Does the complexity in temporal precipitation disaggregation matter for a lumped hydrological model?

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Hannes Müller-Thomy
  • Anna E. Sikorska-Senoner

Externe Organisationen

  • Technische Universität Wien (TUW)
  • Universität Zürich (UZH)
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)1453-1471
Seitenumfang19
FachzeitschriftHydrological sciences journal
Jahrgang64
Ausgabenummer12
PublikationsstatusVeröffentlicht - 10 Sept. 2019

Abstract

Flood peaks and volumes are essential design variables and can be simulated by precipitation–runoff (P–R) modelling. The high-resolution precipitation time series that are often required for this purpose can be generated by various temporal disaggregation methods. Here, we compare a simple method (M1, one parameter), focusing on the effective precipitation duration for flood simulations, with a multiplicative cascade model (M2, 32/36 parameters). While M2 aims at generating realistic characteristics of precipitation time series, M1 aims only at accurately reproducing flood variables by P–R modelling. Both disaggregation methods were tested on precipitation time series of nine Swiss mesoscale catchments. The generated high-resolution time series served as input for P–R modelling using a lumped HBV model. The results indicate that differences identified in precipitation characteristics of disaggregated time series vanish when introduced into the lumped hydrological model. Moreover, flood peaks were more sensitive than flood volumes to the choice of disaggregation method.

ASJC Scopus Sachgebiete

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Does the complexity in temporal precipitation disaggregation matter for a lumped hydrological model? / Müller-Thomy, Hannes; Sikorska-Senoner, Anna E.
in: Hydrological sciences journal, Jahrgang 64, Nr. 12, 10.09.2019, S. 1453-1471.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Müller-Thomy H, Sikorska-Senoner AE. Does the complexity in temporal precipitation disaggregation matter for a lumped hydrological model? Hydrological sciences journal. 2019 Sep 10;64(12):1453-1471. doi: 10.1080/02626667.2019.1638926, 10.15488/10161
Müller-Thomy, Hannes ; Sikorska-Senoner, Anna E. / Does the complexity in temporal precipitation disaggregation matter for a lumped hydrological model?. in: Hydrological sciences journal. 2019 ; Jahrgang 64, Nr. 12. S. 1453-1471.
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title = "Does the complexity in temporal precipitation disaggregation matter for a lumped hydrological model?",
abstract = "Flood peaks and volumes are essential design variables and can be simulated by precipitation–runoff (P–R) modelling. The high-resolution precipitation time series that are often required for this purpose can be generated by various temporal disaggregation methods. Here, we compare a simple method (M1, one parameter), focusing on the effective precipitation duration for flood simulations, with a multiplicative cascade model (M2, 32/36 parameters). While M2 aims at generating realistic characteristics of precipitation time series, M1 aims only at accurately reproducing flood variables by P–R modelling. Both disaggregation methods were tested on precipitation time series of nine Swiss mesoscale catchments. The generated high-resolution time series served as input for P–R modelling using a lumped HBV model. The results indicate that differences identified in precipitation characteristics of disaggregated time series vanish when introduced into the lumped hydrological model. Moreover, flood peaks were more sensitive than flood volumes to the choice of disaggregation method.",
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N1 - Funding Information: was provided for Hannes Müller-Thomy as a Research Fellowship (MU 4257/1-1) by DFG e.V., Bonn, Germany. Anna E. Sikorska-Senoner acknowledges funding from the Swiss Federal Office for the Environment (FOEN) via the contract 15.0054.PJ/O503-1381. Runoff data were provided by the FOEN and the Canton of Argovia (Surb-Döttingen), and precipitation and temperature data were provided by MeteoSwiss. The authors acknowledge the TU Wien Library for financial support through its Open Access Funding Program. The authors thank the associate editor Guillaume Thirel, Claudia Brauer and one anonymous reviewer for their useful comments, which helped us improve this manuscript.

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N2 - Flood peaks and volumes are essential design variables and can be simulated by precipitation–runoff (P–R) modelling. The high-resolution precipitation time series that are often required for this purpose can be generated by various temporal disaggregation methods. Here, we compare a simple method (M1, one parameter), focusing on the effective precipitation duration for flood simulations, with a multiplicative cascade model (M2, 32/36 parameters). While M2 aims at generating realistic characteristics of precipitation time series, M1 aims only at accurately reproducing flood variables by P–R modelling. Both disaggregation methods were tested on precipitation time series of nine Swiss mesoscale catchments. The generated high-resolution time series served as input for P–R modelling using a lumped HBV model. The results indicate that differences identified in precipitation characteristics of disaggregated time series vanish when introduced into the lumped hydrological model. Moreover, flood peaks were more sensitive than flood volumes to the choice of disaggregation method.

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