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Customising Evacuation Instructions for High-Rise Residential Occupants to Expedite Fire Egress: Results from Agent-Based Simulation

机译:自定义高层住宅占用者的疏散说明,加快火灾出口:基于代理的模拟结果

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As the possibility of safe escape is one of the most crucial aspects of a building’s fire safety features, understanding of human behaviour under fire conditions is important for a successful evacuation. Although most of today’s buildings are equipped with fire safety systems, a fire can still occur at anytime and anywhere in a building and have devastating consequences. In the last decade, researchers and practitioners have used information technology to assist with fire safety design and emergency management. Building Information Modelling (BIM) is an exemplar process whose underpinning digital technology has been helpful for fire safety design, simulation, and analysis, but there is a lack of research on how BIM-based models combined with agent-based simulations can help improve evacuation via effective navigation and wayfinding in high-rise residential buildings. Customising evacuation instructions based on BIM, simulation results and occupant location, and delivery of these bespoke instructions to occupants’ smartphones during a fire emergency is relatively novel and research is needed to realise the potential of this approach. Therefore, this study investigates how customised evacuation instructions delivered to each occupant in a high-rise residential building could result in a faster evacuation during a fire incident. The research adopted a case study building and used Pathfinder (agent-based evacuation simulation software) to simulate evacuation from this eleven-floor high-rise residential building in Cairo, Egypt. Constraining evacuees (simulated agents in Pathfinder) to take particular exit routes was used as a proxy for delivering customised evacuation instructions to actual evacuees. Simulation results show that, in general, allowing the use of lifts for the benefit of disabled occupants could lead to their misuse by able-bodied occupants; evacuees would attempt to use the first visible point of exit regardless of how crowded it is. With optimally customised instructions, the evacuation time was, on average, 17.6 min (almost 50%) shorter than when the occupant’s choice of egress route was simulated based on standard path planning factors such as route length, nearby crowds and visible hazards. With evacuation instructions sent via smartphones, occupants could exit more rapidly via alternative routes. Such bespoke instructions were shown to reduce the adverse effects of crowdedness and uneven distribution of occupants along vertical and horizontal evacuation routes on evacuation time.
机译:由于安全逃生的可能性是建筑物的消防安全特征的最重要方面之一,在消防条件下对人类行为的理解对于成功疏散至关重要。虽然今天的大多数建筑都配备了消防安全系统,但仍然可以随时随地发生火灾,并在建筑物中的任何地方发生并具有毁灭性的后果。在过去的十年中,研究人员和从业者使用了信息技术来协助消防安全设计和应急管理。建筑信息建模(BIM)是一个示例性过程,其支持数字技术对消防安全设计,仿真和分析有所帮助,但缺乏对基于BIM的模型与基于代理的模拟的模拟有助于提高疏散的研究通过高层住宅建筑中的有效导航和WASFINGING。自定义基于BIM,仿真结果和乘员位置的疏散指令,以及在消防紧急情况下向乘员智能手机提供这些定制指示的疏散指令是相对新颖的,并且需要研究来实现这种方法的潜力。因此,本研究调查了在高层住宅建筑中送到每位乘员的定制的疏散指令如何导致火灾事故中的速度更快。该研究采用了案例研究建筑和使用探测器(基于代理的疏散模拟软件),以模拟在埃及开罗的十一楼高层住宅楼的疏散。限制撤离者(探测器中的模拟代理)采用特定的退出路线用作用于将定制的疏散指令提供给实际疏散的代理。仿真结果表明,一般而言,允许使用升降机的损失者可能会导致能够拥有居住者的滥用;撤离者将尝试使用第一个可见的出口点,而不管它有多拥挤。通过最佳定制的说明,疏散时间平均为17.6分钟(近50%),而不是基于标准路径规划因子模拟乘坐出口路线,如路线长度,附近的人群和可见危险。通过智能手机发送的疏散说明,占用者可以通过替代路线更快地退出。显示了这些定制指示,以减少垂直和水平疏散路线沿垂直和水平疏散路线对乘员的不利影响和不均匀的分布。

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