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Assessment of an insulating air layer model of fa?ade external system: contribution to fire simulation of facade performance fire test

机译:评估外墙外部系统的隔热空气层模型:对立面性能耐火试验的火灾模拟的贡献

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Ventilated fa?ades as a part of external thermal insulation are useful systems when applied to building design, especially in bioclimatic construction. In the context of the fire safety engineering, well taking into account the air layer arranged in such systems is of importance to assess the fire behavior of a building. In fire engineering studies, CFD codes as FDS (Fire Dynamics Simulator) are widely used. However, mesh sizes used in simulation are generally greater than 100 mm. Thus, the air layer cannot be modeled accurately because of typical thickness lower than mesh size. In the present study, a method based on an analytical formulation of the thermal resistance for building components is evaluated to approach the local air layer behavior. Radiative, convective and conductive mechanisms in the layer are then accounted. The proposed method could be implemented in a numerical model when a ventilated layer must be considered through an equivalent thermal conductivity for the air layer. CFD simulations are performed with FDS for fire exposed fa?ade during LEPIR II performance tests where the ventilated fa?ades with the larger air layer thicknesses are modeled. Ambient conditions in terms of flow temperature and velocity inside the air layer are evaluated in several locations of the fa?ade. These fa?ade models are then modified to replace the air layer by an equivalent thermal conductivity analytically assessed. Its local internal temperature is then compared with the one predicted with CFD, using 2D thermal calculations with the FEM code SAFIR. Extrapolations for smaller thicknesses of air layers that cannot be model with FDS can then be assessed numerically. This preliminary work shows encouraging application for air layer reserved in fa?ades during a fire. Further development and validation are in progress to apply this method to other configurations of air layering.
机译:当应用于建筑设计时,尤其是在生物气候建筑中,通风幕墙是外部隔热的一部分,是有用的系统。在消防安全工程的背景下,充分考虑布置在此类系统中的空气层对于评估建筑物的火灾行为非常重要。在消防工程研究中,作为FDS(消防动力学模拟器)的CFD代码得到了广泛使用。但是,模拟中使用的网格大小通常大于100毫米。因此,由于典型的厚度小于网格尺寸,因此无法准确地对空气层进行建模。在本研究中,评估了一种基于建筑构件热阻分析公式的方法,以接近局部空气层的行为。然后说明该层中的辐射,对流和导电机理。当必须通过等效的空气层导热系数来考虑通风层时,可以在数值模型中实施所提出的方法。在LEPIR II性能测试期间,使用FDS对暴露在外的立面进行了CFD模拟,在该试验中对空气层厚度较大的通风立面进行了建模。在立面的几个位置评估了空气层内部流动温度和速度的环境条件。然后修改这些外观模型,以通过分析评估的等效导热系数替换空气层。然后,使用FEM代码SAFIR进行二维热计算,将其局部内部温度与CFD预测的内部温度进行比较。然后可以用数字评估无法用FDS建模的较小空气层厚度的外推法。这项初步工作表明,在火灾时,应积极应用到幕墙中保留的空气层。正在进行进一步的开发和验证,以将该方法应用于空气分层的其他配置。

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