Ebba Henrekson, Rebecka Andersen, Kenny Turesson, Finn Nilson
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引用次数: 0
Abstract
Previous research has identified sociodemographic inequalities in fire prevention measures. This study examined whether sociodemographic differences persist in the Swedish population concerning fire prevention measures and particularly whether there remains an inverted u-curve related to age in protection habits. Additionally, it investigated whether fire protection practices are influenced by the level of societal protection. The research utilised survey data and register data from The Swedish Civil Contingencies Agency and Statistics Sweden. A latent class analysis was conducted, dividing respondents into four latent classes, followed by two binomial regression analyses. The study revealed three key findings regarding fire protection measures. First, certain demographic groups, namely the young, women, single and childfree households, low-income and low-education individuals, immigrants, and urban residents, are disproportionately lacking optimal fire safety measures. Second, although a safety maturity curve is still observed, older adults in Sweden today are considerably more protected compared to 15–20 years ago, indicating that safety practices employed during middle age continue into old age. Third, a trend is observed where individuals living in areas with more efficient professional rescue services tend to have lower levels of personal fire protection, suggesting a rational choice based on the perceived level of societal protection.
以往的研究发现了防火措施方面的社会人口不平等现象。本研究探讨了瑞典人口在防火措施方面是否仍然存在社会人口差异,特别是在防火习惯方面是否仍然存在与年龄相关的倒 U 曲线。此外,研究还探讨了防火措施是否受社会保护水平的影响。研究利用了瑞典民事应急署和瑞典统计局的调查数据和登记数据。研究进行了潜类分析,将受访者分为四个潜类,然后进行了两次二项式回归分析。研究揭示了有关防火措施的三个主要发现。首先,某些人口群体,即年轻人、妇女、单身和无子女家庭、低收入和低学历者、移民和城市居民,过多地缺乏最佳消防安全措施。其次,尽管安全成熟度曲线仍然存在,但与 15-20 年前相比,如今瑞典老年人的防护能力要强得多,这表明中年时期采用的安全措施一直延续到老年。第三,可以观察到这样一种趋势,即生活在专业救援服务效率较高地区的人,其个人消防保护水平往往较低,这表明他们会根据所感知的社会保护水平做出理性选择。
期刊介绍:
Fire Technology publishes original contributions, both theoretical and empirical, that contribute to the solution of problems in fire safety science and engineering. It is the leading journal in the field, publishing applied research dealing with the full range of actual and potential fire hazards facing humans and the environment. It covers the entire domain of fire safety science and engineering problems relevant in industrial, operational, cultural, and environmental applications, including modeling, testing, detection, suppression, human behavior, wildfires, structures, and risk analysis.
The aim of Fire Technology is to push forward the frontiers of knowledge and technology by encouraging interdisciplinary communication of significant technical developments in fire protection and subjects of scientific interest to the fire protection community at large.
It is published in conjunction with the National Fire Protection Association (NFPA) and the Society of Fire Protection Engineers (SFPE). The mission of NFPA is to help save lives and reduce loss with information, knowledge, and passion. The mission of SFPE is advancing the science and practice of fire protection engineering internationally.