Sustainable assessment of using green roofs in hot-arid areas-Residential buildings in Jordan

被引:20
作者
Ma'bdeh, Shouib N. [1 ]
Ali, Hikmat H. [1 ]
Rabab'ah, Ikhlas O. [1 ]
机构
[1] Jordan Univ Sci & Technol, Dept Architecture, Irbid 22110, Jordan
关键词
Green roof; Sustainability; Hot-arid area; Residential buildings; Passive design; RENEWABLE ENERGY; BENEFITS; PERFORMANCE;
D O I
10.1016/j.jobe.2021.103559
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Technology contributed to providing solutions for the problems related to the Urban Heat Island, the decrease in green areas, and the raising of the earth's temperature. The construction sector was one of the areas applying technological solutions such as the Green Roof. Studies proved that using GR may reduce energy consumption and enhance thermal comfort by reducing the UHI phenomena. Thus, this study aims to evaluate GR's efficiency in hot-arid areas from a sustainable point of view and customize the best model suitable to use in this region. The study was designed to be able to generalize for other regions. A Focus group determines the study variables and values. A holistic evaluation is made to evaluate the GR efficiency from the energy, environmental, economic, and social aspects. The results showed that the best model was achieved by using the lowest U-value of soil and the highest amount of plant's shading cover. These properties reduced the consumption to more than half, accompanied by a decrease in the cost of energy and environmental impacts. The economic analysis showed the efficiency of investment in several cases, while just three cases proved its social competence.
引用
收藏
页数:10
相关论文
共 44 条
[21]   Air-conditioning energy consumption due to green roofs with different building thermal insulation [J].
Jim, C. Y. .
APPLIED ENERGY, 2014, 128 :49-59
[22]   Economic and Environmental Evaluation Model for Selecting the Optimum Design of Green Roof Systems in Elementary Schools [J].
Kim, JiMin ;
Hong, TaeHoon ;
Koo, Choong-Wan .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (15) :8475-8483
[23]  
Lee A., 2004, P 2 N AM GREEN ROOF, P2
[24]  
Mahmoud AS, 2017, BUILDINGS-BASEL, V7, DOI 10.3390/buildings7020030
[25]   Drought tolerance in different vegetation types for extensive green roofs: Effects of watering and diversity [J].
Nagase, Ayako ;
Dunnett, Nigel .
LANDSCAPE AND URBAN PLANNING, 2010, 97 (04) :318-327
[26]  
ohler M. K, 2002, ENV MANAG HLTH
[27]   Assessment of green roof thermal behavior: A coupled heat and mass transfer model [J].
Ouldboukhitine, Salah-Eddine ;
Belarbi, Rafik ;
Jaffal, Issa ;
Trabelsi, Abdelkrim .
BUILDING AND ENVIRONMENT, 2011, 46 (12) :2624-2631
[28]  
Qin XiaoSheng Qin XiaoSheng, 2012, British Journal of Environment and Climate Change, V2, P410
[29]   The growth and survival of plants in urban green roofs in a dry climate [J].
Razzaghmanesh, M. ;
Beecham, S. ;
Kazemi, F. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2014, 476 :288-297
[30]   A review of energy aspects of green roofs [J].
Saadatian, Omidreza ;
Sopian, K. ;
Salleh, E. ;
Lim, C. H. ;
Riffat, Safa ;
Saadatian, Elham ;
Toudeshki, Arash ;
Sulaiman, M. Y. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2013, 23 :155-168