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A Risk Assessment Approach for Evaluating the Impact of Toxic Contaminants Released Indoors by Considering Various Emergency Ventilation and Evacuation Strategies

机译:通过考虑各种紧急通风和疏散策略来评估室内释放的有毒污染物影响的风险评估方法

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The release of toxic airborne contaminants resulting from terrorist attacks on buildings can lead to disastrous consequences. To evaluate and reduce the effects of these emergencies, various methods and models have been developed in the past few years. Such work has provided effective tools for the building management system to do risk assessment of the contaminated areas. Although risk analysis methods to describe the contaminant dispersion scenarios made significant progress, these approaches did not generally consider the releasing scenario occurring in the ventilation system and the effect of human behavior during the developing process of an emergency event. Emergency strategies chosen by the decisionmaker are not always associated with the early-warning system, such as the sensor monitoring network and the source identification system inside the building. This study aims to provide a risk assessment model considering both the variation of contaminant concentration and occupant distribution after the release of toxic agents to obtain the exposure risk for people indoors. The contaminant dispersion is simulated using computational fluid dynamics. The evacuation process for people is modeled using Pathfinder, and the exposure risk for occupants under various emergency strategies is calculated using the efficiency factor of the contaminant source. The results of the exposure risk for 40 basic cases are discussed, and the optimal ventilation mode for these specific cases is recommended. Next, the impact of the variation of human behavior, contaminant detection time needed by sensors, and source identification time needed by inverse modeling on the exposure risk for people indoor is studied. The uncertainty and reproducibility of the numerical simulations are emphatically discussed in the Supporting Information.
机译:恐怖袭击建筑物造成的有毒空气污染物的释放可能导致灾难性后果。为了评估和减少这些紧急情况的影响,在过去几年中开发了各种方法和模型。这些工作为建筑物管理系统提供了有效工具,可对受污染地区进行风险评估。尽管描述污染物扩散场景的风险分析方法取得了重大进展,但这些方法通常并未考虑通风系统中发生的释放场景以及紧急事件发展过程中人类行为的影响。决策者选择的应急策略并不总是与预警系统相关联,例如建筑物内的传感器监控网络和源识别系统。这项研究旨在提供一种风险评估模型,同时考虑污染物释放后污染物浓度和乘员分布的变化,以获得室内人员的暴露风险。使用计算流体动力学模拟污染物的扩散。使用Pathfinder对人员的疏散过程进行建模,并使用污染物源的效率因子计算各种应急策略下乘员的暴露风险。讨论了40个基本病例的暴露风险结果,并建议了针对这些特定病例的最佳通气模式。接下来,研究了人类行为变化,传感器所需的污染物检测时间以及逆模型所需的源识别时间对室内人员暴露风险的影响。在《支持信息》中着重讨论了数值模拟的不确定性和可重复性。

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