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Experimental and Numerical Study of the Interaction Between Water Mist and Fire in an Intermediate Test Tunnel

机译:中间试验隧道水雾与火相互作用的实验与数值研究

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摘要

The paper deals with interaction between water mist and hot gases in a longitudinally ventilated tunnel. The work aims at understanding the interaction of mist, smoke and ventilation.The study is based on one intermediate tunnel test and an extensive use of the computational code Fire Dynamics Simulator (FDS, NIST). The approach consists first of reconstructing the test with the CFD code by defining the relevant numerical parameters to accurately model the involved water mist system. Then, it consists of handling from the local data the complicated flows generated by the water mist flooding on the one hand and by fire and ventilation on the other hand. The last stage consists in quantifying each mechanism involved in interaction between water mist and hot gases. There are three main results in this study. Firstly, the CFD code prediction is also evaluated in this configuration, with and without water mist. Before the mist system activation, the agreement is satisfactory for gas temperatures and heat flux. After the activation time, the CFD code predicts well the thermal environment and in particular its stratification. Secondly, water mist plays a strong thermal role since in the test studied, roughly half of the heat released by fire is absorbed by water droplets. Thirdly, heat transfer from gaseous phase to droplets is the main mechanism involved (73%). The remaining heat absorbed by droplets results from tunnel surface cooling which represents (9%) and radiative attenuation (18%).
机译:本文探讨了纵向通风隧道中水雾与热气之间的相互作用。这项工作的目的是了解雾气,烟雾和通风的相互作用。这项研究基于一个中间隧道测试,并广泛使用了计算代码《火灾动态模拟器》(FDS,NIST)。该方法首先包括通过定义相关的数值参数,使用CFD代码重建测试以对涉及的水雾系统进行精确建模。然后,它包括根据本地数据处理一方面由于水雾泛滥而另一方面由于火灾和通风而产生的复杂流。最后一步是量化与水雾和热气相互作用有关的每种机制。这项研究有三个主要结果。首先,在有或没有水雾的情况下,在此配置下也要评估CFD代码预测。在雾气系统激活之前,该协议对于气体温度和热通量是令人满意的。在激活时间之后,CFD代码可以很好地预测热环境,尤其是其分层。其次,水雾起着很强的热作用,因为在所研究的测试中,火释放的热量大约有一半被水滴吸收。第三,从气相到液滴的传热是主要的机理(73%)。液滴吸收的剩余热量来自隧道表面冷却(占9%)和辐射衰减(占18%)。

著录项

  • 来源
    《Fire Technology》 |2014年第3期|565-587|共23页
  • 作者单位

    CSTB-Centre Scientifique et Technique du Batiment, 84 avenue Jean Jaures, Champs sur Marne, 77447 Marne-La- Vallee Cedex 2, France;

    CSTB-Centre Scientifique et Technique du Batiment, 84 avenue Jean Jaures, Champs sur Marne, 77447 Marne-La- Vallee Cedex 2, France;

    CSTB-Centre Scientifique et Technique du Batiment, 84 avenue Jean Jaures, Champs sur Marne, 77447 Marne-La- Vallee Cedex 2, France;

    LEMTA-Laboratoire d'Energetique et de Mecanique Theorique et Appliquee Nancy Universite, CNRS, Faculte des Sciences et Technologies, BP 70239, 54506 Vandoeuvre Cedex, France;

    Sonovision division Ligeron, 3 cours Albert Thomas, 69003 Lyon, France;

    Institut P', UPR CNRS 3346-Departement Fluides, Thermique, Combustion-ENSMA, BP 40109, 86961 Futuroscope Chasseneuil, France;

    Institut P', UPR CNRS 3346-Departement Fluides, Thermique, Combustion-ENSMA, BP 40109, 86961 Futuroscope Chasseneuil, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Water mist; Fire; Tunnel; Interaction phenomena; CFD; Model test;

    机译:水雾火;隧道;相互作用现象;差价合约模型测试;

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