2019
DOI: 10.1016/j.jenvman.2018.03.032
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Considering the effect of groundwater on bioretention using the Storm Water Management Model

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Cited by 18 publications
(7 citation statements)
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“…The effectiveness of LID implementation depends on the type and characteristics of the rainfall and the groundwater table [39]. Therefore, its interaction with groundwater flow should also be considered in urban design [40]. The capability of LID techniques in reducing the negative impacts of land use change and climate change supports the importance of applying nonstructural methods compared to structural methods in planning urban areas, especially if ecological and environmental factors are the main considerations [5].…”
Section: Overview Of Lid Techniquementioning
confidence: 99%
“…The effectiveness of LID implementation depends on the type and characteristics of the rainfall and the groundwater table [39]. Therefore, its interaction with groundwater flow should also be considered in urban design [40]. The capability of LID techniques in reducing the negative impacts of land use change and climate change supports the importance of applying nonstructural methods compared to structural methods in planning urban areas, especially if ecological and environmental factors are the main considerations [5].…”
Section: Overview Of Lid Techniquementioning
confidence: 99%
“…Ainda, dentre os processos e compartimentos físicos considerados pelo SWMM/PCSWMM, (JAMES et al, 2008), destacam-se os que terão importância para a modelagem e verificação da concepção proposta: Escoamento Superficial; Infiltração; Águas Subterrâneas; Propagação de fluxos; Comportamento e evolução da qualidade da água; LIDs como SbN (GUO et al;KIM et al;ZHANG et al, 2019). Através do software são testados os cenários descentralizados e o STVC centralizado, simulado como um reservatório linear no modelo, bem como variadas as possibilidades de simulação para verificação da melhor estratégia -se discreta ou contínua.…”
Section: Concepção Para Modelagemunclassified
“…The authors showed that detention depth, the ratio of catchment to bioretention areas, and saturated hydraulic conductivity were most critical to hydraulic performance of bioretention systems. The SWMM‐LID model in conjunction with SWMM's groundwater model was used to simulate the influence of a fluctuating groundwater table on runoff from a single bioretention cell (Kim et al, 2019). Model performance was evaluated by comparing observed storm flow volumes with predicted volumes.…”
Section: Bioretentionmentioning
confidence: 99%