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Fire risk analysis with a performance-based fire safety engineering approach and FDS models for underground facilities in Gran Sasso National Laboratories

机译:用基于性能的消防安全工程方法和Gran Sasso国家实验室的地下设施FDS模型的火灾风险分析

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The aim of this work is the application of a performance-based approach in the field of the Fire Safety Engineering within the Gran Sasso National Laboratories (LNGS), one of the structures owned and managed by the National Institute for Nuclear Physics (INFN). CFD (Computational Fluid Dynamics) models provide a solid foundation on which a complete assessment of the different choices and procedures of evacuation management might be performed. These choices take into account, not only the characteristics of the surrounding environment and the accident scenario, but also the psychological and human aspects induced in people involved in an emergency event. The analysis has been implemented through the development of fire simulation models FDS (Fire Dynamic Simulator of the NIST) applied to new experimental installations, facilities and utilities in one of the LNGS underground areas. The object of the study has been the definition and simulation of a fire caused by an electrical cabinet devoted to the new experimental apparatus named "LUNA-MV" located inside the interferometer tunnel of the LNGS. The analysis addressed the choices in the preliminary design of the safety systems and in the optimization of the technical, economic and design parameters taken into account for each hypothesized event scenario. The work allowed also identifying the crucial factors for reviewing and optimizing the LNGS Emergency Plan, thus providing useful elements to support the LNGS users' training.
机译:这项工作的目的是在Gran Sasso国家实验室(LNGS)之一,在国立核物理研究所(INFN)所拥有和管理的一个结构中,在消防安全工程领域中的应用。 CFD(计算流体动力学)模型提供了一个坚实的基础,可以进行完全评估不同选择和疏散管理程序的程序。这些选择考虑到,不仅是周围环境的特点和事故情景,而且还考虑到事故情景,也是参与紧急事件的人们所诱导的心理和人类方面。通过开发了应用于新的实验装置,设施和公用事业的火灾仿真模型FDS(NIST的火力动态模拟器)来实施分析。该研究的目的是由专门用于位于LNG的干涉仪隧道内部的“Luna-MV”的新实验装置引起的电气柜引起的火灾的定义和仿真。分析解决了安全系统初步设计中的选择,并考虑了每个假设事件情景的技术,经济和设计参数的优化。工作还允许确定审查和优化LNG应急计划的重要因素,从而提供有用的元素来支持LNG用户的培训。

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