Exergy Analysis of a Compartment Fire

V. Bertola, E. Cafaro
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Abstract

A thermodynamic model of a compartment fire with one state variable (corresponding to the dimensionless temperature of the smoke layer) based on energy conservation is studied from the point of view of the Second Law (ex- ergy analysis). To define the exergy rate of the process, a novel concept of mean thermodynamic temperature is intro- duced for the smoke layer. This parameter is the equivalent of the Carnot factor in the energy transfer process for an open system under steady-state conditions. The exergy analysis shows that in order to satisfy the Second Law, not all the solu- tions of the thermodynamic model are physically accessible in the phase space. The physically accessible part of the phase space is delimited by a boundary representing the non-negative entropy generation condition.
舱室火灾的火用分析
从热力学第二定律(能量分析)的观点出发,研究了基于能量守恒的单状态变量(对应于烟层的无因次温度)的隔间火灾热力学模型。为了确定过程的火用率,引入了烟气层平均热力学温度的新概念。这个参数相当于一个开放系统在稳态条件下的能量传递过程中的卡诺因子。用能分析表明,为了满足热力学第二定律,并非所有热力学模型的解都能在相空间中得到。相空间的物理可访问部分由表示非负熵产生条件的边界划分。
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