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Analysis of Key Equations in a Two-layer Zone Model and Application with Symbolic Mathematics in Fire Safety Engineering

机译:两层区域模型中的关键方程分析及符号数学在消防安全工程中的应用

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摘要

There are two objectives in this paper on applying fire modelling techniques for designing fire safety provisions with symbolic mathematics. The first is to review key equations for a two-layer zone model and simplification to a simpler model. There are eleven equations on the mass, volume, temperature, density and internal energy for the upper hot layer and lower cool layer; and the pressure of the compartment. In addition, there are seven constraints and so only four equations are required to be solved. By following the assumptions made in the ASET type of two-layer zone model, these four equations can be further reduced to only two ordinary differential equations. Both the ASET model itself and its modification to FIRM in a compartment with a vertical vent were considered. The second objective is to solve the two ordinary differential equations in the simplified model by symbolic mathematics. The advantages of using symbolic mathematics are discussed. It is proposed that symbolic mathematics is suitable for use by the Authority on assessing fire safety design based on performance-based fire codes where fire modelling technique has to be used.
机译:本文有两个目标,涉及将火灾建模技术用于通过符号数学设计消防安全设施。首先是审查两层区域模型的关键方程式,并将其简化为更简单的模型。上部热层和下部冷层的质量,体积,温度,密度和内部能量有11个方程;和隔间的压力另外,有七个约束,因此只需要求解四个方程。通过遵循在ASET类型的两层区域模型中所做的假设,可以将这四个方程进一步简化为仅两个常微分方程。同时考虑了ASET模型本身及其对带有垂直通风口的隔室中FIRM的修改。第二个目的是通过符号数学来解决简化模型中的两个常微分方程。讨论了使用符号数学的优点。建议符号数学适合管理局在基于性能的防火规范(必须使用火灾建模技术)的基础上评估消防安全设计时使用的数学方法。

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