论文标题
新加坡(IRIS)天文台的红外调查:使用邻里尺度热成像的城市热岛贡献者和缓解剂分析
InfraRed Investigation in Singapore (IRIS) Observatory: Urban heat island contributors and mitigators analysis using neighborhood-scale thermal imaging
论文作者
论文摘要
本文使用热图像和天气数据研究了来自城市热岛的贡献者和减轻者的热通量。从2021年11月至2022年4月之间在建筑物屋顶上运行的天文台收集热图像。在同一时期,使用自动气象站网络来测量新加坡大学校园的多个地点的天气状况。根据天文台和自动气象站网络收集的数据,开发了一种方法来估计建筑物,植被和交通散发的热量。在进行城市热通量分析之前,观察到从天文台收集的表面温度对某些变量很敏感。灵敏度分析后,对室外环境中表面温度的测量进行校准。最后,通过用热图像和天气数据评估的热通量分析了城市热岛的几个贡献者和缓解剂。根据屋顶天文台收集的热图像,由于它们在夜间发出的长波辐射,混凝土墙是城市热岛的重要贡献。另一方面,植被似乎是一种有效的缓解剂,这是由于蒸散量产生的潜热通量。如果在道路的一小部分中考虑,交通似乎可以忽略不计。将来,可以做出更多的努力来估计由热图像通过空调系统释放的热量的大小。
This paper studies heat fluxes from contributors and mitigators of urban heat islands using thermal images and weather data. Thermal images were collected from an observatory operating on the rooftop of a building between November 2021 and April 2022. Over the same period, an automatic weather station network was used to measure weather conditions at several locations on a university campus in Singapore. From data collected by the observatory and the automatic weather station network, a method was developed to estimate the heat emitted by building facades, vegetation, and traffic. Before performing the analysis of urban heat fluxes, it was observed that the surface temperature collected from the observatory is sensitive to some variables. After the sensitivity analysis, thermal images were calibrated against measurements of the surface temperature in an outdoor environment. Finally, several contributors and mitigators of urban heat islands were analyzed from heat fluxes assessed with thermal images and weather data. According to thermal images collected by the rooftop observatory, concrete walls are an important contributor to urban heat islands due to the longwave radiation they emit at night. Vegetation, on the other hand, seems to be an effective mitigator because of latent heat fluxes generated by evapotranspiration. Traffic looks to be a negligible source of heat if considered over a small portion of a road. In the future, more efforts can be made to estimate the magnitude of the heat released by an air-conditioning system from thermal images.