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首页> 外文期刊>Fire Safety Journal >Simulations of the coupling between combustion and radiation in a turbulent line fire using an unsteady flamelet model
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Simulations of the coupling between combustion and radiation in a turbulent line fire using an unsteady flamelet model

机译:使用非稳态爆震模型模拟湍流线火灾中燃烧与辐射的耦合

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The general objective of this study is to evaluate the potential of advanced combustion and radiation models for large eddy simulations (LES) of fires. We adopt here an unsteady laminar flamelet model that includes: detailed information on combustion chemistry through a tabulated chemistry approach; a careful description of the combustion-radiation coupling (local radiation phenomena are treated by the flamelet solver while non-local radiation phenomena are treated by the LES solver through the radiative transfer equation); a description of subgrid-scale turbulence-radiation interactions; and a description of non-grey radiation effects (through a Weighted-Sum-of-Grey-Gases ? WSGG model). The new flamelet-based combustion/radiation model is incorporated into the LES solver FireFOAM and is evaluated by comparisons with experimental data obtained in a turbulent line burner experiment previously studied at the University of Maryland. Comparisons between simulated and measured temperatures show relatively good agreement (and significant improvements compared to our previous work). In addition, comparisons between simulated and measured values of the global radiant fraction show that provided that the WSGG option is used, the flamelet model is capable of simulating changes in the flame radiative emissions that result from changes in the oxygen strength of the coflow.
机译:本研究的一般目标是评估大型涡流模拟(LES)的先进燃烧和辐射模型的潜力。我们在这里采用了一个不稳定的层流式模型,包括:通过制表化学方法提供有关燃烧化学的详细信息;仔细描述燃烧 - 辐射耦合(局部辐射现象是由燧发燧石求解器处理的,而LES求解器通过辐射转移方程处理非局部辐射现象);描述亚级湍流 - 辐射相互作用的描述;和非灰色辐射效应的描述(通过加权 - 灰色气体?WSGG模型)。新的燃烧基燃烧/辐射模型被纳入LES求解器FiRefoam,并通过比较在马里兰大学之前研究的湍流线燃烧器实验中获得的实验数据进行评估。模拟和测量温度之间的比较显示了相对较好的一致性(与我们以前的工作相比的显着改进)。另外,全局辐射分数的模拟和测量值之间的比较显示,提供了使用WSGG选项的使用,击败器模型能够模拟火焰辐射排放的变化,该发射由CoFlow的氧气强度的变化产生导致的火焰辐射排放。

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