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Experimental study of time-averaged upward fire propagation speed of expanded polystyrene external thermal insulation composite systems masonery facade

机译:膨胀聚苯乙烯外部隔热复合系统砌体立面的时间平均向上火力传播速度的实验研究

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Thermoplastic expanded polystyrene (EPS) external thermal insulation composite systems (ETICS) have caused serious results due to the ravages of frequent fire disasters in the world. Fire propagation of EPS ETICS was observed to be fast over exterior building wall, however, very few reports of time-averaged fire propagation speed (FPS) is available currently. To have a quantitative understanding of FPS, a series of EPS ETICS facades were tested according to the intermediate-scale Japanese JISA 1310 standard method. EPS thickness of ETICS varies from 100 mm to 300 mm and heat release rate (HRR) of window spilled flame differs from 600 kW to 1100 kW. It indicates that the time-averaged FPS vs vertical distance is observed to be positive linear. The acceleration of FPS is found to be linear with a dimensionless item, which involves fire propagation index (FPI), HRR of window spilled flame and thickness of EPS. Finally, a calculation method for an upward fire spreading profile is proposed, which initially provides a theoretical basis for evaluation of the reaction-to-fire performance of EPS ETICS facade.
机译:热塑性膨胀的聚苯乙烯(EPS)外部隔热复合系统(ETICS)由于世界频繁的火灾灾害灾害而导致了严重的结果。 EPS Etics的火灾传播被观察到在外部建筑墙上快速,但是,目前可以获得几次时间平均火灾传播速度(FPS)的报告。为了对FPS进行定量了解,根据日本JISA 1310标准方法进行了一系列EPS ETICS立面。 EPS厚度的ETIC厚度从100mm到300 mm之间变化,并且窗口的热释放速率(HRR)溢出的火焰从600kW到1100 kW的不同。它表示时间平均的FPS与垂直距离被观察到正线性。发现FPS的加速度是线性的,其无量纲物品涉及火力传播指数(FPI),窗口的HRR溢出的火焰和EPS的厚度。最后,提出了一种向上灭火型材的计算方法,最初为评估EPS Etics门面的反应性能提供了理论依据。

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