Reducing Computational Runtime of Two-Dimensional Urban Inundation Model by Dynamic Domain ReshapingSource: Journal of Hydrologic Engineering:;2016:;Volume ( 021 ):;issue: 006Author:Adriano Rolim Paz
,
Larissa Santana Serra
,
Marcela Rafaela de Freitas Silva
,
Adalberto Meller
DOI: 10.1061/(ASCE)HE.1943-5584.0001375Publisher: American Society of Civil Engineers
Abstract: Coupling rainfall-runoff and one-dimensional (1D)/two-dimensional (2D) hydrologic models provides the current state-of-the-art approach for predicting the extent of urban inundation, although the computational cost for running 2D models is still a major concern. This paper presents a procedure to dynamically reshape 2D numeric domain according to flooding extent evolution. The numeric domain is updated at each selected time step for reshaping (TSR) and includes grid elements directly connected to the 1D stormwater network, flooded grid elements, or grid elements within a buffer distance threshold (BDT) identified in both previous criteria. Results for an urban catchment in South Brazil are presented considering two spatial resolutions and three return-period rainfall events. An optimal relation between TSR and BDT was found and resulted in runtime savings greater than 86% in comparison to adopting a fixed boundary as catchment limits, and greater than 69% in comparison to using a fixed boundary below the 70-m elevation (which represents the maximum elevation reached by the 100-year flood). The major concepts of the proposed algorithm are straightforward and could be tested in similar 2D models.
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| contributor author | Adriano Rolim Paz | |
| contributor author | Larissa Santana Serra | |
| contributor author | Marcela Rafaela de Freitas Silva | |
| contributor author | Adalberto Meller | |
| date accessioned | 2017-12-30T12:56:07Z | |
| date available | 2017-12-30T12:56:07Z | |
| date issued | 2016 | |
| identifier other | %28ASCE%29HE.1943-5584.0001375.pdf | |
| identifier uri | http://138.201.223.254:8080/yetl1/handle/yetl/4243588 | |
| description abstract | Coupling rainfall-runoff and one-dimensional (1D)/two-dimensional (2D) hydrologic models provides the current state-of-the-art approach for predicting the extent of urban inundation, although the computational cost for running 2D models is still a major concern. This paper presents a procedure to dynamically reshape 2D numeric domain according to flooding extent evolution. The numeric domain is updated at each selected time step for reshaping (TSR) and includes grid elements directly connected to the 1D stormwater network, flooded grid elements, or grid elements within a buffer distance threshold (BDT) identified in both previous criteria. Results for an urban catchment in South Brazil are presented considering two spatial resolutions and three return-period rainfall events. An optimal relation between TSR and BDT was found and resulted in runtime savings greater than 86% in comparison to adopting a fixed boundary as catchment limits, and greater than 69% in comparison to using a fixed boundary below the 70-m elevation (which represents the maximum elevation reached by the 100-year flood). The major concepts of the proposed algorithm are straightforward and could be tested in similar 2D models. | |
| publisher | American Society of Civil Engineers | |
| title | Reducing Computational Runtime of Two-Dimensional Urban Inundation Model by Dynamic Domain Reshaping | |
| type | Journal Paper | |
| journal volume | 21 | |
| journal issue | 6 | |
| journal title | Journal of Hydrologic Engineering | |
| identifier doi | 10.1061/(ASCE)HE.1943-5584.0001375 | |
| page | 04016013 | |
| tree | Journal of Hydrologic Engineering:;2016:;Volume ( 021 ):;issue: 006 | |
| contenttype | Fulltext |