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首页> 外文期刊>Journal of thermal analysis and calorimetry >Assessing the influence of the input variables employed by fire dynamics simulator (FDS) software to model numerically solid-phase pyrolysis of cardboard
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Assessing the influence of the input variables employed by fire dynamics simulator (FDS) software to model numerically solid-phase pyrolysis of cardboard

机译:评估消防动力学模拟器(FDS)软件采用的输入变量对纸板数值固相热解的影响

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摘要

Understanding a material's fire behaviour implies to know the thermal decomposition processes. Thermal analysis techniques are widely employed to study thermal decomposition processes, especially to calculate the kinetic and thermal properties. Cardboard boxes are widely employed as rack-storage commodities in industrial buildings. Hence, the characterization of the cardboard is considered a key factor for fire safety engineering, because it enables the determination of its thermal behaviour at high temperatures. The employment of mathematical or computational models for modelling the thermal decomposition processes is commonly used in fire safety engineering (FSE). The fire dynamics simulator (FDS) software is one of the most commonly used computational fluid dynamics softwares in FSE to address thermal analysis. To properly set up FDS and obtain accurate results, the numerical values of the thermal and kinetic properties are needed as input data. Owing to the large number of variables to be determined, a preliminary study is bound to be helpful, which can well assess the influence of each variable over the pyrolysis model, discarding or restricting their influence. This study, based on the Monte Carlo method, presents a sensitivity analysis for the variables utilized as input data by the FDS software. The results show the conversion factor alpha, i.e. the mass involved in each reaction, and the triplet kinetics have a major impact on the reproduction of the thermal decomposition process in fire computer modelling.
机译:了解材料的火行为意味着知道热分解过程。广泛用于研究热分解过程的热分析技术,尤其是计算动力学和热性能。纸板箱被广泛雇用作为工业建筑的架子储存商品。因此,纸板的表征被认为是消防安全工程的关键因素,因为它能够在高温下确定其热行为。用于建模热分解过程的数学或计算模型的就业通常用于消防安全工程(FSE)。 Fire Dynamics Simulator(FDS)软件是FSE中最常用的计算流体动力学软件,以解决热分析。要正确设置FD并获得准确的结果,因此需要将热和动力学性能的数值作为输入数据。由于要确定的大量变量,初步研究必然会有所帮助,这可以很好地评估每个变量对热解模型的影响,丢弃或限制它们的影响。本研究基于蒙特卡罗方法,对FDS软件用作输入数据的变量呈现了灵敏度分析。结果显示转化因子α,即涉及每种反应的质量,并且三重态动力学对消防计算机建模中的热分解过程的再现产生重大影响。

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