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Reduced-scale experimental study of the temperature field and smoke development of the bus bar corridor fire in the underground hydraulic machinery plant

机译:地下液压机械厂汇流排走廊火灾的温度场和烟气生成的缩小实验研究

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摘要

While fire once occurs in a long tunnel, both heat and toxic smoke will be continuously released and become the fatal factors threatening the indoor occupants. This paper mainly studied the characteristics of smoke in the reduced-scale (1:12) corridor model under the natural filling condition. The temperature distribution of the fire-induced smoke and the smoke layer height are tested. The test data are used to access the temperature field for different heat release rates (HRRs) without ventilation in the corridor. The maximum smoke temperatures under the ceiling are all lower than 200 C for HRR less than 1500 kW. The smoke temperature stratifies vertically. The stratification can be described by the exponential fit. Besides the temperature field, the smoke layer height is also recorded. Smoke sinks quickly after the ignition. 60 percent of the space has been filled of smoke by the dimensionless time of 300. Then the smoke slows down gradually. In order to achieve more results with different working conditions, full-scale numerical simulation is conducted. There is a good agreement between the reduced-scale experimental and predicted results for the temperature and the smoke layer height, respectively. These provide the basic data of fire scenario in the bus bar corridor. It also affords to predict the smoke development in other underground corridors.
机译:尽管长隧道中一旦发生火灾,热量和有毒烟雾都会不断释放,并成为威胁室内人员的致命因素。本文主要研究了在自然填充条件下缩小比例(1:12)走廊模型中烟雾的特性。测试了火灾引起的烟雾的温度分布和烟雾层高度。测试数据用于访问不同热释放率(HRR)的温度场,而走廊中没有通风。对于HRR小于1500 kW的天花板,最高烟气温度均低于200C。烟气温度垂直分层。分层可以通过指数拟合来描述。除温度场外,还记录烟雾层的高度。点火后,烟雾迅速下沉。到300的无量纲时间,60%的空间已经充满了烟雾。然后,烟雾逐渐变慢。为了在不同的工作条件下获得更多结果,进行了全面的数值模拟。在缩小规模的实验结果和预测结果之间,温度和烟层高度分别有很好的一致性。这些提供了母线走廊火灾情况的基本数据。它还可以预测其他地下走廊的烟雾发展。

著录项

  • 来源
    《Tunnelling and underground space technology》 |2014年第3期|95-103|共9页
  • 作者单位

    School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi 710055, PR China;

    School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi 710055, PR China;

    Lianyugang Architecture Design and Research Institute Corp. Ltd., Lianyungang, Jiangsu, PR China;

    School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an, Shaanxi 710055, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tunnel fire; Smoke natural filling; Reduced-scale experiment; FDS;

    机译:隧道起火;烟雾自然填充;缩小规模的实验;FDS;

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