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21 to 30 of 314 Results
Jun 22, 2020 - Vitis images
Baumgartner, Aly, 2020, "Vitis amurensis 2015 images", https://doi.org/10.18738/T8/NHBXDY, Texas Data Repository Dataverse, V1
Original images of Vitis amurensis from 2015
Jun 22, 2020 - Vitis images
Baumgartner, Aly, 2020, "Vitis riparia 2013 images", https://doi.org/10.18738/T8/LL5XEL, Texas Data Repository Dataverse, V1
Original images of Vitis riparia from 2013
Jun 22, 2020 - Vitis images
Baumgartner, Aly, 2020, "Vitis riparia 2015 images", https://doi.org/10.18738/T8/GXIIBO, Texas Data Repository Dataverse, V1
Original images of Vitis riparia from 2015
Jun 19, 2020 - Trinity River Delta Hydrodynamic Model (TDHM)
Li, Zi; Hodges, Ben R.; Passalacqua, Paola, 2020, "Building the Trinity River Delta Hydrodynamic Model", https://doi.org/10.18738/T8/BWOOPM, Texas Data Repository Dataverse, V1
The Trinity River Delta Hydrodynamic Model (TDHM) has been constructed under a contract with the Texas Water Development Board based on prior work with the Nueces Delta Hydrodynamic Model (NDHM) and a new Fine Resolution Environmental Hydrodynamics Model written in C (FrehdC). Th...
Jun 9, 2020 - NSA Marine Aerosol
Moffett, Claire, 2020, "NSA Marine Aerosol", https://doi.org/10.18738/T8/EVQCQB, Texas Data Repository Dataverse, V2
This dataset contains ion composition data for two sites on the North Slope of Alaska.
Jun 9, 2020 - Roughness Scenarios
FLUD Research Group, 2020, "Water Surface Elevations: Baseline Roughness Scenario", https://doi.org/10.18738/T8/G7T78B, Texas Data Repository Dataverse, V1
Raster maps of water surface elevations (WSEs) that are output from the HEC-RAS 5.0.7 2D hydrodynamic model (Brunner, 2016), and associated with flow stages (0.1m – 11.63m) at 0.25m interval (N=44). These flow stages were output from simulations coincident with the baseline scena...
Jun 9, 2020 - Roughness Scenarios
FLUD Research Group, 2020, "Water Surface Elevations: Landcover +5% Roughness Scenario", https://doi.org/10.18738/T8/UEQZTC, Texas Data Repository Dataverse, V1
Raster maps of water surface elevations (WSEs) that are output from the HEC-RAS 5.0.7 2D hydrodynamic model (Brunner, 2016), and associated with flow stages (0.1m – 11.63m) at 0.25m interval (N=44). These flow stages were output from simulations coincident with the scenario that...
Jun 9, 2020 - Roughness Scenarios
FLUD Research Group, 2020, "Water Surface Elevations: Landcover +10% Roughness Scenario", https://doi.org/10.18738/T8/LBWRDQ, Texas Data Repository Dataverse, V1
Raster maps of water surface elevations (WSEs) that are output from the HEC-RAS 5.0.7 2D hydrodynamic model (Brunner, 2016), and associated with flow stages (0.1m – 11.63m) at 0.25m interval (N=44). These flow stages were output from simulations coincident with the scenario that...
Jun 9, 2020 - Roughness Scenarios
FLUD Research Group, 2020, "Water Surface Elevations: Landcover +25% Roughness Scenario", https://doi.org/10.18738/T8/EHFCMN, Texas Data Repository Dataverse, V1
Raster maps of water surface elevations (WSEs) that are output from the HEC-RAS 5.0.7 2D hydrodynamic model (Brunner, 2016), and associated with flow stages (1.0m – 11.63m) at 0.25m interval (N=44). These flow stages were output from simulations coincident with the scenario that...
Jun 9, 2020 - Roughness Scenarios
FLUD Research Group, 2020, "Water Surface Elevations: Landcover +50% Roughness Scenario", https://doi.org/10.18738/T8/PYIEPU, Texas Data Repository Dataverse, V1
Raster maps of water surface elevations (WSEs) that are output from the HEC-RAS 5.0.7 2D hydrodynamic model (Brunner, 2016), and associated with flow stages (1.0m – 11.63m) at 0.25m interval (N=44). These flow stages were output from simulations coincident with the scenario that...
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