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An open multi-physics framework for modelling wildland-urban interface fire evacuations

机译:一种开放的多物理框架,用于塑造瓦兰德城市界面火灾疏散

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摘要

Fire evacuations at wildland-urban interfaces (WUI) pose a serious challenge to the emergency services, and are a global issue affecting thousands of communities around the world. This paper presents a multi-physics framework for the simulation of evacuation in WUI wildfire incidents, including three main modelling layers: wildfire, pedestrians, and traffic. Currently, these layers have been mostly modelled in isolation and there is no comprehensive model which accounts for their integration. The key features needed for system integration are identified, namely: consistent level of refinement of each layer (i.e. spatial and temporal scales) and their application (e.g. evacuation planning or emergency response), and complete data exchange. Timelines of WUI fire events are analysed using an approach similar to building fire engineering (available vs. required safe egress times for WUI fires, i.e. WASET/WRSET). The proposed framework allows for a paradigm shift from current wildfire risk assessment and mapping tools towards dynamic fire vulnerability mapping. This is the assessment of spatial and temporal vulnerabilities based on the wildfire threat evolution along with variables related to the infrastructure, population and network characteristics. This framework allows for the integration of the three main modelling layers affecting WUI fire evacuation and aims at improving the safety of WUI communities by minimising the consequences of wildfire evacuations.
机译:在瓦尔兰城市界面(WUI)对紧急事务构成了严峻挑战的火灾疏散,是影响全世界数千社区的全球问题。本文介绍了武力野火事件疏散模拟的多物理框架,包括三个主要建模层:野火,行人和交通。目前,这些层主要被隔离地建模,没有综合模型,占他们的集成。识别系统集成所需的关键特征,即:每层的一致细化水平(即空间和时间尺度)及其应用程序(例如,疏散计划或应急响应),以及完整的数据交换。使用类似于建筑物消防工程的方法进行分析Wui Fire Events的时间表(可用与Wui火灾所需的安全出口时间,即WASET / WRSET)。所提出的框架允许从当前的野火风险评估和映射工具迈向动态火灾漏洞映射的范式转移。这是基于野火威胁演变的空间和时间漏洞的评估以及与基础设施,人口和网络特征相关的变量。该框架允许整合影响武会火灾疏散的三个主要建模层,旨在通过最大限度地减少野火疏散的后果来提高Wui社区的安全性。

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