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Using cone calorimeter data for the prediction of upward flame spread rate

机译:使用锥形量热仪数据预测火焰向上扩散率

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In a cone calorimeter, the specimen receives uniformly distributed irradiance from the cone heater. Producing a heating environment simulating the heating intensity in real fires, this apparatus consequently is capable of providing information of materials relevant to their fire performance. Several previous upward flame spread models utilized the data as input with an assumption of uniformly distributed heat fluxes. Satisfactory flame spread rates were predicted. However, the heat flux in the heating region in upward flame spread is not uniform. This study introduces an alternative protocol of the cone calorimeter and a sample holder by which the following differences were made, including specimen turned 42 before ignition, lower ignition source before ignition, heater removed after ignition, and specimen moved back to vertical orientation after ignition. The heating environment is more consistent to real wall fire conditions. In addition, the prediction of flame spread rate using the alternative test protocol is closer to the measured flame spread rate than standard test methods.
机译:在锥形量热仪中,样品从锥形加热器接收均匀分布的辐照度。因此,该设备能够产生模拟真实火灾中的加热强度的加热环境,因此能够提供与其防火性能相关的材料信息。先前的几个向上的火焰扩散模型都使用数据作为输入,并假设热通量均匀分布。预测了令人满意的火焰蔓延速率。然而,在向上火焰蔓延的加热区域中的热通量不均匀。本研究介绍了锥形量热仪和样品架的替代方案,通过这些方案进行了以下区别,包括在点火前将样品旋转42,在点火前降低点火源,在点火后取下加热器以及在点火后将样品移回到垂直方向。加热环境与实际墙体火灾条件更加一致。此外,使用替代测试方案对火焰蔓延速率的预测比标准测试方法更接近于测得的火焰蔓延速率。

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