Ground bottom flow formula (Water Overlay): Difference between revisions

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* <math>\Delta s_{x,y}</math> = The water level change due to seepage, in meters.
* <math>\Delta s_{x,y}</math> = The water level change due to seepage, in meters.
* <math>\Delta t</math> = Computational timestep in seconds.
* <math>\Delta t</math> = Computational timestep in seconds.
* <math>h_{x,y}</math> = Ground water head in the grid cell.
* <math>h_{x,y}</math> = [[Groundwater level formula (Water Overlay)|Ground water head]] in the grid cell.
* <math>h_{d}(t)</math> = additional ground water level (or head) of the external zone causing the seepage at time t, in meters
* <math>h_{d}(t)</math> = Additional ground water level (or head) of the external zone causing the seepage at time t, in meters
* <math>h_{c_{x,y}}</math> = constant ground water level (or head) of the external zone causing the seepage, in meters
* <math>h_{c_{x,y}}</math> = Constant ground water level (or head) of the external zone causing the seepage, in meters
* <math>h_{v}(t)</math> = additional variation of seepage head over time
* <math>h_{v}(t)</math> = Additional variation of seepage head over time
* <math>c_{x,y}</math> = resistance of the separating layer in days
* <math>c_{x,y}</math> = Resistance of the separating layer in days
* <math>ws</math> = water storage fraction of the soil
* <math>ws</math> = Water storage fraction of the soil
* <math>\Delta w_{x,y}</math> = seeped in water in m
* <math>\Delta w_{x,y}</math> = Seeped in water in m


==Notes==
==Notes==

Revision as of 10:57, 2 September 2020

Underground seepage from outside the project area is calculated per grid cell.

The water level change due to seepage is calculated using the following formula:

The external seepage head is variable over time by the introduction of hv,t:

Finally, the actual amount of water seeping into the ground from the bottom is calculated as followed:

Where:

  • = The water level change due to seepage, in meters.
  • = Computational timestep in seconds.
  • = Ground water head in the grid cell.
  • = Additional ground water level (or head) of the external zone causing the seepage at time t, in meters
  • = Constant ground water level (or head) of the external zone causing the seepage, in meters
  • = Additional variation of seepage head over time
  • = Resistance of the separating layer in days
  • = Water storage fraction of the soil
  • = Seeped in water in m

Notes

  • and can both be provided as spatially variable values.
  • can be provided as a set of values, variable over time.
  • A seepage head lower than the water level in the project is also allowed, resulting in water seeping out to a region outside the project area.

See also