Simulating the effect of urban sprawl on air quality and outdoor human thermal comfort in a cold city, Erzurum, Turkey

被引:0
作者
Merve Yavaş
Doğan Dursun
Süleyman Toy
机构
[1] Atatürk University,Department of City and Regional Planning, Faculty of Architecture and Design
来源
Environmental Monitoring and Assessment | 2023年 / 195卷
关键词
Outdoor human thermal comfort conditions; Air pollution; Cold climate; ENVI-met; Erzurum; Urbanisation;
D O I
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学科分类号
摘要
Research on climate-sensitive urban planning is important to improve the quality of city life. Cold climate cities should respect climatic characteristics to diversify outdoor uses and increase air quality to maximize the benefits of winter. This study is aimed to explore the impact of changing urban pattern on air pollution and outdoor human thermal comfort conditions (HTCCs) in a newly developed urban area in Şükrüpaşa neighbourhood, Erzurum, among the coldest cities in Turkey, with high PM10 and low HTCCs levels. Sensitivity of urban development pattern to climate conditions and its suitability to eliminate the winter disturbances caused by HTCCs and air pollution were investigated by producing maps for HTCCs and air pollution using morphological, meteorological and spatial data and ENVI-met model in winter period of 2017 and 2022. It was found that newly developed areas increase the unfavourable conditions in terms of air quality, temperature and HTCCs due to the reasons like improper land uses, urban sprawl, high urban density and ventilation problems. In high-elevated cold cities, spatial planning and design principles should strictly be followed by incorporating climate knowledge and without revising the spatial decisions.
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  • [1] Ali-Toudert F(2007)Effects of asymmetry, galleries, overhanging façades and vegetation on OHTCCs in urban street canyons Solar Energy 81 742-754
  • [2] Mayer H(2003)Evaluating the first-order effect of intraannual temperature variability on urban air pollution Journal of Geophysical Research 108 4365-384
  • [3] Aw J(2021)Increased ozone pollution alongside reduced nitrogen dioxide concentrations during Vienna’s first COVID-19 lockdown: Significance for air quality management Environmental Pollution 284 373-1103
  • [4] Kleeman MJ(1998)Simulating surface-plant-air interactions inside urban environments with a three-dimensional numerical model Environmental Modelling and Software 13 1089-430
  • [5] Brancher M(2005)Effect of urbanization on the diurnal rainfall pattern in Houston Hydrological Processes 19 423-4344
  • [6] Bruse M(1992)Climate forcing by anthropogenic aerosols Science 255 4323-211
  • [7] Fleer H(2018)Modeling impacts of urbanization and urban heat island mitigation on boundary layer meteorology and air quality in Beijing under different weather conditions Journal of the Geological Society Australia 123 197-1818
  • [8] Burian SJ(2011)Observing and modeling the nocturnal park cool island of an arid city: Horizontal and vertical impacts Theoretical and Applied Climatology 103 1803-331
  • [9] Shepherd JM(2007)Estimating the effects of increased urbanization on surface meteorology and ozone concentrations in the New York City Metropolitan Region Atmospheric Environment 41 324-211
  • [10] Charlson RJ(2016)Urbanization and the use of climate knowledge in Erzurum Turkey, Procedia Engineering 169 199-531