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Numerical analysis of the effect of external opening on fire safety of refuge floors in tall buildings

机译:高层建筑外部开口对避难层消防安全影响的数值分析

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摘要

Refuge floors are fire safety requirements for tall buildings in many Asia-Oceania cities. However, there are concerns on the adequate provision of cross-ventilation and drencher system to openings on refuge floors. To review the existing situation, a survey of 44 building developments involving 51 blocks of both residential and non-residential tall buildings was conducted. A new fire safety parameter, i.e. the ratio of external wall openings areas to the nominal total wall areas of refuge floors (wall opening area ratio, or WOAR), was introduced to provide a quantitative measure in analysing fire safety level of tall buildings. To study how the ventilation provision is affected by WOAR, numerical simulations for the effect of natural ventilation on fire growth on the refuge floor were conducted by incorporating the wind data collected from the tallest building in Hong Kong. In the simulations, an office layout was adopted on both upper and lower floors for the sake of illustrating the possible smoke and heat spread from lower floor to upper floor (refuge floor). Finally, fire safety issues in relation to natural ventilation on fire in tall buildings were discussed. Suggestions in improving the fire safety design of tall buildings are proposed.
机译:避难层是许多亚洲-大洋洲城市高层建筑的消防安全要求。然而,有人关注在避难楼层的开口处是否有足够的对流通风和通风系统。为检讨现时的情况,我们调查了44个楼宇发展项目,涉及51幢住宅及非住宅高层建筑。引入新的消防安全参数,即外墙开口面积与避难楼板标称总墙面积的比率(墙体开口面积比率,或WOAR),为分析高层建筑的消防安全水平提供定量度量。为了研究WOAR对通风设施的影响,我们结合从香港最高建筑物收集的风力数据,对自然通风对避难区火灾增长的影响进行了数值模拟。在模拟中,上层和下层都采用了办公室布局,以说明可能从下层到上层(避难层)的烟雾和热量。最后,讨论了高层建筑自然通风的消防安全问题。对高层建筑消防安全设计提出改进建议。

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