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Experimental Study on the Temperature Distribution in an Emergency Staircase of High-rise Building

机译:高层建筑紧急楼梯温度分布的实验研究

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High-rise building safety has drawn public attention due to the occurrence of many catastrophic fires, to study the temperature distribution in the emergency staircase of a high-rise building in an accident, a set of experiments were conducted in a scaled building model. The window state in the staircase has a significant effect on the temperature distribution. When the window in the staircase is opened, the temperatures below the fire source floor almost maintain the ambient temperature during the whole period, but the temperatures above the fire source increase quickly and finally reach a quasi steady stage due to the stack effect. Moreover, if the doors below the fire source are opened, the fresh air flow into the staircase and decrease the temperature. On the contrary, when all windows in the staircase are closed, the doors state has a slight effect on the temperature distribution in the staircase. Because of the absence of the stack effect, the temperatures are low and the temperature attenuation coefficient β is larger.
机译:由于许多灾难性火灾的发生,高层建筑安全引起了公众的注意力,研究了在一次缩放建筑模型中进行了一套实验的高层建筑物的急救楼梯。楼梯中的窗口状态对温度分布有显着影响。当窗口中的窗口打开时,消防源地板以下的温度几乎保持了整个时期的环境温度,但由于堆叠效应,火源高于的温度迅速增加,最后达到了准稳定阶段。此外,如果在消防源下方打开,则新鲜空气流入楼梯并降低温度。相反,当楼梯中的所有窗户都关闭时,门状态对楼梯中的温度分布有轻微影响。由于没有堆叠效果,温度低,温度衰减系数β更大。

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