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COMMANDS:

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ALGORITHMS:

Algorithms I

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EMISSIONS:

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Import and Export · software · air quality management

                 

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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.

 

 

software · air quality management

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.

 

Newry - air quality monitors - beijing air pollution - air quality analysis -

Norwich - quality air conditioning - air and water quality - how to reduce air pollution -

Nottingham - nitrogen oxides air quality modeling - carbon monoxide air quality modeling - environmental impact and toxic waste  air quality modeling -

Oxford - HNO3 air quality dispersion modeling - smog air quality modeling - particulate air quality modeling -

Peterborough - atmospheric environmental issues - gaussian plume calculation - chlorofluorocarbon  air quality modeling -

Plymouth - SOx air quality dispersion modeling - PM air quality dispersion modeling - NH3 air quality dispersion modeling -

Portsmouth - air quality report in schools - NOx air quality dispersion modeling - Cl2 air quality dispersion modeling -

Preston - photochemical  air quality modeling - biomonitoring of air quality plants - indoor air quality -

Dundee - NOx air quality dispersion modeling - Cl2 air quality dispersion modeling - SOx air quality dispersion modeling -

Durham - PM air quality dispersion modeling - NH3 air quality dispersion modeling - HNO3 air quality dispersion modeling -

Edinburgh - stack downwash modelization - particulates air quality modeling - photochemical smog air dispersion -

Ely - ozone air quality modeling - local air quality - pollution of air -

Exeter - air quality alert - air quality guidelines - current air quality -

Glasgow - the effects of air pollution - definition of air pollution - control of air pollution -

Gloucester - air quality assessment - impact of air pollution - source of air pollution -

Hereford - air quality report in schools - NOx air quality dispersion modeling - Cl2 air quality dispersion modeling -

Inverness - SOx air quality dispersion modeling - PM air quality dispersion modeling - NH3 air quality dispersion modeling -

Kingston upon Hull - HNO3 air quality dispersion modeling - volatile organic compounds air quality modeling - emissions and environmental degradation -

Lancaster - atmospheric environment report - about air pollution - bay area air quality -

Leeds - sources of air pollution - south coast air quality management district - air pollution effects -

Leicester - south coast air quality - air quality management district - air pollution causes -

Lichfield - reduce air pollution - epa air quality - south coast air quality management -

Lincoln - air pollution pictures - home air quality - air pollution statistics -

Aberdeen - indoor air pollution - effects of air pollution - causes of air pollution -

Armagh - what is air pollution - air quality services - air and water pollution - air pollution facts -

Bangor - indoor air quality testing - air quality test - air pollution - air pollution control -

 

Santa Cruz de la Sierra:  NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants -

La Paz:  HNO3 air quality calculation in plants - NOx air pollutants modeling in roads - SO2 air quality simulation -

El Alto:  NH3 air quality simulation - VOC air quality calculation - NOx air pollutants modeling in roads -

Cochabamba:  NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants

Sucre: SO2 air pollutants modeling in roads - VOC air quality calculation - CH4 air quality simulation

Oruro:  NH3 air quality simulation - VOC air quality calculation - NOx air pollutants modeling in roads

Tarija:  NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants -

Quillacollo: HNO3 air quality calculation in plants - NOx air pollutants modeling in roads - SO2 air quality simulation

Sacaba:  NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants -

Potosí: NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants

Montero: SO2 air pollutants modeling in roads - VOC air quality calculation - CH4 air quality simulation

Trinidad: HNO3 air quality calculation in plants - NOx air pollutants modeling in roads - SO2 air quality simulation

Yacuíba: VOC air quality calculation in plants - CH4 air pollutants modeling - SO2 air quality simulation -

Riberalta: NH3 air quality simulation - VOC air quality calculation - NOx air pollutants modeling in roads

Tiquipaya: NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants

Guayaramerín: SO2 air pollutants modeling in roads - VOC air quality calculation - CH4 air quality simulation

Viacha: HNO3 air quality calculation in plants - NOx air pollutants modeling in roads - SO2 air quality simulation

Llallagua: VOC air quality calculation in plants - CH4 air pollutants modeling - NOx air pollutants modeling in roads

Villazón: VOC air quality calculation in plants - CH4 air pollutants modeling - SO2 air quality simulation -

Bermejo: NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants -

Cobija: SO2 air pollutants modeling in roads - VOC air quality calculation - CH4 air quality simulation

San Ignacio de Velasco: VOC air quality calculation in plants - CH4 air pollutants modeling - NOx air pollutants modeling in roads

Tupiza: NH3 air quality simulation - VOC air quality calculation - NOx air pollutants modeling in roads -

Cotoca: VOC air quality calculation in plants - CH4 air pollutants modeling - NOx air pollutants modeling in roads

San Borja: NOx air pollutants modeling near hospitals - SO2 air quality simulation - NH3 air quality calculation in plants -

Villamontes: HNO3 air quality calculation in plants - NOx air pollutants modeling in roads - SO2 air quality simulation -