The cost of climate change: A generalized cost function approach for incorporating extreme weather exposure into public transit accessibility

IF 7.1 1区 地球科学 Q1 ENVIRONMENTAL STUDIES Computers Environment and Urban Systems Pub Date : 2024-07-05 DOI:10.1016/j.compenvurbsys.2024.102145
Naser Ahmed , Jinhyung Lee , Luyu Liu , Junghwan Kim , Kee Moon Jang , Jinfei Wang
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Abstract

Public transit offers urban populations physical accessibility to resources and opportunities. However, at the same time, transit trips often expose users to extreme environmental conditions, such as extreme heat and cold since transit journeys usually include out-of-vehicle trip segments including walking and waiting. Such exposure can be considered as environmental health costs because exposure to weather extremes can lead to adverse health outcomes. Even worse, climate change is increasing the intensity and frequency of extreme weather events. In this context, how can we make public transit accessibility measures ready for climate change? This paper attempts to answer this question by developing a generalized cost function approach combining travel time and environmental health costs into an integrated measure of dual accessibility: a measure of the travel costs of accessing a fixed number of destinations. We synthesize transport science, environmental health, remote sensing, and urban climatology to empower the proposed framework. To demonstrate the utility of the proposed method, we carry out an example study that incorporates transit passengers' extreme cold exposure into accessibility measures in the city of Winnipeg, Manitoba, Canada. Further, we perform a social equity analysis to investigate whether the increase in total integrated costs (i.e., decrease in accessibility) due to the inclusion of environmental health costs disproportionately affects socially disadvantaged population groups. The proposed method enables a more realistic and practical measurement of public transit accessibility under climate change; thereby, improving the readiness and resilience of our society and transport systems for future challenges.

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气候变化的成本:将极端天气风险纳入公共交通可达性的通用成本函数方法
公共交通为城市居民提供了获取资源和机会的实际便利。但与此同时,由于公交出行通常包括步行和等候等车外出行环节,因此公交出行往往会使用户暴露在极端的环境条件下,如酷暑和严寒。这种暴露可被视为环境健康成本,因为暴露在极端天气下会导致不良的健康后果。更糟糕的是,气候变化正在增加极端天气事件的强度和频率。在这种情况下,我们如何才能使公共交通无障碍措施为气候变化做好准备?本文试图通过开发一种广义成本函数方法来回答这个问题,该方法将旅行时间和环境健康成本结合在一起,形成了一种双重可达性的综合衡量标准:一种对到达固定数量目的地的旅行成本的衡量标准。我们综合运用了交通科学、环境健康、遥感和城市气候学等学科的知识,为所提出的框架赋能。为了证明所提方法的实用性,我们在加拿大马尼托巴省温尼伯市开展了一项实例研究,将公交乘客的极寒暴露纳入可达性测量中。此外,我们还进行了社会公平分析,以调查由于纳入环境健康成本而导致的总综合成本的增加(即无障碍程度的降低)是否会对社会弱势群体造成过大的影响。所提出的方法能够更现实、更实用地衡量气候变化下的公共交通可达性,从而提高我们的社会和交通系统应对未来挑战的准备程度和复原能力。
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来源期刊
CiteScore
13.30
自引率
7.40%
发文量
111
审稿时长
32 days
期刊介绍: Computers, Environment and Urban Systemsis an interdisciplinary journal publishing cutting-edge and innovative computer-based research on environmental and urban systems, that privileges the geospatial perspective. The journal welcomes original high quality scholarship of a theoretical, applied or technological nature, and provides a stimulating presentation of perspectives, research developments, overviews of important new technologies and uses of major computational, information-based, and visualization innovations. Applied and theoretical contributions demonstrate the scope of computer-based analysis fostering a better understanding of environmental and urban systems, their spatial scope and their dynamics.
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