Evaluation of Tsunami Evacuation Plans for an Underground Mall Using an Agent-Based Model

IF 0.7 Q4 GEOSCIENCES, MULTIDISCIPLINARY Journal of Disaster Research Pub Date : 2024-04-01 DOI:10.20965/jdr.2024.p0268
Akira Takahashi, K. Yasufuku
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Abstract

Tsunamis resulting from earthquakes can cause extensive damage, including infrastructure destruction, injuries, and fatalities. To address these risks, numerous tsunami evacuation simulations have been conducted to assess evacuation strategies and identify issues, particularly in Japan, where the Nankai Trough earthquake is anticipated, affecting underground malls in urban areas. Our previous research primarily focused on evacuating from underground to the surface, neglecting surface evacuation. Therefore, this study extended the previous study to include horizontal evacuation following the exit from the underground mall to ground level. It also considered the impact of pedestrian road crossings as interactions with vehicular traffic within the simulation to enhance realism and verify the evacuation risk. The study also explores scenarios where evacuation guide stairs are unavailable, comparing the effectiveness of alternative staircases in the evacuation plan. Results indicate that while using alternative staircases temporarily increases the number of evacuees reaching the surface, road crossings on evacuation routes become significant bottlenecks, leading to surface congestion and delayed evacuations. This raises doubts about the effectiveness of alternative staircases and highlights the need to consider alternative evacuation routes as a secondary plan. Additionally, the study reveals that reduced pedestrian flow at road crossings can significantly impact on evacuation times. Ultimately, this study demonstrated that achieving a short evacuation time from underground malls to the ground level might not always yield the best evacuation plan. It underscored the importance of considering aboveground factors in evacuation planning to ensure safety in the event of a tsunami caused by an earthquake.
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使用基于代理的模型评估地下商场的海啸疏散计划
地震引发的海啸可造成广泛破坏,包括基础设施破坏、人员伤亡。为了应对这些风险,人们进行了大量海啸疏散模拟,以评估疏散策略和发现问题,特别是在日本,预计南海槽地震将影响城市地区的地下商场。我们之前的研究主要侧重于从地下向地面疏散,忽略了地面疏散。因此,本研究将之前的研究扩展到从地下商场撤离到地面后的水平疏散。研究还考虑了行人过路的影响,将其作为模拟中与车辆交通的互动,以增强真实感并验证疏散风险。研究还探讨了无法使用疏散引导楼梯的情况,比较了疏散计划中替代楼梯的有效性。结果表明,虽然使用替代楼梯能暂时增加到达地面的疏散人数,但疏散路线上的道路交叉口会成为重大瓶颈,导致地面拥堵和疏散延迟。这使人们对替代楼梯的有效性产生怀疑,并突出了将替代疏散路线作为次要计划的必要性。此外,研究还显示,道路交叉口行人流量的减少会对疏散时间产生重大影响。最终,这项研究表明,要在短时间内从地下商场疏散到地面并不总是最佳的疏散计划。它强调了在疏散规划中考虑地面因素的重要性,以确保地震引发海啸时的安全。
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来源期刊
Journal of Disaster Research
Journal of Disaster Research GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
1.60
自引率
37.50%
发文量
113
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