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DOWNLOAD PAGE:
1) Supplementary Excel-files (no password needed)
*Download SCENARIO.XLS          Information about SCENARIO.XLS
*Download DISTRI51.XLS             Information about DISTRI51.XLS

2) Data /Excel-models needed in different exercises (freely available)
* Helsinki (southern Finland), 01.09.1966-31.12.1975 (snow depth measured) (HELSI.XLS)
* Sodankylä (northern Finland), 0.1.09.1976-31.12.1985 (snow depth measured) (SODAN.XLS)
* Huhtisuo experimental area (eastern Finland), 01.09.1936-31.12.1939 (SWE in open areas)
* Huhtisuo experimental area (eastern Finland), 01.09.1936-31.12.1939 (SWE in sparse forest)
* Huhtisuo experimental area (eastern Finland), 01.09.1936-31.12.1939 (SWE in dense forest)
* Kyrönjoki snow model (KYROSNOW.XLS) (1962-1967)
* Kyrönjoki snow model/test period (KYROSNOW_TEST.XLS) (1980-1985)

* Load data for evapotranspiration exercise (eojcdata.xls)  
* Runoff exercise: Download HBV.ZIP
or separately HBV_HARJ.XLS and LATOSNOW.XLS
* Rainfall-runoff model for Kyrönjoki (simple HBV-model) (KYRO_QQQ.XLS)

3) Downloadable programs: Include Excel-file as a user interface and DOS-programs to do
    the modeling job.  (Password needed in order to run the DOS-models).
A) Generation of short-term (10 min) precipitation and PET data for urban hydrological models  
B) Calculation of heat and water balance in forested profiles (snow included)
     Calculates soil water content and soil temperature profiles, snow and frost depths,
     daily values for recharge to groundwater  RECH_DAY.XLS as user interface-file
C) Calculation of crop growth, crop nitrogen uptake, soil water and soil heat balance in agricultural
     profiles.  Includes calculation water table depth, drainage flow and leaching of nitrogen through
    subsurface drains.  Same numerical solution than in model B), but influence of crop included.
D) Calculation of open channel flow.  Solves numerically the Saint Venant equations in a river
     with embankments.  The idea is to calculate the influence of global climate change on
     runoff from natural catchments and then check with this model how embankments are
     fulfilling their task in future climate.