The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean Area
In an urban environment, green roofs represent a sustainable solution for mitigating stormwater volumes and hydrograph peaks. So far, many literature studies have investigated the hydraulic efficiency and the subsurface runoff coefficient of green roofs, showing their strong variability according to...
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doaj-d7a9daf67b03461387d5a06dda64a7f72020-11-25T00:04:19ZengMDPI AGWater2073-44412016-01-01824410.3390/w8020044w8020044The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean AreaGiuseppina Garofalo0Stefania Palermo1Francesca Principato2Theodoros Theodosiou3Patrizia Piro4Department of Civil Engineering, University of Calabria, Cubo 42B, Rende (CS) 87036, ItalyDepartment of Civil Engineering, University of Calabria, Cubo 42B, Rende (CS) 87036, ItalyDepartment of Civil Engineering, University of Calabria, Cubo 42B, Rende (CS) 87036, ItalyDepartment of Civil Engineering, Aristotle University of Thessaloniki, Thessaloniki, 54124, GreeceDepartment of Civil Engineering, University of Calabria, Cubo 42B, Rende (CS) 87036, ItalyIn an urban environment, green roofs represent a sustainable solution for mitigating stormwater volumes and hydrograph peaks. So far, many literature studies have investigated the hydraulic efficiency and the subsurface runoff coefficient of green roofs, showing their strong variability according to several factors, including the characteristics of storm events. Furthermore, only few studies have focused on the hydraulic efficiency of green roofs under Mediterranean climate conditions and defined the influencing hydrological parameters on the subsurface runoff coefficient. Nevertheless, for designing purposes, it is crucial to properly assess the subsurface runoff coefficient of a given green roof under specific climate conditions and its influencing factors. This study intends to, firstly, evaluate the subsurface runoff coefficient at daily and event-time scales for a given green roof, through a conceptual model implemented in SWMM. The model was loaded with both daily and 1-min rainfall data from two Mediterranean climate sites, one in Thessaloniki, Greece and one in Cosenza, Italy, respectively. Then, the most influencing hydrological parameters were examined through a statistical regression analysis. The findings show that the daily subsurface runoff coefficient is 0.70 for both sites, while the event-based one is 0.79 with a standard deviation of 0.23 for the site in Cosenza, Italy. The multiple linear regression analysis revealed that the influencing parameters are the rainfall intensity and antecedent dry weather period with a confidence level of 95%. This study demonstrated that, due to the high variability of the subsurface runoff coefficient, the use of a unique value for design purposes is inappropriate and that a preliminary estimation could be obtained as a function of the total rainfall depth and the antecedent dry weather period by using the validated multi-regression relationship which is site specific.http://www.mdpi.com/2073-4441/8/2/44stormwater managementgreen roofrainfall-runoffretentioninter-event time |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Giuseppina Garofalo Stefania Palermo Francesca Principato Theodoros Theodosiou Patrizia Piro |
spellingShingle |
Giuseppina Garofalo Stefania Palermo Francesca Principato Theodoros Theodosiou Patrizia Piro The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean Area Water stormwater management green roof rainfall-runoff retention inter-event time |
author_facet |
Giuseppina Garofalo Stefania Palermo Francesca Principato Theodoros Theodosiou Patrizia Piro |
author_sort |
Giuseppina Garofalo |
title |
The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean Area |
title_short |
The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean Area |
title_full |
The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean Area |
title_fullStr |
The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean Area |
title_full_unstemmed |
The Influence of Hydrologic Parameters on the Hydraulic Efficiency of an Extensive Green Roof in Mediterranean Area |
title_sort |
influence of hydrologic parameters on the hydraulic efficiency of an extensive green roof in mediterranean area |
publisher |
MDPI AG |
series |
Water |
issn |
2073-4441 |
publishDate |
2016-01-01 |
description |
In an urban environment, green roofs represent a sustainable solution for mitigating stormwater volumes and hydrograph peaks. So far, many literature studies have investigated the hydraulic efficiency and the subsurface runoff coefficient of green roofs, showing their strong variability according to several factors, including the characteristics of storm events. Furthermore, only few studies have focused on the hydraulic efficiency of green roofs under Mediterranean climate conditions and defined the influencing hydrological parameters on the subsurface runoff coefficient. Nevertheless, for designing purposes, it is crucial to properly assess the subsurface runoff coefficient of a given green roof under specific climate conditions and its influencing factors. This study intends to, firstly, evaluate the subsurface runoff coefficient at daily and event-time scales for a given green roof, through a conceptual model implemented in SWMM. The model was loaded with both daily and 1-min rainfall data from two Mediterranean climate sites, one in Thessaloniki, Greece and one in Cosenza, Italy, respectively. Then, the most influencing hydrological parameters were examined through a statistical regression analysis. The findings show that the daily subsurface runoff coefficient is 0.70 for both sites, while the event-based one is 0.79 with a standard deviation of 0.23 for the site in Cosenza, Italy. The multiple linear regression analysis revealed that the influencing parameters are the rainfall intensity and antecedent dry weather period with a confidence level of 95%. This study demonstrated that, due to the high variability of the subsurface runoff coefficient, the use of a unique value for design purposes is inappropriate and that a preliminary estimation could be obtained as a function of the total rainfall depth and the antecedent dry weather period by using the validated multi-regression relationship which is site specific. |
topic |
stormwater management green roof rainfall-runoff retention inter-event time |
url |
http://www.mdpi.com/2073-4441/8/2/44 |
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