Water Overlay ground model cheatsheet: Difference between revisions

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|title=Unsaturated zone
|title=Unsaturated zone
|type=parameters
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   ! Parameter ! Unit ! Description
   ! Parameter !! Unit !! Description
   |-
   {{!}}-
   |UNSATURATED_FRACTION | fraction | Initial value saturation<br>E.g. 0.5 means pores are 50% filled with water.
   {{!}} UNSATURATED_FRACTION     {{!}}{{!}} fraction {{!}}{{!}}  Initial value saturation<br>E.g. 0.5 means pores are 50% filled with water.
   |-
   {{!}}-
   |WATER_STORAGE_PERCENTAGE | m³/m³ | Effective porosity. Determines water storage capacity.
   {{!}} WATER_STORAGE_PERCENTAGE {{!}}{{!}} m³/m³     {{!}}{{!}}  Effective porosity. Determines water storage capacity.
   |-
   {{!}}-
   |GROUND_INFILTRATION_MD | m/day | Maximum infiltration speed in this type of terrain.  
   {{!}} GROUND_INFILTRATION_MD   {{!}}{{!}} m/day     {{!}}{{!}}  Maximum infiltration speed in this type of terrain.  
   |}
   {{!}}}
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Revision as of 08:17, 14 March 2025


Core principles

In the 2-dimensional grid model of the Tygron Platform, water infiltrates from the surface, infiltrates through the unsaturated zone and is partially stored, after which it reaches the saturated zone. Here, horizontal flow occurs, depending on hydraulic gradients and permeability, and everything is simulated in a time-dependant context. There is no vertical (and no radial) flow in the saturated zone.


Unsaturated zone Terrain Type: Attributes
Parameter Unit Description
UNSATURATED_FRACTION fraction Initial value saturation
E.g. 0.5 means pores are 50% filled with water.
WATER_STORAGE_PERCENTAGE m³/m³ Effective porosity. Determines water storage capacity.
GROUND_INFILTRATION_MD m/day Maximum infiltration speed in this type of terrain.