographic data collected from airborne LiDAR into a triangulated irregular network (TIN). The resulting TIN was then manually edited and exported as a raster for use in developing a hydrodynamic model.
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Data includes fish abundance and habitat data collected at ten sites in the Sandusky River, OH. Fish were collected using two 3.67 m long hoop nets with an initial hoop diameter of 0.91 m. Nets were set perpendicular to the current, opening toward the shoreline. Nets were set for approximately 24 hours and catch rates for each set were defined as the number of fish caught in the two hoop nets per 24-hour sampling period. Fish were identified to species, measured for total length (mm), and released. Water quality was taken daily at each site at approximately the same time of day with a YSI Exo2 multiparameter sonde. Physical habitat data was recorded at the start of each trial. Vegetation coverage was characterized...
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Grass carp, bighead carp, and silver carp spawn in flowing water. Their eggs,and then larvae, develop while drifting. Hydraulic conditions control spawning locations, egg survival, and the downstream distance traveled before the hatched larvae can swim for low velocity nursery habitats. Existing egg drift models simulate the fluvial transport of carp eggs but have limitations in capturing the effect of localized turbulence on egg transport due to inadequate dimensions of hydrodynamics and/or empirical parameterization of river dispersion. We present a three-dimensional Lagrangian particle tracking model that uses fully resolved river hydrodynamics and a continuous random walk algorithm driven by local turbulent...
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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 comparing larval transport through the upper and lower sub-reaches of the larger model reach. 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). A total of 96 animations are included corresponding to a combination of 1 of both reaches (upper or lower), 1 of 16 discharges (185-635 cms, at increments of 30 cms), and 1 of 3 vertical movement methods (active60pct, active75pct, or passive).
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This dataset contains breakthrough curves calculated from particle tracking simulations of a July 1, 2019, larval drift experiment conducted on the Upper Missouri River near Wolf Point, MT. Breakthrough curves were generated using a custom script written in the Python programming language that counts the number of particles per time step passing through sampling locations. Breakthrough curves were generated for particles using passive, active75pct, and active60pct vertical movement methods at the first two sampling stations downstream of the release location.
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This dataset contains a series of processed acoustic Doppler current profiler (ADCP) measurements collected by boat on the Upper Missouri River near Wolf Point, Montana between 2018 and 2019. The data presented here have been processed with the Velocity Mapping Toolbox (VMT) and combined into a single shapefile using ArcGIS. The dataset was collected to validate a multidimensional hydrodynamic model.
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The Kentucky Department of Fish and Wildlife Resources and Tennessee Wildlife Resource Agency conducted observations onboard commercial fishing vessels. During these observations total lengths were collected from a subset of that capture which we have used to develop a length-based stock assessment of invasive carp. The first dataset represent harvest from the invasive carp harvest program in Kentucky and Tennessee from 2009-2021 only in Lake Barkley and Kentucky Lake where the majority of harvest occurs. The second data are length data from a subset of those fish harvested in 2018-2021. The last dataset are the results from a survey delivered to fishers participating in the invasive carp harvest program in Kentucky...
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This dataset contains processed simulation results and field data of a larval drift experiment conducted on July 1, 2019, on the Upper Missouri River.
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This dataset contains animations of particle tracking of the July 1, 2019, larval drift experiment on 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). 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).
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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 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 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...


map background search result map search result map Acoustic Doppler current profiler (ADCP) raw measurements on the Missouri River near Lexington, Missouri, June 4, 2020 Data supporting a new three-dimensional Lagrangian particle tracking model for predicting transport of carp eggs in turbulent rivers Supporting files for particle tracking simulations of the Upper Missouri River near Wolf Point, MT Child 1: Hybrid bathymetric-topographic digital elevation model for the Upper Missouri River near Wolf Point, MT Child 2: Longitudinal water surface elevation profiles of the Upper Missouri River near Wolf Point, MT Child 3: Processed acoustic Doppler current profiler (ADCP) measurements of the Upper Missouri River near Wolf Point, MT Child 5: Start location files for the “Fluvial Particle” model used in generating particle tracking simulations for the Upper Missouri River near Wolf Point, MT Child 6: Animations of particle tracking simulations of the Upper Missouri River near Wolf Point, MT Child 7: Simulation results and field data for model comparison of the July 1, 2019, larval drift experiment on the Upper Missouri River near Wolf Point, MT Child 8: Metrics from hydrodynamic and particle tracking simulations of two sub-reaches of the Upper Missouri River near Wolf Point, MT Invasive carp harvest data and surveys of commercial fishers in support of stock assessment and abundance models, Kentucky Lake and Lake Barkley, 2009-2021 Outputs from hydrodynamic simulations of flow on July 1, 2019, for the Upper Missouri River near Wolf Point, MT Outputs from hydrodynamic simulations of flows between 185-635 cms at 30 cms increments for the Upper Missouri River near Wolf Point, MT Animations of particle tracking simulations of flows between 185-635 cms for two sub-reaches of the Upper Missouri River near Wolf Point, MT Animations of particle tracking simulations of the July 1, 2019, larval drift experiment on the Upper Missouri River near 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 Breakthrough curves from particle tracking simulations of a July 1, 2019, larval drift experiment on 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 Fish Community and habitat assessment in the Sandusky River, OH, April 2021 through October 2021 Grass Carp Movement and Capture Data from the Sandusky River, Lake Erie, Ohio, USA from 2020 to 2022 Acoustic Doppler current profiler (ADCP) raw measurements on the Missouri River near Lexington, Missouri, June 4, 2020 Data supporting a new three-dimensional Lagrangian particle tracking model for predicting transport of carp eggs in turbulent rivers 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 Hydrodynamic metrics from particle tracking simulations of two sub-reaches of the Upper Missouri River near Wolf Point, MT Animations of particle tracking simulations of the July 1, 2019, larval drift experiment on the Upper Missouri River near Wolf Point, MT Breakthrough curves from particle tracking simulations of a July 1, 2019, larval drift experiment on the Upper Missouri River near Wolf Point, MT Supporting files for particle tracking simulations of the Upper Missouri River near Wolf Point, MT Child 1: Hybrid bathymetric-topographic digital elevation model for the Upper Missouri River near Wolf Point, MT Child 6: Animations of particle tracking simulations of the Upper Missouri River near Wolf Point, MT Child 7: Simulation results and field data for model comparison of the July 1, 2019, larval drift experiment on the Upper Missouri River near Wolf Point, MT Child 8: Metrics from hydrodynamic and particle tracking simulations of two sub-reaches of the Upper Missouri River near Wolf Point, MT Outputs from hydrodynamic simulations of flow on July 1, 2019, for the Upper Missouri River near Wolf Point, MT Outputs from hydrodynamic simulations of flows between 185-635 cms at 30 cms increments for the Upper Missouri River near Wolf Point, MT Animations of particle tracking simulations of flows between 185-635 cms for two sub-reaches of the Upper Missouri River near Wolf Point, MT Grass Carp Movement and Capture Data from the Sandusky River, Lake Erie, Ohio, USA from 2020 to 2022 Invasive carp harvest data and surveys of commercial fishers in support of stock assessment and abundance models, Kentucky Lake and Lake Barkley, 2009-2021