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INPUT DATA:

Data I

Data II

Data III

Import

Commands

Graphs I

Graphs II

 

ALGORITHMS:

Algorithms I

Algorithms II

Algorithms III

Algorithms IV

Algorithms V

Algorithms VI

 

POLLUTANTS:

Pollutants I

Pollutants II

The sea I

The sea II

Pycnocline

 

 

 

 

 

 

 

       Canarina Spain · Canarina software

Graphs I

                 

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In the center of the program window, we will draw and we will calculate the different polluting processes. We can draw using two different planes: parallel to the surface of the water (XY) and perpendicular to the surface of the water (XZ). There is a grid in the XY-plane. The coordinate origin is on the left bottom corner (X=0, Y=0) in XY-planes (parallel to the surface of the water). In addition, the coordinate origin is on the left bottom corner (X=0, Z=0) in XZ-planes (perpendicular to the surface of the water).

 

XY-Planes (parallel to water surface):

In such a case, the program window is a XY-plane (parallel to the water surface). A pollutant point source (outfall pipeline) 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. If you select XY-Plane, a grid appears. On the left bottom corner, two different text boxes appear: The position of the XY-plane with respect to the water surface (XY-plane height) and the pollutant concentration value (grams per cubic meter, g/m3). Point the mouse where you want in the program window and the concentration value will be shown in the text box. Remember that 1g/m3=1mg/L. The pollutant concentrations will be calculated in a parallel plane to the water surface (XY-Plane). The plane height will be determined by the user (zr).

 

 

All the points of the XY-plane will be to a zr height. The zr 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 (zr values). In this way, the physical form of the pollutant plume can be studied.

 

XZ-Planes (perpendicular to water surface):

In such a case, the program window is a XZ-plane (perpendicular to the water surface). A pollutant point source (outfall pipeline) 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 (grams per cubic meter, g/m3). Point the mouse where you want in the program window and the concentration value will be shown in the text box. Remember that 1g/m3=1mg/L.The pollutant concentrations will be calculated in a perpendicular plane to the water 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.

 

INPUT DATA: Data I - Data II - Data III - Import - Commands - Graphs I - Graphs II

 

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

pollution and water

 

CANARINA: Home - Air pollution · DISPER - Noise pollution · CUSTIC - Water pollution · DESCAR - Contact us

DESCAR: DESCAR: water pollution - Data I - Algorithms I - Pollutants I

SOLUTIONS: DESCAR: water pollution - Advantages - Price

INPUT DATA: Data I - Data II - Data III - Import - Commands - Graphs I - Graphs II

ALGORITHMS: Algorithms I -  Algorithms II - Algorithms III - Algorithms IV - Algorithms V - Algorithms VI

POLLUTANTS: Pollutants I - Pollutants II - The sea I - The sea II - Pycnocline

 

                 

 

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 and courses in Spain:

 

Derbyshire  - thermal simulation - dispersion simulation -

Dorset  - water quality - environmental auditing software

Plymouth - flat water discharge hose - oil water separator discharge - brown water discharge -

Portsmouth - water pollution discharge - oil water discharge - sea water discharge -

Preston - effluent water discharge - process water discharge - water discharge laws -

Ripon - water discharge data - waste water discharge regulations - water discharge license -

Salford - discharge of surface water - waste water discharge limits - submarine ground water discharge -

Salisbury - water flow discharge - discharge where the water table intersects the ground surface -

Sheffield - water discharge measurements - discharge of ground water - salt water discharge -

St Albans - water discharge guidelines -  storm water discharge permits - surface water discharge limits -

St David's - foul water discharge - mine water discharge - wash water discharge -

Stirling - surface water discharge permit - water discharge monitoring - water discharge definition -

Stoke-on-Trent - water discharge unit - water heater discharge line - water based discharge -

Sunderland - effluent reuse - municipal discharge - effluent contamination -

Swansea - effluent equipment - effluent pollution -  activated sludge effluent -

Truro - effluent recycling - industrial discharge - effluent waste water -

Wakefield - sewage treatment effluent - effluent sludge - lime discharge -

Wells - effluent treatment plant - river discharge - discharge water -

Westminster - effluent water treatment plant - effluent waste -  effluent wastewater -

Winchester - effluent sewerage - effluent sewage - effluent sewer -

Wolverhampton - effluent plant - effluent filter - effluent treatment -

Worcester - effluent tanks - effluent filtration - sewage treatment discharge -

York - effluent waste water treatment - effluent removal - effluent pumps -

Aberdeen - simulation modeling - heat transfer flow - fluent flow modeling -

Armagh - fluid diffusion - fluid flow visualization - fluid flow heat transfer -

Cornualles  - fluid flow equation - environmental auditing software

 

Somerset   - modeling theory - fluid equation -

Nottingham - thermal flow - unsteady flow modeling - fluid flow study -

Bangor - fluid flow cylinder - turbulence flow - fluid flow simulations -

Bath - flow dynamics - fluid simulation - fluid flow dynamic -

Belfast - fluid flow analysis - heat transfer fluid - fluid flow mechanics -

Birmingham - heat transfer modeling - fluid flow theory - fluid flow simulation -

Bristol - fluid transport - heat flow - flow simulation -

Cambridge - flow equations -  dynamic modeling - analysis modeling -

Bradford - temperature flow - flow method - fluid flow modeling -

Brighton & Hove - modeling methods - flow calculation - flow analysis -

Cumbria   - fluid dynamics modeling - environmental auditing software

Suffolk  - fluid models - modeling method - pipe flow -

Suffolk  - diffusion simulation - environmental auditing software

Cornualles  - flow visualization - thermal simulation -

Somerset   - fluid flow simulator - numerical flow simulation - heat transfer simulation -

Shropshire  - hydrodynamic simulation - flow mechanics -

Bangor - simulation dynamics - simulation modelling -  physics simulation -

Bath - flow models - liquid flow - flow transient -

Belfast - fluid flow simulation - water flow simulation - fluid flow simulation software -

Aberdeen - mixing simulation - simulation engineering - simulation models -

Armagh - computational simulation - dynamic simulation - dispersion simulation -

Cumbria   -  fflow simulation software - environmental auditing software

North Yorkshire   - flow calculation - flow viscosity -

Norfolk  -  sewage water treatment -

Suffolk  - water treatment works - water treatment supply -

Derbyshire  - water treatment process - industrial water treatment -

 

 

 

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.