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In order to model a river basin, the [[Special:MyLanguage/Begriffsdefinitionen#Wasserwirtschaftliches System, Systembelastung, Systemelement|water management system]] must be converted into a mathematically usable representation. | In order to model a river basin, the [[Special:MyLanguage/Begriffsdefinitionen#Wasserwirtschaftliches System, Systembelastung, Systemelement|water management system]] must be converted into a mathematically usable representation. | ||
The [[Special:MyLanguage/Begriffsdefinitionen#Simulationsmodell, Speicherbetriebsmodell| | The [[Special:MyLanguage/Begriffsdefinitionen#Simulationsmodell, Speicherbetriebsmodell|storage management simulation]] requires the mathematically usable representation of a water management system. Thereby reality has to be abstracted, divided into hydrological or hydraulic processes, and then be put into algorithms. The result of the abstraction are different [[Special:MyLanguage/Beschreibung der Systemelemente|system elements]]. The most important properties of a system element are listed below. | ||
[[Special:MyLanguage/Datei:Schema_Systemelement.png|thumb|300px|General abstract representation of a system element]]. | [[Special:MyLanguage/Datei:Schema_Systemelement.png|thumb|300px|General abstract representation of a system element]]. |
Version vom 22. September 2020, 09:34 Uhr
In order to model a river basin, the water management system must be converted into a mathematically usable representation. The storage management simulation requires the mathematically usable representation of a water management system. Thereby reality has to be abstracted, divided into hydrological or hydraulic processes, and then be put into algorithms. The result of the abstraction are different system elements. The most important properties of a system element are listed below. thumb|300px|General abstract representation of a system element.