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Urban heat island intensity and evaluation of outdoor thermal comfort in Chennai, India

机译:城市热岛强度与鲤奈室外热舒适评价

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The variation in the atmospheric conditions of urban areas to the fringe areas is termed as urban heat island and is attributed predominantly to the differences in the pattern of built environment. The aim of this study is twofold; firstly, to assess the heat island intensity in the tropical city of Chennai through traverse method and secondly to establish the relationship between the built environment and its contribution in altering the microclimate parameters. Air temperature and relative humidity were measured across the city through traverse survey. The data were analyzed by generating temperature and relative humidity isopleths, and hotspots in the city were identified. Eight fixed stations were located in Thyagaraya Nagar-one of the identified hotspots to study the spatial distribution of climate parameters using ENVI-met simulations. The study confirms the presence of UHI in Chennai with an intensity of 4.5 degrees C in winter and 2.5 degrees C in summer. At the micro-scale level, the study establishes a difference of 6 degrees C during daytime. The study revealed a maximum physiological equivalent temperature (PET) difference of 22 degrees C between the locations. The findings of the study would enable urban planners to develop comfortable newer neighborhood with thermally comfortable outdoor environments which will help in increasing pedestrian comfort.
机译:城市地区大气条件的变化被称为城市热岛,主要归因于建造环境模式的差异。这项研究的目的是双重的;首先,通过横向法评估钦奈热带城市的热岛强度,其次是建立建筑环境与改变微气候参数的贡献之间的关系。通过横向调查,在整个城市中测量空气温度和相对湿度。通过产生温度和相对湿度的Ispleth分析数据,并确定了该市的热点。八个固定站位于Thyagaraya Nagar-One Idedied Hotpots,研究气候参数的空间分布使用环境鉴定。该研究证实了冬季冬奈UHI的存在,夏季冬季强度为4.5摄氏度,2.5摄氏度。在微尺度水平,研究在白天建立了6摄氏度的差异。该研究揭示了位置之间的最大生理等效温度(PET)差22℃。该研究的调查结果将使城市规划人员能够开发舒适的较新的邻居,具有热舒适的户外环境,这将有助于增加行人舒适度。

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