A Tale Of Two Cities: The Influence Of Urban Meteorological Network Design On The Nocturnal Surface Versus Canopy Heat Island Relationship In Oklahoma City,Ok,And Birmingham,Uk

INTERNATIONAL JOURNAL OF CLIMATOLOGY(2021)

引用 6|浏览2
暂无评分
摘要
Interest in the investigation of the relationship between surface heat island intensity (sUHII) and canopy heat island intensity (aUHII) (sUHII-aUHIIrelationship) is growing mainly because of the global availability of satellite-sensed land surface temperature (T-s). It is hoped that if such a universal relationship can be found, it could compensate for the spatial discontinuity of air temperature (T-a) measurements that currently exist due to a paucity of weather stations in urban areas. In an attempt to investigate differences in the relationship in different urban environments, this study attempts to compare the linearsUHII-aUHIIrelationship between Oklahoma City, OK, and Birmingham, UK, based on the observations from Moderate Resolution Imaging Spectroradiometer and two dense urban meteorological networks (UMNs). Regression models and confidence ellipse, with two statistical tests, are applied in the comparison analysis under different climatic conditions with respect to specific ranges of wind speed (WS) and daily-accumulated solar radiation (DASR). Some general patterns of the linearsUHII-aUHIIrelationship are found across the two cities, such as the reduced rate of change ofaUHIIwith respect tosUHIIwith increasing WS and the non-negligible advection effect in this relationship. Meanwhile, the differences of the linearsUHII-aUHIIrelationship across two cities are reduced under ideal conditions (clear skies, calm and large input of solar radiation from previous day into urban system). More importantly, the results emphasize the influence of the configuration of UMNs on thesUHII-aUHIIrelationship. By removing the climatic element in the relationship (i.e., WS and DASR), the impacts of the different local environments, source areas, and general configurations of the UMN become evident, indicating that a standardized protocol for the designs of UMN is the prerequisite for the generalization of thesUHII-aUHIIrelationship across cities.
更多
查看译文
关键词
land surface temperature, local climate zone, surface heat island, urban, urban heat island, urban meteorological network, UrbanCanopy heat island, wind speed
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要