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APPLIED ZONE MODEL TO EVALUATE THE SMOKE MANAGEMENT IN AN UNDERGROUND STRUCTURE

机译:应用区域模型评估地下结构中的烟雾管理

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摘要

In Taiwan, since underground structures are more functional and complicated than usual buildings, e.g., mass rapid transportation center and underground shopping streets, the performance-based designs are always adopted in allowing architects greater design freedom without any reduction in levels of fire safety of underground structures. Consequently, the function and efficiency of the smoke control systems in a public-use underground structure are becoming one of important subjects for fire safety design engineers. This paper used zone model as well as simplified mathematical models, which commonly employed by fire safety engineering designers to investigate the smoke temperature and accumulating effect in an underground structure. Also, an evacuation assessment and escape time calculation were evaluated in this paper to address the strongly depending relationship between evacuation and smoke control design. Further, experimental data collected from a full-scale underground corridor in Japan was used to verify the results from model prediction.
机译:在台湾,由于地下结构比普通建筑物(例如快速运输中心和地下购物街)功能更复杂,因此,始终采用基于性能的设计,以允许建筑师享有更大的设计自由度,而不会降低地下的消防安全水平结构。因此,公共地下结构中烟雾控制系统的功能和效率正成为消防安全设计工程师的重要课题之一。本文使用区域模型以及简化的数学模型,消防安全工程设计人员通常使用这种模型来研究地下结构中的烟气温度和累积效应。此外,本文还评估了疏散评估和逃生时间计算,以解决疏散与烟雾控制设计之间的强烈依赖关系。此外,从日本的大型地下走廊收集的实验数据被用于验证模型预测的结果。

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