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(Module Vegetation)
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#Compute Mass Balance for each property
 
#Compute Mass Balance for each property
 
#Take WATER_COLUMN_COEF from module and data file
 
#Take WATER_COLUMN_COEF from module and data file
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 +
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====Module Porous Media ====
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#Distribute saturation differently
  
 
====Module PorousMediaProperties====
 
====Module PorousMediaProperties====
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#Add the Possibility to use implicit advection diffusion (thomas3D)
 
#Add the Possibility to use implicit advection diffusion (thomas3D)
 
#Get discharges flux and boundary flux in to advection diffusion
 
#Get discharges flux and boundary flux in to advection diffusion
 +
#Create rills (rill cells and area for flux defined with drainage accumulation computation)
  
 
====Module Runoff====
 
====Module Runoff====

Revision as of 20:25, 25 February 2010

[Task] [Priority] [MonthToFinish]

  1. Validate Model with analitical solutions - porous media and runoff
  2. Validate Model with erosion/deposition data (Jose)
  3. Compare Vegetation growth and erosion with SWAT in subbasin of Save and Enxoe
  4. Colocar modelo pesticidas MOHID
  5. Article 1 - part 1 (David Brito) Hidrology of MOHID Land and validation - analitic; part 2 (David Bailly) - Erosion and validation (José data)
  6. Article 2 - SWAT and Mohid Land
  7. Article 3 - application in Save (D Bailly)
  8. Article 4 - application in Enxoé (D Brito) - functioning of basin in one year and in events
  9. Article 5 - pesticides


Module Basin

  1. Compute Mass Balance for each property
  2. Take WATER_COLUMN_COEF from module and data file


Module Porous Media

  1. Distribute saturation differently

Module PorousMediaProperties

  1. Test interaction with river [Urgent] [Feb10]
  2. Construct log to screen with properties [Medium] [Feb10]
  3. Get transpiration flux in to advection diffusion
  4. Update theta for ModuleAdvectionDiffusion (remove fluxes from river and vegetation and update again?)
  5. Compare solute transport to numeric solution

Module RunoffProperties

  1. Construct bottom fluxes for properties - follow "BOTTOM_FLUXES" in DrainageNetwork. Property will have a water matrix and bottom matrix. First approach can be only transport, concentrate when part of water infiltrates and deposition when all water infiltrates. Then after, erosion and deposition can be programmed (see Drainage Network again). [Medium] [Feb10]
  2. Construct partition between dissolved and particulate - follow "PARTICULATE" in water properties. [Medium] [Feb10]
  3. Construct log to screen with properties [Medium] [Feb10]
  4. Add the Possibility to use implicit advection diffusion (thomas3D)
  5. Get discharges flux and boundary flux in to advection diffusion
  6. Create rills (rill cells and area for flux defined with drainage accumulation computation)

Module Runoff

  1. Construct, modify and kill timeseries [Medium] [Feb10]

Module Vegetation

  1. Code the excess water stress [Urgent] [Mar10]
  2. Create DB for vegetation and automatically generate data whitout writting in vegetation data file. Create a file to check what was read. [Medium] [Mar10] Use David Bailly Work to write in on file
  3. Give porous media properties fluxes in g/s
  4. How to account leaf flux to soil - for manning roughness?
  5. Check equation of SWAT to separate potential evaporation using LAI to see if is the same as used in Basin
  6. Limit transpiration by evaporation? as for biomass?
  7. Uptake also ammonia?