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On the Fire Scenario in Road Tunnels: a Comparison between Zone and Field Models

机译:在道路隧道中的火灾情景:区与现场模型的比较

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Some catastrophic fires occurred in the last 15 years in both road and railway tunnels used by millions of people are turning the attention of the engineering community towards the assessment of the structural safety of tunnels, both during and after a fire. To this end, a realistic description of fire propagation and a reliable picture of the thermal field are mandatory, in order to evaluate the thermal load acting on the lining and the partitions. With reference to a rather common road-tunnel geometry, three possible thermal inputs representing as many levels of fire severity are considered here, namely the burning of a car, of a bus and of a heavy-goods vehicle (HGV). The fire scenario is firstly modeled by means of a rather simple but handy code based on a two-zone model for the description of the fire in each compartment. Later, a more complex code based on computational fluid dynamics applied to the simulation of fire development (Fire Dynamics Simulator - FDS) is used to allow a comparison between the numerical results obtained in either way, and to check to what extent some available experimental results concerning similar tunnels can be fitted. The fitting shows that - by properly subdividing the tunnel (that has no compartments) into a suitable number of "virtual" compartments - the agreement between the two codes is very good, as well as that between numerical and experimental results.
机译:在数百万人使用的道路和铁路隧道中发生了一些灾难性的火灾发生在数百万人来说,在火灾期间和之后朝着评估隧道的结构安全的评估来转向工程界的注意力。为此,强制性的火场的真实描述和热场的可靠图像是强制性的,以便评估作用在衬里和隔板上的热负荷。参考相当普通的道路隧道几何形状,这里考虑了三种可能的热输入,即在这里考虑到多种火灾严重程度,即汽车的燃烧,公共汽车和重型货车(HGV)。首先通过基于两个区域模型的一个相当简单但方便的代码来设计火灾场景,用于在每个隔间中的火灾描述。之后,使用基于应用于火灾开发模拟的计算流体动力学(消防动力学模拟器 - FDS)的更复杂的代码来允许在任何一种方式获得的数值结果之间进行比较,并检查一些可用实验结果的程度有关类似的隧道可以安装。该拟合表明 - 通过适当地将隧道(没有隔间)分成合适数量的“虚拟”隔间 - 两种代码之间的协议非常好,以及数值和实验结果之间的协议。

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