An evaluation of intra-university campus temperature variability under variable synoptic weather conditions using mobile transects.

IF 3 3区 地球科学 Q2 BIOPHYSICS International Journal of Biometeorology Pub Date : 2024-11-11 DOI:10.1007/s00484-024-02821-3
A M Robinson, M D Eastin, K Idziorek, V Joshi, C E Konrad
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Abstract

Intensive observations were collected in a wide range of synoptic weather conditions to evaluate variability in the intra-urban heat island on the campus of the University of North Carolina at Charlotte between February 2023 and June 2023. An easily reproducible bicycle-based mobile transit route around the university was traversed during 20 afternoon and 20 evening periods. The magnitude of observed temperature range from an individual data collection period is defined as the campus urban heat island intensity, with areas having more anthropogenic modification also having higher temperatures. While other papers have examined the relationship between the city-scale urban heat island intensity and the present weather conditions, this paper aims to disentangle the relationship between present weather conditions and the magnitude of thermal variability across a small intra-urban campus with diverse land use and land cover characteristics. This will contribute to a better understanding of intra-urban heat islands, particularly identifying days where conditions will be highly dangerous in more developed areas, and not in more natural environments. When comparing the standardized mobile-transit observations to the regionally present weather conditions it is evident that clear and calm conditions often enhance both city-scale and campus-scale heat islands, increasing temperature disparities. While the spatial distribution of warm and cool areas across campus remains relatively constant, the campus-scale heat island is significantly modulated by the present weather conditions.

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利用移动横断面评估多变天气条件下大学校园内的温度变化。
为了评估 2023 年 2 月至 2023 年 6 月期间北卡罗来纳大学夏洛特分校校园内城市热岛的变化情况,我们收集了各种天气条件下的大量观测数据。在 20 个午后和 20 个傍晚期间,在大学周围走了一条易于复制的以自行车为基础的移动交通路线。从单个数据收集时段观测到的温度范围大小被定义为校园城市热岛强度,人为改变较多的区域温度也较高。其他论文研究了城市尺度的城市热岛强度与当前天气条件之间的关系,而本文旨在厘清当前天气条件与一个具有不同土地利用和土地覆盖特征的小型城市内校园的热变化幅度之间的关系。这将有助于更好地了解城市内的热岛,特别是确定在较发达地区哪些天的情况会非常危险,而在较自然的环境中则不会。将标准化的移动交通观测数据与区域内的天气状况进行比较后发现,晴朗和平静的天气状况往往会增强城市和校园范围内的热岛,加大温度差异。虽然校园内冷暖区域的空间分布相对稳定,但校园尺度的热岛受当前天气条件的影响很大。
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来源期刊
CiteScore
6.40
自引率
9.40%
发文量
183
审稿时长
1 months
期刊介绍: The Journal publishes original research papers, review articles and short communications on studies examining the interactions between living organisms and factors of the natural and artificial atmospheric environment. Living organisms extend from single cell organisms, to plants and animals, including humans. The atmospheric environment includes climate and weather, electromagnetic radiation, and chemical and biological pollutants. The journal embraces basic and applied research and practical aspects such as living conditions, agriculture, forestry, and health. The journal is published for the International Society of Biometeorology, and most membership categories include a subscription to the Journal.
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