Difference between revisions of "Marmoset Watershed Simulation Model"

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* [[Tarsier Tutorial: Watershed simulation using the Marmoset Model]]
 
* [[Tarsier Tutorial: Watershed simulation using the Marmoset Model]]
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* [[Tarsier Tutorial: Adding GroundWater to Watershed Simulation]]
 
* [[Tarsier Modules]]
 
* [[Tarsier Modules]]

Revision as of 14:36, 15 June 2010

The Marmoset Model is a watershed hydrology simulation tool, for modeling runoff. It is implemented withing the Tarsier environmental modeling framework.

Tabs

Usees Marmoset requires Network data with landscape statistics from a hydroDEM, Precipitation series, and a model time object.

Geomorphology Some river parameters. The "Estimate channel geometry" button gives you the ability to view a cross section of the channel with a simple graphic representing stage

Watershed models

  • None - will not generate runoff from your precipitation series
  • Runoff coefficient - runoff = precipitation * catchment area * runoff coefficient
  • MarmoShed model - Uses the landscape parameters from the landscape table data for a more complex runoff calculation
  • Colobus model - ...

more to come...

Publications

  • Watson, F. & Vertessy, R. (2002). Development of a pilot local-scale environmental management support system for use in water supply sub-catchments in Pine Rivers Shire. Draft Final Report to Pine Rivers Shire Council and South East Queensland Water Corporation. CRC for Catchment Hydrology, 61 pp
  • Rob Vertessy, Fred Watson, Joel Rahman, Susan Cuddy, Francis Chiew, Phil Scanlon, Shane Seaton, & Frances Marston (2001). New software to help manage river water quality in the catchments of the south-east Queensland region. In: Rutherfurd, I., Sheldon, F., Brierly, G. & Kenyon, C. (eds). Proc. 3rd Australian Stream Management Conference, Brisbane 27-29 August, 2001, pp. 611-616. http://science.csumb.edu/~fwatson/pubs/VertessyEtal_3ASM2001.pdf
  • Fred Watson, Joel Rahman, Shane Seaton (2001). Deploying environmental software using the Tarsier modelling framework. In: Rutherfurd, I., Sheldon, F., Brierly, G. & Kenyon, C. (eds). Proc. 3rd Australian Stream Management Conference, Brisbane 27-29 August, 2001, pp. 631-637. http://science.csumb.edu/~fwatson/pubs/3ASM_Paper_Watson_et_al_011001_WithHeader.pdf
  • Vertessy, R.A., Rahman, J.M., Watson, F.G.R., Argent, R.M., Cuddy, S.M. and Seaton, S.P. 2002 A regional water quality model designed for a range of users and for retrofit and re-use. Proceedings International Environmental Modelling and Software Society (iEMSs) Conference, A.E. Rizzoli and A.J. Jakeman (eds), Lugano Switzerland, 24-27, June 2002, vol. 3, pp. 312-317. http://science.csumb.edu/~fwatson/pubs/VertessyEtAl_Lugano2002.pdf
  • Chiew, F.H.S, Scanlon, P.J., Vertessy, R.A., & Watson, F.G.R. 2002. Catchment Scale Modelling of Runoff, Sediment and Nutrient Loads for the South-East Queensland EMSS, Cooperative Research Centre for CatchmentHydrology, Research Report 02/1, 47 pp. http://science.csumb.edu/~fwatson/pubs/ChiewEtAlEMSSReport_200201.pdf

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