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A fire safety assessment approach for evacuation analysis in underground physics research facilities

机译:地下物理研究设施疏散分析的消防安全评估方法

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This paper introduces an integrated approach for evacuation assessment of nuclear physics research facilities exposed to fire risk. The approach combines the use of a simplified egress modelling method and advanced agent-based simulations of evacuation. An integrated multi-model approach is proposed here given the varying level of complexity concerning evacuation safety in underground physics facilities. This paper introduces a simplified probabilistic egress model based on existing hand calculations for 1D smoke spread modelling and it suggests a procedure for its combined use with advanced agent-based evacuation simulations. This includes the use of the outputs of the simplified egress model in underground smoke-filled portions of underground nuclear research facilities (e.g. tunnel arcs) as an input for complex agent-based evacuation simulations in the underground access shafts. An exemplary application of the integrated approach is presented for the simulation of a set of hypothetical fire risk scenarios in the Future Circular Collider (FCC) at CERN. This approach is deemed to facilitate fire evacuation safety assessment in underground physics research facilities by optimizing the simulation of relevant fire risk scenarios. A discussion on the advantages and implications of the use of an integrated approach in comparison with other safety assessment methods is presented.
机译:本文介绍了一种综合方法,用于对遭受火灾危险的核物理研究设施进行疏散评估。该方法结合了简化的出口建模方法的使用和基于高级人员的疏散模拟。考虑到地下物理设施中疏散安全的复杂程度各不相同,此处提出了一种集成的多模型方法。本文基于一维烟雾扩散模型的现有人工计算方法,介绍了一种简化的概率出口模型,并提出了将其与高级基于代理的疏散模拟结合使用的过程。这包括在地下核研究设施的地下浓烟区域(例如隧道弧)中使用简化的出口模型的输出作为地下通道中基于代理的复杂疏散模拟的输入。在欧洲核子研究组织(CERN)的未来循环对撞机(FCC)中,提出了一种集成方法的示例性应用,用于模拟一组假设的火灾风险场景。通过优化相关火灾风险情景的模拟,该方法被认为有助于地下物理研究设施中的疏散安全评估。讨论了与其他安全评估方法相比,使用集成方法的优点和含义。

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