Translations:Einzugsgebiet/21/en: Unterschied zwischen den Versionen
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Depression losses (MV) are specified by the user. The default and simultaneously maximum value in the model is 4 mm. | Depression losses (MV) are specified by the user. The default and simultaneously maximum value in the model is 4 mm. | ||
Depression losses represent an average value for an sloped surface. Since depressions are not evenly distributed and runoff already begins before all depressions are completely filled, it is assumed that | Depression losses represent an average value for an sloped surface. Since depressions are not evenly distributed and runoff already begins before all depressions are completely filled, it is assumed that | ||
* 1/3 of the impermeable area has a reduced depression loss of 1/3& | * 1/3 of the impermeable area has a reduced depression loss of 1/3⋅MV | ||
* 1/3 of the impermeable area has the average depression loss of MV | * 1/3 of the impermeable area has the average depression loss of MV | ||
* 1/3 of the impermeable area has an increased depression loss of 5/3& | * 1/3 of the impermeable area has an increased depression loss of 5/3⋅MV | ||
Therefore, runoff already occurs when the precipitation reduced by the evaporation rate exceeds the wetting loss and 1/3 of the depression losses (in case of dry starting conditions). The assumptions described above are shown as a schematic in the following figure. | Therefore, runoff already occurs when the precipitation reduced by the evaporation rate exceeds the wetting loss and 1/3 of the depression losses (in case of dry starting conditions). The assumptions described above are shown as a schematic in the following figure. |
Aktuelle Version vom 25. November 2020, 11:01 Uhr
Depression losses (MV) are specified by the user. The default and simultaneously maximum value in the model is 4 mm. Depression losses represent an average value for an sloped surface. Since depressions are not evenly distributed and runoff already begins before all depressions are completely filled, it is assumed that
- 1/3 of the impermeable area has a reduced depression loss of 1/3⋅MV
- 1/3 of the impermeable area has the average depression loss of MV
- 1/3 of the impermeable area has an increased depression loss of 5/3⋅MV
Therefore, runoff already occurs when the precipitation reduced by the evaporation rate exceeds the wetting loss and 1/3 of the depression losses (in case of dry starting conditions). The assumptions described above are shown as a schematic in the following figure.