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CANARINA:
DISPER:
SOLUTIONS: DISPER
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ALGORITHMS:
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GRAPHS:
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Import pictures: Picture size.- The displayed image size will depend on the size that had when it was saved. If it is necessary, modify the picture size before loading the image (for example, you can use windows Paint, Adobe Photoshop,… ). You will be able to load BMP maps generated by AutoCad. Scale command.- Bitmaps and scanned maps must be loaded into memory and then adapted to the program scale (we will make use of the Scale command). The X-Axis width (meters) in the program window can be easily changed to be able to compare both images (simulation results and background maps). Then, the X-Axis width (in meters) of the imported map and the X-Axis width (in meters) of the program window match together. The imported images are not stored physically in the simulation process. Terrain elevations (represented on the imported map) don’t interact in the simulation process. We haven't the possibility to zoom an imported map with the Zoom command. This command only acts in the calculation process. If it is necessary, zoom the map before loading the image. Zoom command.- We have the possibility to zoom a part of the program window with the Zoom command. However, we won't be able to enlarge background pictures with this command. If it is necessary, zoom the map before loading the background image. This command only acts in the calculation process. This way, we can place a point source in a side of the computer screen and we can calculate the concentrations in another different detailed region.
Export results: With the Export Picture command you will be able to export images and pictures (BMP files). These images will contain the background picture and the simulation results. Many programs, computer applications and word processors (AutoCad, 3d Studio, ArcView, MS Word,...) import BMP files. You will be able to load images generated by DISPER.
Input data I - Input data II - Input data III - Input data IV - Temporal average - Import and export data - Software commands
Air pollution map (XY-Plane) produced by continuous discharge in time (five stacks). The red colour represents high pollutant concentrations. Wind: E (90 degrees).
Air pollution map (XY-Plane) produced by continuous discharge in time (five stacks). The red colour represents high pollutant concentrations. Wind: NE (45 degrees).
Canarina Algoritmos Numéricos, S.L. Environmental software solutions Software for environmental impact Canary Islands, Spain e-mail: contact us
European network on pollution · European Union Member of MAPO: European network on Marine Pollution. Project funded by the European Commission through the 6th Framework Programme for Research and Development traffic pollution
CANARINA: Home - Air pollution · DISPER - Noise pollution · CUSTIC - Water pollution · DESCAR - Contact us DISPER: Air pollution dispersion · DISPER - Solutions - Data - Algorithms - Emissions - Graphs - ISC3 (VOL. 2) SOLUTIONS: Air pollution dispersion · DISPER - Software solutions - Software advantages - Price - DEMO download COMMANDS: Input data I - Input data II - Input data III - Input data IV - Temporal average - Import and export data - Software commands ALGORITHMS: Algorithms I - Algorithms II - Algorithms III - Algorithms IV - Algorithms V - Algorithms VI - Algorithms VII - Algorithms VIII - Algorithms IX - Algorithms X EMISSIONS: Emissions I - Emissions II - Emissions III - Pollutants I - Pollutants II GRAPHS: Graphs I - Graphs II - Graphs III - Graphs IV
DISPER software solutions: This application has been used in great number of environmental reports, air pollution courses and air pollution studies in the last years. We currently have users in more than 10 countries. impact assessments: CO air dispersion modeling in Guipuzcoa - air pollution report industries: CO air dispersion modeling in Salamanca - air pollution report chemical plants: NH3 air dispersion modeling in Madrid - air pollution report Roads: NO2 air dispersion modeling in Murcia - air pollution report Portugal: wind dispersion - gaussian dispersion model - gaussian dispersion - impact assessments: dispersion model - dispersion modeling - dispersion modelling -chemical plants: gas dispersion - pollution dispersion - air deposition - air pollution report industries: air ambient - air nox - air polution - air quality reportsRoads: air waves - air pressure - waves dispersion - Italy: urban dispersion - air transport model - stack dispersion - impact assessments: air quality dispersion modeling - roadway air dispersion modeling - air dispersion modeling software - chemical plants: air dispersion modelling guideline - air dispersion modelling guideline - fabric air dispersion - Aberdeen - atmospheric dispersion - dispersion models - lagrangian dispersion - Armagh - mixing dispersion - air quality reports Bangor - air quality consulting - air quality testing - environmental training - Bath - plume dispersion - aermod dispersion - adms dispersion - Belfast - indoor air quality - air quality modeling - air quality test - Birmingham - air quality modelling - air pollution modeling - air pollution control - air quality - Bradford - air quality dispersion - air pollutant dispersion - air pollution dispersion modelingair quality dispersion modelling - Brighton & Hove - air dispersion modelling - air dispersion model - air dispersion modeling - Bristol - dispersion - air plume - pollutant dispersion - air quality reports Cambridge - dispersion of air - roadway air dispersion - the dispersion of air - Canterbury - air dispersion software - and air dispersion - dispersion in air - Cardiff - density dispersion - density air - air class - air quality reports Carlisle - air functions - air data - air dispersion - air quality reports Chester - for air dispersion modeling - air quality reports
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