Any time there are reductions in accidents, advocates of any particular position are quick to claim that it is their "effect" that has improved safety performance. The work in this paper focuses on interpreting a traffic system's performance with respect to a specific type of accident by attributing
Analysis of traffic hazard intensity: A spatial epidemiology case study of urban pedestrians
β Scribed by Hoe-Hun Ha; Jean-Claude Thill
- Publisher
- Elsevier Science
- Year
- 2011
- Tongue
- English
- Weight
- 745 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0198-9715
No coin nor oath required. For personal study only.
β¦ Synopsis
Traffic safety studies have underscored the hazardous conditions of pedestrians in the United States. This situation calls for increased public awareness of the pedestrian safety issue and better knowledge of the main factors contributing to traffic hazard for urban pedestrians. The purpose of this spatial epidemiology research is to gain greater insights into the geographic dimension exhibited by the intensity of traffic collisions involving urban pedestrians. Pedestrian crashes are studied in Buffalo, NY for years 2003 and 2004. Factors of hazard intensity are determined and compared for three age cohorts as well as for collisions occurring at intersections versus mid-block locations. Physical road characteristics and density of development, as well as socio-economic and demographic variables and potential trip attractors are examined. Spatial regression models are used to account for spatial dependencies. Econometric analysis underscores that all classes of environmental factors tested are significant drivers of pedestrian traffic hazard intensity. Results of the geographic analysis indicate that young and adult pedestrian traffic hazard intensities follow rather distinct logics. In addition, intersection and mid-block crashes differ by their socioeconomic correlates, as well as their spatial distribution in the urban fabric.
π SIMILAR VOLUMES
Considering the importance of supporting system for the urban ecosystem development, the urban ecological carrying capacity (UECC) representing the supporting functions of biophysical environment for urban development is introduced into the analysis of urban ecosystem degradation. It is proposed in