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Precipitation runoff from urban areas can be recorded by an increase of total wastewater flow in combined sewer systems.
It encompasses the dynamic relationships among precipitation, runoff, evaporation, and changes in ground and surface water storage.
Ecohydrological processes including precipitation runoff, soil moisture storage, and erosion are strongly influenced by vegetation.
Furthermore, less of this energy can be used for evaporation in urban areas, which characteristically exhibit greater precipitation runoff from streets and buildings.
For example, tall buildings, paved streets, and parking lots affect wind flow, precipitation runoff, and the energy balance of a locale.
Therefore contamination can be carried away by foot traffic or precipitation runoff.
Similar(16)
These uncertainties are clearly reflected in the precipitation-runoff predictions of three urban drainage systems.
A Pettitt test indicates a change in the precipitation-runoff relationship in the late 1990s.
Identification of proper parameterizations of spatial heterogeneity is required for precipitation-runoff models.
These techniques have been used in many hydrological modeling studies, but few have applied data assimilation to ETa within a distributed precipitation-runoff catchment modeling framework.
To reach conclusions as general as possible, we compare the performance of six existing SARs combined with two different precipitation-runoff models.
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