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Thermodynamic and Kinetic Characteristics of Combustion of Discrete Polymethyl Methacrylate Plates with Different Spacings in Concave Building Facades

机译:不同间距的离散聚甲酯甲基丙烯酸酯板燃烧热力学和动力学特性

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摘要

Polymethyl methacrylate plates are widely applied to buildings, producing significant fire hazards. It lacks a theoretical basis for the fire risk assessment of polymethyl methacrylate in concave building facades. Therefore, experimental methods are used to investigate combustion characteristics of discrete polymethyl methacrylate plates in a concave building facade. Influences of fuel coverage and structure factor are investigated, which is scant in previous works. When structure factor is invariable, average flame height increases first and then decreases as fuel coverage increases, and the turning point is between 0.64 and 0.76. In total, three different patterns of pyrolysis front propagation are first observed for different fuel coverages. Flame spread rate first increases and then decreases as fuel coverage rises, and the turning point is also between 0.64 and 0.76. When fuel coverage is invariable, the flame spread rate first increases and then decreases with increasing structure factor, and the turning point is 1.2. A model for predicting the flame spread rate of discrete polymethyl methacrylate is also developed. The predicted values are consistent with experimental results. Fuel spread rate of discrete polymethyl methacrylate rises as the fuel coverage increases. The above results are beneficial for thermal hazard evaluation and fire safety design of polymethyl methacrylate used in buildings.
机译:聚甲基丙烯酸甲酯板广泛应用于建筑物,产生显着的火灾危险。它缺乏在凹形建筑物外观中聚甲基丙烯酸甲酯的火灾风险评估的理论依据。因此,使用实验方法来研究凹面建筑立面中的离散聚甲基甲基丙烯酸甲酯板的燃烧特性。研究了燃料覆盖和结构因素的影响,以前的作品是狭窄的。当结构因子不变时,平均火焰高度首先增加,然后随着燃料覆盖率的增加而减小,转弯点在0.64和0.76之间。对于不同的燃料覆盖,首先观察到总共三种不同的热解繁殖模式。火焰扩散速率首先增加,然后随着燃料覆盖率而降低,转折点也在0.64和0.76之间。当燃料覆盖物不变时,火焰扩散速率首先增加,然后随着结构因子的增加而降低,转折点为1.2。还开发了一种预测离散聚甲基丙烯酸甲酯的火焰扩散率的模型。预测值与实验结果一致。随着燃料覆盖率的增加,甲基丙烯酸甲酯的燃料扩散率上升。上述结果是有利于在建筑物中使用的聚甲基丙烯酸甲酯的热危害评估和防火安全设计。

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