Stats of S. grossum dispersal from 109 single habitats to reachable grassland habitats in Schleswig-Holstein 0 11898

Project
POF3 - T16 - EnergyLandUse - Ecoclimb - HiLEG Output Data
Description
CSV output data generated by HiLEG simulation runs of the large marsh grasshopper in Schleswig-Holstein dispersing from 109 and single source habitats.
Filename endings indicate in order of occurrence the climate change scenario, initial simulation year and final simulation year.
Data was used in
Leins J. A., Drechsler M. "Large scale PVA modelling of insects in cultivated grasslands: the role of dispersal in mitigating the effects of management schedules (postfix of filename) under climate change" (in preparation)


Contents of files are:
- *orderOfYears_*.csv -> shuffled order of years taking from climate data per random seed
- *stats_*.csv -> population stats per grassland cell and random seed at the end of the simulation run
- *statsYearly_*.csv -> yearly population stats per grassland cell and random seed

SIMULATION PARAMETERS were:
- global climate model ICHEC_EC_EARTH
- climate change scenarios rcp26, rcp45, rcp85
- 18 mowing schedules (disturbances)
- 10 random seeds (#41 - #50)
- simulation time of 60 years (2020 - 2079)
- bilinear interpolation of climate values for local grassland cell climate
- long distance dispersal between grassland cells
- single initial population per simulation run for each center of 109 climate cells in Schleswig-Holstein

Some simulations had to be run again due to technical difficulties.
Thus, some output files might contain duplicate data.

MEANING of columns in stats files are:
distSchemeName -> mowing schedule name (abbr.), where M66 is equal to mowing schedule M20+00+44 (see manuscript)
xCoord -> Cartesian x-coordinate of habitat
yCoord -> Cartesian y-coordinate of habitat
seed -> seed number used for replicate
disturbance -> applied mowing schedule at habitat only differing from distSchemeName in source habitat
year -> simulation year
RCPscenario -> climate change scenario
lifetime -> lifetime in days
firstVisit -> day of first visit to a habitat
firstEst -> day of first population establishment
finalDensity -> population density [ind. per m^2] at the end of simulation year
nExtinction -> number of extinction events at habitat
nQuasiExtinction -> number of quasi extinction events at haitat
meanDensity -> mean population density [ind. per m^2] during simulation run at the end of simulation year
meanMigration -> net migration [ind. per m^2] during simulation year
yearly_mortality_[Life_Stage] -> total Life Stage mortality [ind. per m^2] during simulation year
yearly_meanDensity_[Life_Stage] -> mean Life Stage density [ind. per m^2] during simulation year
yearly_lifetime_[Life_Stage] -> mean Life Stage occurrence time [days] during simulation year
yearly_peak_[Life_Stage] -> peak (max) Life Stage density [ind. per m^2] during simulation year
yearly_grossPeak_[Life_Stage] -> peak (max) Life Stage density [ind. per m^2] during simulation year in considering dispersal
yearly_gain_[Life_Stage] -> total Life Stage density gain [ind. per m^2] during simulation year
yearly_immigration_Imago -> total immigration [ind. per m^2] (incoming dispersal) to imago Life Stage during simulation year
yearly_emigration_Imago -> total immigration [ind. per m^2] (incoming dispersal) to imago Life Stage during simulation year
Size
86,7 GB
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