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Outdoor thermal comfort in different urban settings of sub-tropical high-density cities: An approach of adopting local climate zone (LCZ) classification

机译:亚热带高密度城市不同城市环境中的室外热舒适性:采用局部气候区(LCZ)分类的方法

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摘要

Outdoor thermal comfort is determined by urban morphology and the geometry of outdoor urban spaces. The local climate zone (LCZ) classification system aims to characterise the urban and rural land cover based on various urban morphological parameters. It has been widely used in studies of the thermal environment, but the subjective thermal perception between LCZ classes has rarely been studied. This study evaluated the microclimatic conditions and subjective perception of the thermal environment in eight LCZs in Hong Kong, using questionnaire surveys and field measurements. An ANOVA test showed that the microclimatic conditions were significantly different across eight LCZs, and this could be attributed to the urban morphology and the geometry of the outdoor urban spaces. This does not only affect the critical conditions but also the variations in the thermal environment. The highest maximum temperature (38.9 degrees C) was found in LCZ 1, and the lowest maximum temperature (29.9 degrees C) was observed in land cover LCZs. Subjective assessment showed that compact or high-rise settings were associated with warmer thermal sensations reported by the respondents. The relationship between the level of thermal stress and subjective thermal sensation changed across LCZs. This study demonstrated that the LCZ classification provides a characterisation of both the physical and thermal environment. It is also one of the first attempts to examine the relationship between the thermal environment and subjective perceptions using the LCZ classification system. Further work is required to investigate how thermal comfort indicators can be used to represent the thermal comfort conditions in different LCZs.
机译:室外的热舒适度取决于城市的形态和室外城市空间的几何形状。本地气候区(LCZ)分类系统旨在基于各种城市形态参数来表征城市和农村土地覆盖。它已被广泛用于热环境研究中,但很少研究LCZ类之间的主观热感知。这项研究使用问卷调查和实地测量评估了香港八个LCZ的微气候条件和热环境的主观感知。 ANOVA测试显示,八个LCZ的微气候条件明显不同,这可能归因于城市形态和室外城市空间的几何形状。这不仅影响临界条件,而且影响热环境的变化。在LCZ 1中发现最高最高温度(38.9摄氏度),在土地覆盖LCZ中发现最低的最高温度(29.9摄氏度)。主观评估表明,紧凑或高层环境与受访者报告的较热的热感相关。在整个LCZ中,热应力水平与主观热感之间的关系发生了变化。这项研究表明,LCZ分类提供了物理和热环境的特征。这也是使用LCZ分类系统检查热环境与主观感受之间关系的首次尝试之一。需要做进一步的工作来研究如何使用热舒适度指示器来表示不同LCZ中的热舒适度条件。

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