4.7 Article

Modelled spatiotemporal variability of outdoor thermal comfort in local climate zones of the city of Brno, Czech Republic

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 624, 期 -, 页码 385-395

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2017.12.076

关键词

HUMIDEX; MUKLIMO_3; Air temperature; Relative humidity; Local climate zones; Heat wave

资金

  1. Ministry of Education, Youth and Sports of the Czech Republic within the National Sustainability Program I (NPU I) [LO1415]
  2. Ministry of Education, Science and Technological Development of the Republic of Serbia [176020]

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This study uses the MUKLIMO_3 urban climate model (in German, Mikroskaliges Urbanes KLImaMOdell in 3-Dimensionen) and measurements from an urban climate network in order to simulate, validate and analyse the spatiotemporal pattern of human thermal comfort outdoors in the city of Brno (Czech Republic) during a heatwave period. HUMIDEX, a heat index designed to quantify human heat exposure, was employed to assess thermal comfort, employing air temperature and relative humidity data. The city was divided into local climate zones (LCZs) in order to access differences in intra-urban thermal comfort. Validation of the model results, based on the measurement dates within the urban monitoring network, confirmed that the MUKLIMO_3 micro-scale model had the capacity to simulate the main spatiotemporal patterns of thermal comfort in an urban area and its vicinity. The results suggested that statistically significant differences in outdoor thermal comfort exist in the majority of cases between different Las. The most built-up LCZ types (Las 2, 3, 5. 8 and 10) were disclosed as the most uncomfortable areas of the city. Hence, conditions of great discomfort (HUMIDEX >40) were recorded in these areas, mainly in the afternoon hours (from 13.00 to 18.00 CEST), while some thermal discomfort continued overnight In contrast, HUMIDEX values in sparsely built-up LCZ 9 and non-urban Las were substantially lower and indicated better thermal conditions for the urban population. Interestingly, the model captured a local increase of HUMIDEX values arising out of air humidity in Las with the presence of more vegetation (Las A and B) and in the vicinity of larger bodies of water (LCZ G). (C) 2017 Elsevier B.V. All rights reserved.

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