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Street Geometry Factors Influence Urban Microclimate in Tropical Coastal Cities: A Review

机译:街头几何因素影响热带沿海城市城市小气候的研究进展

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Urban climatologists have moved smoothly towards urban geometry meso-scales as obstruction between buildings, streets, and urban environment. Urban climatologists and designers have expressed that urban geometry parameters affect urban microclimate conditions. Improper functioning of the geometry factors, particularly air temperature and wind speed, can increase the harshness of climate change and Urban Heat Island (UHI) defects, which are more critical in coastal cities of tropical regions. In this regard, the current study aimed to identify the impact of each street geometry factor on urban microclimate through a critical literature review. The research determined a total of twenty seven (27) factors within three clusters; 1) geometry factors, 2) meteorological factors, and 3) streetscape factors. The content analysis calculated the Depth of Citation (DoC) which refers to the cumulative importance level of each factor. The content analysis resulted air temperature (Ta) (DoC = 18 out of 28) is the most important street geometry factor that should be extensively considered in urban microclimate studies in coastal cities. In contrast, the factors (such as air pollution and traffic load) have received a minimum Doc (1 out of 28). The research has also analyzed the importance level of clusters through an expert input study using Grounded Group Decision Making (GGDM) method. The results show that meteorological cluster (92 %), streetscape cluster (86 %), and geometry cluster (85 %) have to be respectively implemented in urban microclimate studies in coastal cities. The research states there are new approaches have not yet been touched by urban climatologist affecting urban microclimate; included; surface materials, sea-borne dust and sand, user’s satisfaction, user’s thermal adaptive behavior. These approaches can potentially exacerbate UHI effects in coastal cities, which need further research.
机译:由于建筑物,街道和城市环境之间的障碍,城市气候学家已朝着城市几何中尺度平稳过渡。城市气候学家和设计师表示,城市几何参数会影响城市小气候条件。几何因素(尤其是气温和风速)的不适当运行会增加气候变化的严峻性和城市热岛(UHI)缺陷,而这些缺陷在热带地区的沿海城市中更为严重。在这方面,本研究旨在通过批判性文献综述来确定每种街道几何因素对城市微气候的影响。这项研究确定了三个集群中的总共二十七个(27)因素。 1)几何因素,2)气象因素和3)街景因素。内容分析计算出引用深度(DoC),该深度是指每个因素的累积重要性水平。内容分析得出的气温(Ta)(DoC = 28中的18)是最重要的街道几何因素,在沿海城市的城市小气候研究中应广泛考虑。相反,这些因素(例如空气污染和交通负荷)已获得最低Doc(28分中的1分)。该研究还通过使用基群决策(GGDM)方法的专家输入研究分析了集群的重要性水平。结果表明,在沿海城市的城市小气候研究中,必须分别实施气象集群(92%),街景集群(86%)和几何集群(85%)。研究表明,影响城市小气候的城市气候学家尚未接触到新的方法。包括;表面材料,海洋尘埃和沙子,用户满意度,用户的热适应行为。这些方法可能会加剧沿海城市的城市居民健康指数影响,这需要进一步研究。

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