A Study on the External Wall Heating Temperature Distribution According to Opening Size in Building

Ui-In Jung, Sang-Hun Hong, Bong-Joo Kim
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Abstract

This study used a real-scale model experiment to reproduce internal fires in residential buildings such as a multi-dwelling unit, in order to prevent damage caused by tens of thousands of fires witnessed each year and to take measures to cope with them. For experimental conditions, different opening sizes were applied to measure and analyze the heating temperature of the exterior wall. Results drawn are as following: when the experiment was conducted with opening sizes(horizontal length) each at 2,000mm, 1,600mm, and 1,400mm, the flashover occurred at 630 seconds, 505 seconds and 510 seconds, respectively. Also, the total heating time, in proportion to this, came to 815 seconds, 713 seconds and 721 seconds. The maximum heating temperature of the exterior wall by the opening size reached 282.4°C at 2,000mm, 382.9°C at 1,600mm, and 423.8°C at 1,400mm. This represented that as the opening size gets smaller, the heating temperature of the exterior wall by fire spread becomes higher.
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建筑外墙采暖温度随开口尺寸分布的研究
为了预防每年发生的数以万计的火灾所造成的损失,并采取相应的措施来应对火灾,本研究采用了真实比例的模型实验,对多户住宅等住宅建筑的内部火灾进行了再现。在实验条件下,采用不同的开孔尺寸来测量和分析外墙的加热温度。结果表明:当开孔尺寸(水平长度)分别为2000mm、1600mm、1400mm时,闪络发生时间分别为630秒、505秒、510秒。同时,总加热时间,与此成比例,分别为815秒,713秒和721秒。不同开孔尺寸的外墙最高受热温度分别为:2000mm处282.4℃、1600mm处382.9℃、1400mm处423.8℃。这表明,随着开口尺寸的减小,火灾蔓延对外墙的加热温度也随之升高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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