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Hydrologic simulation in water-yield analysis
Storage requirements to maintain high yield were determined independently for each half of 12 long streamflow records for locations throughout United States having negligible upstream regulation; these determinations based on half-record lengths on order of 25 yr differed by factor of two or more in 2/3 of cases; thus, traditional means of designing water resource project by assuming repetition of past streamflows is subject to large uncertainties; method is described for generating monthly streamflows that have basic frequency and persistence characteristics of recorded data on which they are based, and that could presumably occur in future as likely as could repetiton of past events.
Hydrologic simulation in water-yield analysis
Storage requirements to maintain high yield were determined independently for each half of 12 long streamflow records for locations throughout United States having negligible upstream regulation; these determinations based on half-record lengths on order of 25 yr differed by factor of two or more in 2/3 of cases; thus, traditional means of designing water resource project by assuming repetition of past streamflows is subject to large uncertainties; method is described for generating monthly streamflows that have basic frequency and persistence characteristics of recorded data on which they are based, and that could presumably occur in future as likely as could repetiton of past events.
Hydrologic simulation in water-yield analysis
ASCE -- Proc (J Irrigation Drainage Div)
Beard, L.R. (Autor:in)
1967
10 pages
Aufsatz (Zeitschrift)
Englisch
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