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首页> 外文期刊>Arabian Journal for Science and Engineering >Simulation of Pool and Compartment Fire Using Flamelet Generated Manifold With/Without Radiation Coupling
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Simulation of Pool and Compartment Fire Using Flamelet Generated Manifold With/Without Radiation Coupling

机译:使用/无辐射耦合使用挥动型歧管的池和隔室火灾模拟

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摘要

One of the critical issues in fire dynamic simulation is the selection of suitable combustion model. Typically, combustionmodels based on infinite fast chemistry are used in fires. In this paper, the flamelet generated manifold (FGM) has beenused as a combustion model and the fireFoam solver of OpenFOAM has been used. Two distinct FGMs, with and withoutradiation coupling, have been investigated to illustrate the role of radiation in simulations. The energy equation with discreteordinates radiation model is used for coupling of FGM with radiation. These models will be examined in two scenarios ofthe pool and compartment fire. The FGM with the heat equation is in a good agreement with the experiments. In addition,the basic FGM has a deviation from the experimental results, in a pool fire scenario. The mean of vertical velocity of basicFGM and FGM with energy equation has 40 and 15 percent relative error, respectively, in the pool fire scenario. In the compartmentfire, FGM model, with and without radiation coupling shows the same behavior and the velocity results have 9%relative error in the doorway. In general, the radiation coupling in pool fire is more important than compartment scenario.
机译:火灾动态模拟中的一个关键问题是选择合适的燃烧模型。通常,燃烧基于无限快速化学的模型用于火灾。在本文中,燧发炸弹生成的歧管(FGM)已经存在用作燃烧模型和OpenFoam的Firefoam求解器。两个不同的FGM,有和没有已经研究了辐射耦合以说明辐射在模拟中的作用。具有离散的能量方程坐标辐射模型用于耦合FGM与辐射。这些模型将在两种情况下检查游泳池和隔间火灾。具有热方程的FGM与实验一致。此外,基本FGM在池火情况下偏离实验结果。基本垂直速度的平均值FGM和FGM具有能量方程具有40%至15%的相对误差,在池中的火灾场景中分别在池中相对误差。在舱室里火,FGM模型,带有和无辐射耦合显示相同的行为,速度结果有9%门口的相对误差。通常,池火中的辐射耦合比隔间场景更重要。

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