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Urban heat island and differences in outdoor comfort levels in Glasgow, UK
Authors:Eduardo Krüger  Patricia Drach  Rohinton Emmanuel  Oscar Corbella
Institution:1. Programa de Pos-Graduacao em Tecnologia/Engenharia Civil, Departamento de Construcao Civil, Universidade Tecnologica Federal do Parana, Av. Sete de Setembro, 3165, 80230-901, Curitiba, Brazil
2. Programa de Pos-graduacao em Urbanismo, Faculdade de Arquitetura e Urbanismo, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil
3. Sustainable Design & Construction, School of Engineering and Built Environment, Glasgow Caledonian University, Glasgow, UK
4. Programa de Pos-graduacao em Urbanismo, Faculdade de Arquitetura e Urbanismo, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil
Abstract:From extensive outdoor comfort campaigns, preliminary outdoor comfort ranges have been defined for the local population of Glasgow, UK, in terms of two thermal indices: ‘Temperature Humidity Sun Wind’ (THSW) and ‘Physiological Equivalent Temperature’ (PET). A series of measurements and surveys was carried out from winter through summer 2011 during 19 monitoring campaigns. For data collection, a Davis Vantage Pro2 weather station was used, which was equipped with temperature and humidity sensors, cup anemometer with wind vane, silicon pyranometer and globe thermometer. From concurrent measurements using two weather stations, one located close to the city core and another located at a rural setting, approximately at a 15-km distance from the urban area of Glasgow, comparisons were made with regard to thermal comfort levels and to urban–rural temperature differences for different periods of the year. It was found that the two selected thermal indices (THSW and PET) closely correlate to the actual thermal sensation of respondents. Moreover, results show that the urban site will have fewer days of cold discomfort, more days of ‘neutral’ thermal sensation and slightly higher warm discomfort. The most frequent urban heat island intensity was found to be around 3° C, whereas the fraction of cooling to heating degree-hours for a T base of 65 °F was approximately 1/12th.
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