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Failu krātuve :: WASP/


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Icon  Name                                           Last modified      Size  Description
[PARENTDIR] Parent Directory - [TXT] about.txt 2017-11-04 05:31 1.1K Text, ASCII format [TXT] adrese.txt 2017-11-04 05:37 238 Addresses, URL [   ] setup_wasp7_52.exe 2017-11-04 05:26 20M Executable binary [   ] Steady-State-Example.zip 2017-11-04 05:25 581K Compressed archive [   ] Toxics_Example.zip 2017-11-04 05:25 3.1M Compressed archive [   ] WASP-Version-8_1-Install-64-Bit-07-12-2017 2017-11-04 05:29 48M [   ] WASP-Version-8_1-Install-64-Bit-07-12-2017.dmg 2017-11-04 05:31 61M Disk Image File [   ] WASP-Version-8_1-Install-64-Bit-07-12-2017.exe 2017-11-04 05:31 69M Executable binary [   ] wasp.pdf 2017-11-04 05:27 666K Digital document (Acrobat) [IMG] wasp.png 2017-11-04 05:23 19K Picture, raster format [   ] WASP7_Course.7z 2017-11-04 05:28 20M Compressed archive [   ] Watershed_Example.zip 2017-11-04 05:27 23M Compressed archive


The Water Quality Analysis Simulation Program (WASP7) is an enhancement
of the original WASP (Di Toro et al., 1983; Connolly and Winfield, 1984;
Ambrose, R.B. et al., 1988). This model helps users interpret and predict
water quality responses to natural phenomena and manmade pollution for
various pollution management decisions. WASP is a dynamic compartment-
modeling program for aquatic systems, including both the water column and
the underlying benthos. WASP allows the user to investigate 1, 2, and
3 dimensional systems, and a variety of pollutant types. The state variables
for the given modules are given in the table below. The time varying processes
of advection, dispersion, point and diffuse mass loading and boundary exchange
are represented in the model. WASP also can be linked with hydrodynamic and
sediment transport models that can provide flows, depths velocities, temperature,
salinity and sediment fluxes. This release of WASP contains the inclusion of
the sediment diagenesis model linked to the Advanced Eutrophication sub model,
which predicted sediment oxygen demand and nutrient fluxes from the underlying
sediments.

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