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2019 | OriginalPaper | Buchkapitel

Integration of Green Areas into a Suburban Flood Model

verfasst von : Boris Richter, Christine Stapel, Jens Tränckner

Erschienen in: New Trends in Urban Drainage Modelling

Verlag: Springer International Publishing

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Abstract

As a result of urbanization, suburban areas are growing. The catchment of this areas is characterized by different land use and sealing types. Due to climate change, there is a tendency towards more intense precipitation events, which causes a respectable increase of overland flow on permeable surfaces (green area). For a detailed flood management a coupled model of runoff, sewer transport and overland flow which also integrate green areas is much more powerful. Available software is usually built as semi-distributed (SD) models whereof the 2D surface module can only convey but not generate grid cell runoff. Fully distributed (FD) models solve this problem but are often not applicable due the required detailed object data. This paper describes a method to integrate green areas into an existing sewer (SD) model by virtual networks. The runoff module is founded on the kinematic wave computation, which includes a module for the infiltration capacity based on the Horton equation. Therefore the additional runoff of the green areas is predictable and the results shows more representative expression of the flood situation. Otherwise, the natural retention effect of green areas is directly implemented and is therefore also quantifiable.

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Literatur
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Zurück zum Zitat Davidsen, S., Löwe, R., Ravn, N.H., Jensen, L.N., Arnbjerg-Nielsen, K.: Initial conditions of urban permeable surfaces in rainfall-runoff models using Horton’s infiltration. Water Sci. Technol.: J. Int. Assoc. Water Pollut. Res. 77(3), 662–669 (2018)CrossRef Davidsen, S., Löwe, R., Ravn, N.H., Jensen, L.N., Arnbjerg-Nielsen, K.: Initial conditions of urban permeable surfaces in rainfall-runoff models using Horton’s infiltration. Water Sci. Technol.: J. Int. Assoc. Water Pollut. Res. 77(3), 662–669 (2018)CrossRef
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Zurück zum Zitat Pina, R., Ochoa-Rodriguez, S., Simões, N., Mijic, A., Marques, A., Maksimović, Č.: Semi- vs. fully-distributed urban stormwater models: model set up and comparison with two real case studies. Water 8(12), 58 (2016)CrossRef Pina, R., Ochoa-Rodriguez, S., Simões, N., Mijic, A., Marques, A., Maksimović, Č.: Semi- vs. fully-distributed urban stormwater models: model set up and comparison with two real case studies. Water 8(12), 58 (2016)CrossRef
Metadaten
Titel
Integration of Green Areas into a Suburban Flood Model
verfasst von
Boris Richter
Christine Stapel
Jens Tränckner
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-319-99867-1_88