Ground bottom flow formula (Water Overlay): Difference between revisions
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The seepage is calculated using the following formula: | The seepage is calculated using the following formula: | ||
: <math>\Delta s = \frac{h_{d}(t) - h_{x,y}}{ | : <math>\Delta s = \frac{h_{d}(t) - h_{x,y}}{c_{x,y}} \cdot \frac{\Delta t}{24 \cdot 60 \cdot 60}</math> | ||
The external seepage head is variable over time by the introduction of h<sub>v,t</sub> | The external seepage head is variable over time by the introduction of h<sub>v,t</sub> | ||
: <math>h_d(t) = | : <math>h_d(t) = h_c_{x,y} + h_{v,t}(t)</math> | ||
Finally, calculate the actual amount of water seeping into (or out of) the ground from the bottom. | Finally, calculate the actual amount of water seeping into (or out of) the ground from the bottom. |
Revision as of 09:32, 14 August 2020
Underground seepage (from (or to) outside the project area) is calculated per cell.
The seepage is calculated using the following formula:
The external seepage head is variable over time by the introduction of hv,t
- Failed to parse (Conversion error. Server ("https://wikimedia.org/api/rest_") reported: "Cannot get mml. TeX parse error: Double subscripts: use braces to clarify"): {\displaystyle h_{d}(t)=h_{c}_{x,y}+h_{v,t}(t)}
Finally, calculate the actual amount of water seeping into (or out of) the ground from the bottom.
Where:
- = The underground seepage which takes place, in meters.
- = Computational timestep in seconds.
- = Ground water head in the grid cell.
- = 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
See also
- The formula is based on the formula of Pankow for estimating seepage
- Seepage result
- Seepage geotiffs
- Seepage fluctuation