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Emergency Evacuation of Hazardous Chemical Accidents Based on Diffusion Simulation

机译:基于扩散模拟的危险化学事故应急疏散

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摘要

The recent rapid development of information technology, such as sensing technology, communications technology, and database, allows us to use simulation experiments for analyzing serious accidents caused by hazardous chemicals. Due to the toxicity and diffusion of hazardous chemicals, these accidents often lead to not only severe consequences and economic losses, but also traffic jams at the same time. Emergency evacuation after hazardous chemical accidents is an effective means to reduce the loss of life and property and to smoothly resume the transport network as soon as possible. This paper considers the dynamic changes of the hazardous chemicals’ concentration after their leakage and simulates the diffusion process. Based on the characteristics of emergency evacuation of hazardous chemical accidents, we build a mixed-integer programming model and design a heuristic algorithm using network optimization and diffusion simulation (hereafter NODS). We then verify the validity and feasibility of the algorithm using Jinan, China, as a computational example. In the end, we compare the results from different scenarios to explore the key factors affecting the effectiveness of the evacuation process.
机译:信息技术(例如传感技术,通信技术和数据库)的最新快速发展,使我们能够使用模拟实验来分析由危险化学品引起的严重事故。由于危险化学品的毒性和扩散,这些事故通常不仅导致严重的后果和经济损失,而且同时导致交通拥堵。发生化学事故后紧急撤离是减少生命和财产损失并尽快恢复运输网络的有效手段。本文考虑了危险化学品泄漏后浓度的动态变化,并模拟了扩散过程。根据危险化学事故应急疏散的特点,建立了混合整数规划模型,并利用网络优化和扩散模拟(以下简称NODS)设计了启发式算法。然后,我们以中国济南市为例,验证了该算法的有效性和可行性。最后,我们比较了不同方案的结果,以探讨影响疏散过程有效性的关键因素。

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