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Wind tunnel tests on compartment fires with crossflow ventilation

机译:带有横流通风的车厢火灾的风洞测试

摘要

When a fire occurs in a room at ground level or a compartment located in the higher floors of a very tall building, the strong ambient wind will play an important role in fire spreading and smoke movement behavior. However, wind effect on compartment fire in cross ventilation condition has not been fully studied so far. In the present study, an effort has been made to study the wind effect on compartment fire in cross ventilation condition through experimental investigations. The experimental fire was generated by 250ml n-heptane on the floor center of a cube enclosure with two opposite vents on the walls. The inside and outside gas temperature profiles at different vertical and horizontal locations were recorded by two thermocouple matrixes. The ambient wind velocity was set to 0, 1.5 and 3ms-1. It is observed that the ambient wind would enhance the fire severity by increasing the compartment fire temperature and reducing the time to flashover. The spilled-out flame/plume would extend horizontally farther with the increase of wind speed. Simple theoretical analysis shows that there is a critical wind velocity, or a dimensional number, to differentiate whether the gas flow across the vents is bidirectional or unidirectional, which is believed to influence enclosure fire behavior greatly.
机译:当火灾发生在高层建筑的较高楼层或位于较高楼层的房间中时,强烈的环境风将在火灾蔓延和烟雾移动行为中发挥重要作用。然而,迄今为止,尚未充分研究风在交叉通风条件下对舱室火灾的影响。在本研究中,已经通过实验研究来努力研究风在交叉通风条件下对舱室火灾的影响。实验火是由250ml正庚烷在立方体外壳的地板中央产生的,墙上有两个相对的通风孔。通过两个热电偶矩阵记录了不同垂直和水平位置的内部和外部气体温度曲线。环境风速设置为0、1.5和3ms-1。可以观察到,周围的风将通过增加车厢的着火温度并减少飞火时间来提高火势。随着风速的增加,溢出的火焰/泡沫将水平延伸得更远。简单的理论分析表明,存在一个临界风速或维数,以区分通过通风孔的气流是双向还是单向,这被认为会极大地影响机柜的着火行为。

著录项

  • 作者

    Chen HX; Liu NA; Chow WK;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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