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Influence of convective heat transfer modelling in CFD simulations of upward flame spread

机译:对流传热建模对向上火焰扩散的CFD模拟的影响

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摘要

Focusing on convective heat transfer modelling upward flame spread scenarios, different methods for calculating the convective heat fluxes are explored. These approaches involve: 1) calculating convective heat transfer based on the stagnant film theory; 2) using a simplified approach based on the stagnant film theory; 3) using Nusselt correlations for natural convection; and 4) modelling convection based on the effective (i.e., laminar plus sgs) thermal diffusivity. Large eddy simulations (LES) of a series of Single Burning Item (SBI) experiments with Medium Density Fiberboard (MDF) and plywood walls are performed. Even though discrepancies are observed, the approach which considered the sgs effects performs overall better and is able to predict both the initial flame growth period and the decay phase with reasonable accuracy (i.e., deviations in the peak HRR of approximately 5% and 34% for the MDF and plywood tests cases, respectively). The predicted total heat fluxes are, in most cases, in fairly good agreement with the experiments (i.e., deviations of up to 15% and 20% for the MDF and plywood tests cases, respectively). The predictions with the other methods are far less satisfactory. Overall, it is demonstrated that accurate convective heat transfer modelling can be important in flame spread scenarios.
机译:专注于对流传热建模,探讨了向上火焰传播场景,探索了计算对流热通量的不同方法。这些方法涉及:1)基于停滞薄膜理论计算对流传热; 2)采用基于停滞薄膜理论的简化方法; 3)利用自然对流的良好相关性; 4)基于有效(即层层加上SGS)热扩散率的模型对流。进行了一系列单一燃烧物品(SBI)实验的大型涡流模拟(LES),采用中密度纤维板(MDF)和胶合板墙壁进行实验。即使观察到差异,也认为SGS效应的方法变得更好,并且能够以合理的准确度预测初始火焰生长期和衰减相位(即,峰值HRR的偏差约为5%和34% MDF和胶合板分别检测病例)。在大多数情况下,预测的总热量通量在大多数情况下,与实验(即,MDF和胶合板测试病例的偏差高达15%和20%,分别为高达15%和20%)。与其他方法的预测令人满意的令人满意。总的来说,证明了准确的对流传热建模在火焰传播方案中可能是重要的。

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