A hybrid simulation framework for modelling and analysing urban traffic pollution under key influencing factors

Traffic pollution in urban areas is a complex phenomenon influenced by vehicle emissions, wind patterns, and urban layouts. The framework estimates emissions from individual vehicles, including electric, petrol, and diesel types, and computes pollution levels at every position within the urban grid, enabling a detailed analysis of pollution evolution and supporting the development of effective mitigation strategies. Key advancements over existing approaches include the joint modelling of exhaust and non-exhaust emissions (such as particulate matter from tire and road wear), and a quantitative analysis of the non-linear role of wind in pollutant dispersion. We further examine urban planning strategies, showing that aligning buildings with prevailing wind directions significantly enhances pollution dispersion. Based on 16,800 large-scale simulations, the framework's statistical robustness is validated, and empirical relationships between traffic density, vehicle composition, wind effects, and pollution patterns are established, offering a scalable tool for urban environmental assessment.

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Publication Details

Journal
Urban Climate
Published
2026-08-25
DOI
https://doi.org/10.1016/j.uclim.2026.103077
Primary Topic
Vehicle emissions and performance
Type
article
Field-Weighted Citation Impact
0.00

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article

A hybrid simulation framework for modelling and analysing urban traffic pollution under key influencing factors

M. J. Morón, David Ragel-Díaz-Jara, Fernando Díaz del Río, Antonio Navas-Orozco et al.
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Vehicle emissions and performance
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A hybrid simulation framework for modelling and analysing urban traffic pollution under key influencing factors

M. J. Morón, David Ragel-Díaz-Jara, Fernando Díaz del Río, Antonio Navas-Orozco, José Morera-Figueroa, Miguel Cárdenas-Montes, José-Luis Guisado-Lizar
article en

Abstract

Traffic pollution in urban areas is a complex phenomenon influenced by vehicle emissions, wind patterns, and urban layouts. The framework estimates emissions from individual vehicles, including electric, petrol, and diesel types, and computes pollution levels at every position within the urban grid, enabling a detailed analysis of pollution evolution and supporting the development of effective mitigation strategies. Key advancements over existing approaches include the joint modelling of exhaust and non-exhaust emissions (such as particulate matter from tire and road wear), and a quantitative analysis of the non-linear role of wind in pollutant dispersion. We further examine urban planning strategies, showing that aligning buildings with prevailing wind directions significantly enhances pollution dispersion. Based on 16,800 large-scale simulations, the framework's statistical robustness is validated, and empirical relationships between traffic density, vehicle composition, wind effects, and pollution patterns are established, offering a scalable tool for urban environmental assessment.

Urban ClimateVol. 69
Centro de Investigaciones Energéticas, Medioambientales y Tecnológicas (ES), Universidad de Sevilla (ES)
Ministerio de Ciencia, Innovación y Universidades, European Commission, Agencia Estatal de Investigación
Sustainable cities and communities
Openalex Percentile: Top 97%
Vehicle emissions and performance
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