Автор: Williams
Дата: 31 июля 2015
Просмотров: 912
Lakes Environmental AUSTAL View v8.6.0
AUSTAL View is a graphical user interface for the official German Federal Environmental Agency air dispersion model, AUSTAL2000.
The AUSTAL2000 model was developed according to Germany's air pollution control regulation TALuft (Technical Instructions on Air Quality). AUSTAL2000 is a Lagrangian particle tracking air dispersion model that contains its own diagnostic wind field model (TALdia). The model takes into account the influence of topography on the wind field and therefore on the dispersion of pollutants.
Автор: Williams
Дата: 26 июля 2015
Просмотров: 683
Lakes Environmental ARTM View v1.4.2
ARTM View is a graphical user interface for the German Federal Office for Radiation (BfS) ARTM model. The ARTM model calculates the dispersion and deposition of released airborne radioactive materials in the atmosphere. ARTM View is the new standard for the dispersion and deposition calculation of airborne radioactive materials according to the German Nuclear Act. The ARTM model is based on the "TA Luft" and the "AUSTAL2000 model". AUSTAL2000 is a Lagrangian particle tracking air dispersion model from the German Federal Environmental Agency (UAB) (see AUSTAL View). Dose calculations were not included in the ARTM model. More info.
Автор: Williams
Дата: 25 июля 2015
Просмотров: 2 201
Lakes Environmental AERMOD View v8.9.0
AERMOD View is a complete and powerful air dispersion modeling package which seamlessly incorporates the following popular U.S. EPA air dispersion models into one integrated interface: AERMOD, ISCST3, ISC-PRIME.
These US EPA air dispersion models are used extensively to assess pollution concentration and deposition from a wide variety of sources.
The AMS/EPA Regulatory Model (AERMOD) is the next generation air dispersion model based on planetary boundary layer theory. AERMOD utilizes a similar input and output structure to ISCST3 and shares many of the same features, as well as offering additional features. AERMOD fully incorporates the PRIME building downwash algorithms, advanced depositional parameters, local terrain effects, and advanced meteorological turbulence calculations.