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CANARINA:
DESCAR:
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Mathematical algorithms:
The application uses two different mathematical models: Buoyant jet model or Stratified model. The Buoyant model is ideal for pollutant discharges located in the proximities of the coast and in rivers, (using little depth). This model is based on a time-independent Gaussian equation which simulates the pollutant dispersion in the water. The Stratified model takes into account the formation of the picnocline in the sea. This model is ideal for outfall discharges in the sea (using a lot of depth). The program calculates the pollutant concentration in each point of the water considering each one of the pollutant sources and the conditions of the water.
Algorithms I - Algorithms II - Algorithms III - Algorithms IV - Algorithms V - Algorithms VI - Algorithms VII
Canarina Algoritmos Numéricos, S.L. Environmental software · environmental software solutions Canary Islands, Spain e-mail: Contact us
European Union · network on Pollution Member of MAPO: European network on Marine Pollution. Project funded by the European Commission through the 6th Framework Programme for Research and Development
DESCAR software solutions: This application has been used in great number of environmental reports, courses and water pollution studies in the last years. We currently have users in more than 10 countries. Water pollution reports: Essex - outfall canal - northern outfall -Shropshire - outfall pipe - Lancashire - stormwater modeling - Oxfordshire - transport modeling - Derbyshire - basin modeling -Aberdeen - modeling management - design modeling - systems modeling - Armagh - watershed modeling - plant modeling - project modeling - Bangor - gis modeling - road modeling - urban modeling - Bath - sewage outfall - pipe outfall - sewer outfall - Belfast - flood modeling - groundwater modeling - hydrology modeling - Birmingham - runoff modeling - wastewater modeling - Bradford - river modeling - lake modeling - water resources modeling - Brighton & Hove - environmental modeling - wastewater outfall - simulation modeling - Bristol - drainage outfall - storm water outfall - outfall stormwater - outfall design - Cambridge - outfall channel - pond outfall - fluent modeling - Nottingham - outfall protection - outfall structure - modeling theory - Oxford - turbulent modeling - thermal modeling - particle modeling - Peterborough - contamination modeling - water quality modeling - area modeling - Plymouth - construction modeling - water pollution modeling - water modeling - Portsmouth - river outfall -stream modeling - analysis modeling - Preston - outfall monitoring - surface modeling - sewer modeling - Ripon - solution modeling - outfall construction - storm water modeling - Salford - ocean outfall - outfall system - sewer outfall - Salisbury - wastewater outfall - marine outfall - sewage outfall -
Sheffield - outfall pipes - effluent outfall - sea outfall - St Albans - storm sewer outfall - left bank outfall drain - outfall drain - St David's - diffusion modeling - heat transfer modeling - pipe modeling - Stirling - modeling equation - fluid modeling - fluids modeling - Stoke-on-Trent - deep ocean outfall - fluid flow modeling - velocity modeling - Sunderland - outfall tunnel - outfall diffuser - long sea outfall - Swansea - culvert outfall - outfall design - submarine outfall Truro - outfall construction - outfall structure - outfall channel - Wakefield - stormwater outfall - surface water outfall - combined sewer outfall - Wells - storm drain outfall - outfall structures - drainage outfall - Westminster - outfall pipeline - water outfall - brightwater outfall - Winchester - outfall protection - sewerage outfall - river outfall -
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