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Two typical phenomena from the numerical simulation of fire and smoke transport in a gymnasium fire

机译:体育馆火灾中烟气和烟气传播数值模拟的两个典型现象

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Navier-Stokes equations are solved to simulate a gymnasium fire. The equations are simplified by weakly compressible low Mach number assumption. Turbulence effect is simulated using Smagorinsky large eddy simulation (LES) model. The mixture fraction combustion model is adopted to simulate the burning process. With the analysis of computed velocity and temperature field, two important phenomena, named door effect and smoke plug-holing, are found to be responsible for the deterioration of smoke exhaust efficiency when natural ventilation or forced ventilation is present. Some explanations are made to elucidate these effects' mechanism. An improved design of smoke ventilation system is suggested.
机译:求解Navier-Stokes方程以模拟体育馆的火灾。通过弱可压缩的低马赫数假设简化了方程。使用Smagorinsky大涡模拟(LES)模型来模拟湍流效应。采用混合分数燃烧模型模拟燃烧过程。通过对计算出的速度场和温度场进行分析,发现存在两种自然现象,即门效应和烟孔堵塞,这是存在自然通风或强制通风时排烟效率下降的原因。进行了一些解释,以阐明这些影响的机制。提出了烟雾通风系统的改进设计。

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