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[84910] Artykuł:

Stormwater Reservoir Sizing in Respect of Uncertainty

Czasopismo: Water   Tom: 11, Strony: 321-337
ISSN:  2073-4441
Opublikowano: 2019
 
  Autorzy / Redaktorzy / Twórcy
Imię i nazwisko Wydział Katedra Do oświadczenia
nr 3
Grupa
przynależności
Dyscyplina
naukowa
Procent
udziału
Liczba
punktów
do oceny pracownika
Liczba
punktów wg
kryteriów ewaluacji
Bartosz Szeląg orcid logo WiŚGiEKatedra Geotechniki, Geomatyki i Gospodarki Odpadami*Niezaliczony do "N"Inżynieria środowiska, górnictwo i energetyka3350.0050.00  
Adam Kiczko Niespoza "N" jednostki33.00.00  
Lidia Dąbek orcid logo WiŚGiEKatedra Technologii Wody i ŚciekówNiezaliczony do "N"Inżynieria środowiska, górnictwo i energetyka3350.0050.00  

Grupa MNiSW:  Publikacja w czasopismach wymienionych w wykazie ministra MNiSzW (część A)
Punkty MNiSW: 100


DOI LogoDOI    
Keywords:

stormwater reservoir  Generalized Likelihood Uncertainty Estimation GLUE  design  rainfall event  StormWater Management Model SWMM 



Abstract:

The sizing of the stormwater reservoir, as the design of its properties, usually requires
simulations of a basin runoff for a long rainfall series using a hydrodynamic model. In the case of
insufficient observations, the rainfall series can be reproduced using empirical approaches. One of
the crucial elements in the sizing of the stormwater reservoir is determination of duration time
and intensity of rainfall (design rainfall event), for which the maximum reservoir capacity is being
obtained. The outcome is, however, affected by significant uncertainty of runoff modeling. The aim
of the study is to analyze the effect of the uncertainty of a rainfall-runoff model on calculated
capacities of stormwater reservoirs, along with estimated duration times of the design rainfall.
The characteristics of the rainfall events—intensity, duration, and frequency—were reproduced using
an empirical approach of IDF (Intensity–Duration–Frequency). The basin response to the precipitation
was modeled using the SWMM (Storm Water Management Model) and its uncertainty was estimated
on the basis of the GLUE (Generalized Likelihood Uncertainty Estimation) method. The obtained
probabilistic solution was compared with the deterministic one, neglecting the uncertainty. Duration
times of the design rainfall determined in respect of the reservoir outflow using the probabilistic
model were longer than those found with a deterministic approach. This has an effect on the desired
capacities of the stormwater reservoir, which were overestimated when uncertainty was neglected.