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DISPER:

DISPER

Solutions 

Data 

Algorithms

Emissions 

Graphs  

Google maps

GIS

 

SOLUTIONS: DISPER  

solutions

advantages

Price

DEMO

 

COMMANDS:

Input data I

Input data II

Input data III

Input data IV

average

Import

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

 

   

Graph II · DISPER software

                 

DEMO Download - Price

 

 

XZ-Planes (perpendicular to ground surface):

 

In such a case, the program window is a XZ-plane (perpendicular to the ground surface). A pollutant point source (stack) is represented by a small square. In the Status bar at the bottom, we have X,Y and Z coordinate values in meters and data on our environmental system. Point the mouse where you want in the program window and the X,Y and Z values will be shown in the status bar at the bottom. On the left bottom corner, a text box appears: the pollutant concentration value (micrograms per cubic meter, ug/m3). Point the mouse where you want in the program window and the concentration value will be shown in the text box. The pollutant concentrations will be calculated in a perpendicular plane to the ground surface (XZ-Plane). The plane height will be determined by the user (yr).

 

 

All the points of the XZ-Plane will be to a yr height. The yr value is chosen by the user before the calculation. We will be able to make many calculations considering different plane heights. The different plane heights will be determined by the user (yr values). In this way, the physical form of the pollutant plume can be studied.

 

 

Example 2:

Both XY-Calculation and XZ-Calculation have been used in our simulation. In this way, the physical form of the pollutant plume can be obtained. Calculation in both XY-plane (parallel to ground surface) and XZ-plane (perpendicular to ground surface). The fucshia squares represent three point sources (stacks). The red colour represents high pollutant concentrations. Pollution map of Nitrogen oxides (NOx) produced by en industrial stack. The wind angle is 0 degrees (N), the wind velocity is  5 m/s and the pollutant flow rate is 1g/s. The fucshia squares represent the point sources (position of the stacks).  We have a three-dimensional image of the pollutant plume with these two computer screens.

 

 

Pollution map produced by continuous discharge in this region. Top: the orange horizontal line indicates us the position of the XZ-Plane. Bottom: The fucshia line  represents a point source (stack). The red colour represents high pollutant concentrations.

 

Graphs I - Graphs II - Graphs III - Graphs IV

 

Canarina Algoritmos Numéricos, S.L.

Environmental software solutions

Software para impacto del medio ambiente  

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

ethylene dispersion modeling

 

 

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.

Peterborough - emissions from motor vehicles - gasoline vehicle emissions - car emissions -

Plymouth - vehicle emmissions - co2 emissions vehicles - vehicle emissions standardcar emission -

Portsmouth - vehicle emissions inspections - measuring air quality

Preston - carbon dioxide emissions - co2 emissions - truck emissions - air pollution impact

Ripon - emissions - diesel emissions - emissions test - measuring air quality

Salford - reduce emissions - carbon emissions - fuel economy car - air pollution impact

Salisbury - hybrid cars emissions - vehicle air pollution - hybrid emissions - air pollution impact

Sheffield - vehicle pollution - vehicle pollutants - vehicle check - measuring air quality

St Albans - automobile emissions - vehicle epa - air pollution emissions - air pollution impact

St David's - vehicle inspections - gasoline emissions - colorado emissions - air pollution impact

Stirling - motorcycle emissions - vehicle fuel economy - measuring air quality

Stoke-on-Trent - virginia vehicle emissions - vehicle emissions tests - vehicle emission tests -

Sunderland - vehicle emissions calculator - vehicle emissions inspection program - zero emission vehicle mandate -

Swansea - vehicle emission regulations - illinois vehicle emission testing - washington vehicle emission -

Truro - vehicle emission ratings - arizona vehicle emission - vehicle emissions control -

Wakefield - vehicle carbon dioxide emissions - vehicle emissions tax - maryland vehicle emissions test -

Wells - different types of vehicle engine - different exhaust emissions - vehicle emission factors -

Westminster - vehicle emissions table - vehicle emissions testing locations - diesel vehicle emissions -

Winchester - problems in reducing harmful vehicle emissions - vehicle emission standard -

Wolverhampton - ontario vehicle emissions - emissions by vehicle - il vehicle emissions -

Worcester - california vehicle emission standards - motor vehicle emissions testing - vehicle carbon emission -

York - car vehicle emissions - low emissions vehicles - hybrid vehicle emissions - measuring air quality

 

Bradford - air dispersion modelling - air pollution modeling - model air shows - air model - air fix models -

Brighton & Hove - model hot air balloons - air pollution modelling - air dispersion model -

Bristol -  epa air modeling - air conditioning model number - indoor air modeling - measuring air quality

Cambridge -  NH3 air pollution modeling in highways - HNO3 air pollution dispersion modeling air plane models

Canterbury -  model air compressor - combat air model - model hot air ballon - measuring air quality

Cardiff -  air model firearms - air pollution models - guideline on air quality models -

Carlisle - gaussian modeling - wind modeling - air atmosphere - modeling models - air recipe - sculpey modeling -

Chester -  NH3 air pollution modeling in highways - HNO3 air pollution dispersion modeling air dispersion models -

Chichester -  air liquid - industrial modeling - ceramic modeling - air sculpture - air recipes -

City of London -  plume modeling - sculpting modeling - southern modeling - fimo modeling epa modeling -

Coventry -  plasticine modeling - air gas - sculpture modeling - air polution - claymation modeling -

Derby - HNO3  modeling clay modeling - air clay - paper modeling - diesel modeling - air whistles - air pollution -

Derry -  air dry - air baker - health modeling - air pressure - air roaster - environmental modeling -

Dundee - liquid modeling - air stack - stack modeling - air hardening - fuel modeling -

Durham -  atmospheric modeling - craft modeling - air southern - air ball - atmosphere modeling - indoor modeling -

Edinburgh -  carbon dioxide dispersion modeling - NH3 air pollution modeling in highways -

Ely -  HNO3 air pollution dispersion modeling air pollutants - dispersion modeling - air plume - 3d modeling -

Exeter -  air paper - air 3d - air pollutant - air monitoring - air craft -

Glasgow -  emission modeling - temperature modeling - gas modeling - water modeling -

Gloucester -  control air - dust modeling - process modeling - air dispersion - air source -

Hereford - NOx  model - VOC air pollution modeling in plants - Cl2 air pollution dispersion modeling air industrial -

Inverness -  NO air pollution calculation - SOx air pollution dispersion simulation near hospitals -

 

 

Copyright © 2005 Canarina Algoritmos Numéricos, Sociedad Limitada Unipersonal CIF-B38803110 registered for electronic commerce in sheet TF-35526, sheet 1 of the volume 2.671 of the General Section, First Registration, Registro de la Propiedad Número 2 y Marcantil of , Spain. All rights reserved.