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Flame Spread Modelling of Complex Textile Materials

机译:复杂纺织材料的火焰蔓延建模

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摘要

Flame spread in textile materials was modelled using two different simulation programs: the semi-empirical area-based code ConeTools, and the computational fluid dynamics, CFD, code Fire Dynamics Simulator, FDS, (version 5). Two textile products developed within the EU-project Flexifunbar were selected for study. The two products show a large difference in composition and application area, one material is developed to function as a protecting layer for the underlying structure in case of fire while the other is an insulating material with no requirements on fire performance. The products represent materials for which fire test results indicate a classification on either end of the rating scale for wall materials according to EN 13501. Two FDS-models were developed for the simulations. The first FDS model was a relatively simple model of the small scale Cone Calorimeter test (ISO 5660) which served the purpose of a first preliminary validation of the model for pyrolysis of the material. In the second FDS model, a model of the intermediate scale Single Burning Item, SBI, test method (EN 13823), the fire scenario was expanded to simulate flame spread over a surface. The work included determination of the necessary material properties. In ConeTools, the option to predict an SBI test was used. The results from the two simulation methods were compared to real SBI tests. Neither model was able to fully predict the heat release rate for these complex products. However, the results from both codes were accurate enough to correctly predict the fire rating class for wall linings according to EN 13 501.
机译:使用两个不同的仿真程序对纺织品材料中的火焰传播进行了建模:基于半经验区域的代码ConeTools,以及计算流体动力学CFD,代码为Fire Dynamics Simulator FDS(第5版)。欧盟项目Flexifunbar开发的两种纺织品被选中进行研究。两种产品的成分和应用领域差异很大,一种材料被开发为在发生火灾时用作基础结构的保护层,而另一种则是对防火性能没有要求的绝缘材料。这些产品代表的材料的耐火测试结果表明,根据EN 13501,墙壁材料的等级评定在其两端进行了分类。为模拟开发了两个FDS模型。第一个FDS模型是小规模量热仪测试(ISO 5660)的一个相对简单的模型,用于对材料进行热解的模型进行初步验证。在第二个FDS模型中,该模型为中等规模的单一燃烧项目SBI测试方法(EN 13823),其火灾场景得以扩展,以模拟火焰在表面上的扩散。这项工作包括确定必要的材料特性。在ConeTools中,使用了预测SBI测试的选项。将两种模拟方法的结果与真实的SBI测试进行比较。两种模型都无法完全预测这些复杂产品的放热率。但是,根据EN 13 501,这两个代码的结果都足够准确,可以正确预测墙面衬砌的防火等级。

著录项

  • 来源
    《Fire Technology》 |2011年第1期|p.85-106|共22页
  • 作者单位

    Department of Fire Technology, SP Technical Research Institute of Sweden, Box 857, 50115 Boras, Sweden;

    rnDepartment of Fire Technology, SP Technical Research Institute of Sweden, Box 857, 50115 Boras, Sweden;

    rnDepartment of Fire Safety Engineering and Systems Safety, Faculty of Engineering, Lund University, Box 118, 22100 Lund, Sweden;

  • 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

    flame spread; textiles; conetools; FDS; euroclasses;

    机译:火焰蔓延;纺织品;圆锥工具FDS;欧洲类;
  • 入库时间 2022-08-18 00:13:02

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