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Emergency Evacuation Plan for Hazardous Chemicals Leakage Accidents Using GIS-based Risk Analysis Techniques in South Korea

机译:韩国基于GIS的风险分析技术对危险化学品泄漏事故进行紧急疏散计划

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摘要

Despite improvements in chemical safety management systems, incidents involving the release of hazardous chemicals continue to happen. In some cases, they result in the evacuation of residents. For hazardous chemical release accidents, an evacuation plan needs to be selective enough to consider both the indoor and outdoor concentrations of nearby buildings and the time in which the maximum allowable concentration may occur. In this study, a real-time risk analysis tool was developed based on the geographic information system (GIS) in order to establish the emergency response and risk communication plan for effectively assisting decision-making personnel. A selective evacuation plan was also established by a proposed assessment module considering the indoor/outdoor pollution concentration of buildings and the release duration time of chlorine gas leakage. The GIS-based simulated modules were performed based on eleven buildings of Ulsan city, located near an industrial cluster and home to a high population density. As a result of the simulated real-time risk assessment, only four buildings were affected by chlorine gas concentration according to wind direction and diffusion time. In addition, it was considered effective to establish an indoor/outdoor evacuation plan as opposed to an outdoor evacuation plan which is outside the range of the damage. Subsequently, an emergency evacuation plan was established with the concentration of a hazardous chemical according to the decision-making matrix. This study can enlighten the real-time emergency risk assessment based on GIS while effectively supporting the emergency action plans in response to the release of hazardous chemicals in clustered plants and the community.
机译:尽管化学品安全管理体系有所改进,但涉及危险化学品释放的事件仍在继续发生。在某些情况下,它们会导致居民疏散。对于危险的化学物质泄漏事故,疏散计划需要有足够的选择性,以考虑附近建筑物的室内和室外浓度以及可能出现最大允许浓度的时间。在这项研究中,开发了基于地理信息系统(GIS)的实时风险分析工具,以建立应急响应和风险沟通计划,以有效地协助决策人员。拟议的评估模块还根据建筑物的室内/室外污染浓度和氯气泄漏的释放持续时间建立了选择性疏散计划。基于蔚山市的蔚山市的11座建筑物进行了基于GIS的模拟模块,这些建筑物位于一个工业集群附近,人口密度很高。模拟实时风险评估的结果是,根据风向和扩散时间,只有四座建筑物受到氯气浓度的影响。另外,相对于超出损坏范围的室外疏散计划,建立室内/室外疏散计划被认为是有效的。随后,根据决策矩阵制定了应急避难计划,其中含有危险化学品的浓度。这项研究可以启发基于GIS的实时紧急风险评估,同时有效地支持应急行动计划,以应对集群工厂和社区中有害化学物质的释放。

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