AbstractGreen roofs are emerging as an increasingly popular Sustainable Urban Drainage Systems (SUDS) technique for urban stormwater management. Indeed, they allow a significant reduction of peak flows and runoff volumes collected by drainage system, with consequent reduction of flooding events and pollution masses discharges by CSO. To estimate the imperviousness of a green roof and to evaluate its hydrological impact within an urban watershed, a bucket model was developed to simulate a rainfall-runoff relationship for a single green roof. The objective is modeling hydrological fluxes in relation to climate forcing, basic technology components and geometric characteristics of green roof systems
Loss of natural soil and vegetation within the urban environment can significantly affect the hydrol...
Loss of natural soil and vegetation within the urban environment can significantly affect the hydrol...
Green roof can provide a significant reduction of stormwater runoff in urban areas whe...
International audienceAt the building scale, the use of green roof has shown a positive impact on ur...
International audienceAt the building scale, the use of green roof has shown a positive impact on ur...
The rapid urbanization and industrialization involve an unsustainable use of natural systems, leadin...
The rapid urbanization and industrialization involve an unsustainable use of natural systems lead to...
The rapid urbanization and industrialization involve an unsustainable use of natural systems, leadin...
International audienceAt the building scale, green roof has demonstrated a positive impact on urban ...
International audienceCurrently widespread in new urban projects, green roofs have shown a positive ...
With the increasing popularity of Best Management Practices (BMPs), research about the effect of BMP...
Urbanization process is rapidly converting forested areas and grasslands to residential, commercial,...
Green roofs are increasingly used as sustainable urban drainage system due to their positive impact ...
This project evaluates green roofs as a stormwater management tool. The goal of the project is to de...
Low-impact development (LID) comprises a broad spectrum of stormwater management technologies for mi...
Loss of natural soil and vegetation within the urban environment can significantly affect the hydrol...
Loss of natural soil and vegetation within the urban environment can significantly affect the hydrol...
Green roof can provide a significant reduction of stormwater runoff in urban areas whe...
International audienceAt the building scale, the use of green roof has shown a positive impact on ur...
International audienceAt the building scale, the use of green roof has shown a positive impact on ur...
The rapid urbanization and industrialization involve an unsustainable use of natural systems, leadin...
The rapid urbanization and industrialization involve an unsustainable use of natural systems lead to...
The rapid urbanization and industrialization involve an unsustainable use of natural systems, leadin...
International audienceAt the building scale, green roof has demonstrated a positive impact on urban ...
International audienceCurrently widespread in new urban projects, green roofs have shown a positive ...
With the increasing popularity of Best Management Practices (BMPs), research about the effect of BMP...
Urbanization process is rapidly converting forested areas and grasslands to residential, commercial,...
Green roofs are increasingly used as sustainable urban drainage system due to their positive impact ...
This project evaluates green roofs as a stormwater management tool. The goal of the project is to de...
Low-impact development (LID) comprises a broad spectrum of stormwater management technologies for mi...
Loss of natural soil and vegetation within the urban environment can significantly affect the hydrol...
Loss of natural soil and vegetation within the urban environment can significantly affect the hydrol...
Green roof can provide a significant reduction of stormwater runoff in urban areas whe...