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Characteristics of an Urban Heat Island of Different Underlying Surfaces and the Assessment of a Human Comfort Index for Zhengzhou

机译:郑州不同下垫面城市热岛特征及人类舒适指数评价

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The key factors of an urban heat island were monitored using a grid method- to analyze seasonal and daily temperature changes. The difference in heat island intensity was investigated under the four microenvironments, of: shed, no shed, beneath trees, and above vegetation. The graph of daily intensity changes plots as a hump-shaped curve, and the intensity at night shows as significantly higher than during daytime. The urban heat island intensity of the two vegetated microenvironments was lower by 0.27°C compared with the site with no day shed. The urban heat island intensity in winter was approximately 2.5°C, and higher by 0.6°C in summer. Furthermore, the spatial distribution of the urban heat island intensity was closely related to surrounding industrial heat sources. The human comfort index - in Renmin Park registered as the highest, because of its tree canopy. The ability to improve the microclimate is limited in Xiliu Lake Park, where the greening type is mainly lawn. However, the railway station square had a 16% frequency for a high human comfort index, perhaps owing to open space and good air flow
机译:使用网格方法监控了城市热岛的关键因素,以分析季节性和每日温度变化。在以下四个微环境下研究了热岛强度的差异:棚,无棚,树木下方和植被上方。每日强度变化图以驼峰形曲线表示,而夜间强度则明显高于白天。与无日流失的地点相比,这两个植被微环境的城市热岛强度降低了0.27°C。冬季的城市热岛强度约为2.5°C,而夏季则高0.6°C。此外,城市热岛强度的空间分布与周围的工业热源密切相关。人体舒适指数-由于其树冠而在人民公园中排名最高。西柳湖公园的微气候改善能力有限,那里的绿化类型主要是草坪。但是,火车站广场的人为舒适度指数较高,其频率为16%,这可能是由于开放空间和良好的空气流通

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