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Large eddy simulation of compartment fire with solid combustibles

机译:带有固体可燃物的舱室火灾的大涡模拟

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摘要

For properly describing practical building fire processes with solid combustibles, the pyrolysis kinetics model of solid combustibles and the large eddy simulation (LES) approach are applied to the simulation of the thermal decomposition of the polyurethane foam (PUF) slab and the space fire spread in a compartment. The instantaneous variations of the heat release rate of the PUF slab, the smoke temperature, and the smoke interface height with time are obtained under different ventilation conditions. They are in agreement with the measured data. The ventilation conditions have distinct effects on the interactions between the pyrolysis of the PUF slab and the space fire spread. Influenced by the space fire spread, the heat flux on the top plane of the PUF slab exhibits a non-uniform distribution. The PUF slab is consumed in an asymmetric manner.
机译:为了正确描述建筑物中使用固体可燃物的实际火灾过程,将固体可燃物的热解动力学模型和大涡模拟(LES)方法应用于聚氨酯泡沫(PUF)板的热分解和空间火势蔓延的模拟。一个隔间在不同的通风条件下,可以获得PUF板的放热速率,烟气温度和烟气界面高度随时间的瞬时变化。它们与测得的数据一致。通风条件对PUF板的热解与空间火势蔓延之间的相互作用有明显的影响。受空间火势蔓延的影响,PUF平板顶面上的热通量显示出不均匀的分布。 PUF板坯以非对称方式消耗。

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