mHM_UFZ gridded simulations for the Great Lakes Runoff Inter-comparison Project for Lake Erie
View DatasetDescription
This dataset provides gridded model simulations in netcdf format over the Lake Erie using the mHM model (Samaniego, et al., 2010, Kumar et al, 2013), done within the Great Lakes Runoff Inter-comparison Project for Lake Erie (GRIP-E). Model code is available under: https://git.ufz.de/mhm/mhm, revision number: 8271b54 Domain boundaries (WGS84 system): lon_min = -86.0, lon_max = -78.0, lat_min = 40.0, lat_max = 45.0 Model variables are simulated at spatial grid of 0.125deg x 0.125deg, daily time step. Simulation period: 01 Jan 2011 - 31 Dec 2014 (with 1year -2010- warm-up) Meteorological input data, see Mai et al. 2020 (in prep) Following model variables are provided for two mHM_parameter.nml realizations (*obj1 and *obj2, as defined in Mai et al. 2020 in prep). double snowpack(time, northing, easting) ;
snowpack:long_name = "depth of snowpack" ;
snowpack:unit = "mm" ;
double SM_Lall(time, northing, easting) ;
SM_Lall:long_name = "average soil moisture over all layers" ;
SM_Lall:unit = "mm mm-1" ;
double unsatSTW(time, northing, easting) ;
unsatSTW:long_name = "reservoir of unsaturated zone" ;
unsatSTW:unit = "mm" ;
double satSTW(time, northing, easting) ;
satSTW:long_name = "water level in groundwater reservoir" ;
satSTW:unit = "mm" ;
double aET(time, northing, easting) ;
aET:long_name = "actual Evapotranspiration" ;
aET:unit = "mm d-1" ;
double Q(time, northing, easting) ;
Q:long_name = "total runoff generated by every cell" ;
Q:unit = "mm d-1" ;
double QD(time, northing, easting) ;
QD:long_name = "direct runoff generated by every cell (runoffSeal)" ;
QD:unit = "mm d-1" ;
double QIf(time, northing, easting) ;
QIf:long_name = "fast interflow generated by every cell (fastRunoff)" ;
QIf:unit = "mm d-1" ;
double QIs(time, northing, easting) ;
QIs:long_name = "slow interflow generated by every cell (slowRunoff)" ;
QIs:unit = "mm d-1" ;
double QB(time, northing, easting) ;
QB:long_name = "baseflow generated by every cell" ;
QB:unit = "mm d-1" ;
double recharge(time, northing, easting) ;
recharge:long_name = "groundwater recharge" ;
recharge:unit = "mm d-1" ; =============================================================== These data and model runs have been performed under the Great Lakes Runoff Intercomparison Project for Lake Erie (GRIP-E) led by Juliane Mai and Bryan Tolson (both University of Waterloo) and funded under the Integrated Modelling Program for Canada (IMPC) within the Global Water Futures program. This work has received funding from the Initiative and Networking Fund of the Helmholtz Association through the project Advanced Earth System Modelling Capacity (ESM) (www.esm-project.net).
Citations (1)
- https://doi.org/10.1061/ascehe.1943-5584.0002097DataCite MDC OpenAlex
Cited on 01 September 2021
Weight: 1.23
Mentions (2)
- https://github.com/yojiyojiyoji/GRIP-ESoftware Heritage
Mentioned on 13 July 2024
Weight: 1.53
- https://github.com/julemai/GRIP-ESoftware Heritage
Mentioned on 25 April 2023
Weight: 1.46
Metrics Over Time
Publication Details
Subfield
Water Science and Technology
Field
Environmental Science
Domain
Physical Sciences
Confidence Score
100%
Source
Open Alex