4.7 Article

The effect of green roof configurations including trees in a subtropical climate: A co-simulation parametric study

期刊

JOURNAL OF CLEANER PRODUCTION
卷 317, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.jclepro.2021.128458

关键词

Green roofs; Rooftop trees; Cooling effect; Indoor; outdoor temperature; Energy reduction; Urban heat island

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This study examines the impact of different green roof configurations on indoor and outdoor temperatures, highlighting the superior performance of green roofs with trees compared to those without. The authors recommend using green roof performance as a standard for green building rating and legislation.
There is an increased interest in including green roofs in building legislation to enable green infrastructure and improve the built environments. Yet, trees on buildings in particular, have received little attention. This paper presents a parametric study on the effect of nine green roof configurations on outdoor and indoor temperatures and the associated cooling demand under three urban densities by coupling ENVI-met and EnergyPlus simulation software. This study is novel as it introduces the performance of green roof configurations that include canopy trees and compares their performance with typical green roofs that include only low canopy vegetation. Results show that 1) green roof performance has a greater impact on reducing indoor rather than outdoor temperatures; 2) green roofs with trees perform better compared with green roof configurations without trees, reducing the indoor temperature by up to 7.20 degrees C and air conditioning electric loads by 60%; 3) green roofs with trees excel in thermal performance compared with typical green roofs, even if the latter have a higher green coverage percentage. Therefore, the authors recommend using green roof performance for green building rating and legislation instead of using green coverage percentage. Furthermore, as green roof performance varies with urban density and building type, the authors suggest specifying the most appropriate green roof configuration for each neighbourhood in smart city models to maximise the benefits and address the city's needs.

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