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Limitations of flamelet formulation for modeling turbulent pool fires

机译:爆震池燃烧爆炸式制剂的局限性

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A well-resolved database of a small-scale heptane pool fire is analyzed to assess the assumptions of flamelet models in fire simulations. The pool fire database features well-resolved turbulence fields, finite-rate chemistry for heptane using a 33-species skeletal mechanism, and a coupled Monte Carlo ray-tracing radiation solver with a line-by-line spectral model. A budget analysis of the flamelet equation is performed by transforming temperature and species to the mixture fraction space and extracting instantaneous flamelet solutions along flame-aligned directions. Five flame-aligned budget terms and one unsteady term are identified through transformation of the temperature equation. Three conditions are examined, including an adiabatic case, a case involving only gas radiation, and a case involving both gas and soot radiation. The budget analysis shows that preferential diffusion is non-negligible near the base of the pool. Radiation is found to be appreciable in the transition region of the fire, resulting in a reduction of flame temperature by as much as 270 K due to radiative heat losses. The curvature of the flame surface is found to have a minor impact on the temperature dynamics near the flame front. The extracted flame structures deviate from those predicted from a steady-state adiabatic laminar flamelet model, particularly in the profiles of CO, CO2, and OH. A time scale analysis is performed, indicating that steady state assumptions for chemical species are reasonable for this flame, although radiation is much slower compared to chemistry and requires consideration to correctly capture the temperature evolution. The source terms from radiative absorption and emission show pronounced non-proportionality between the two, where absorption can exceed emission, thereby serving as a heating source for the fuel and oxidizer streams. The controlling factors for radiative absorption are analyzed, based on which a non-local model is proposed to approximate absorption in pool fires. A priori assessment of this model shows good agreement with the pool fire database, demonstrating the feasibility of enhancing the flamelet formulation to account for radiative emission and absorption effects. (C) 2021 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:分析了小型庚烷池火灾良好的数据库,以评估火焰状模型在火灾模拟中的假设。池火库数据库具有良好分辨的湍流场,使用33物种骨架机构的庚烷有限速率化学,以及具有线型光谱模型的耦合蒙特卡罗射线跟踪辐射求解器。通过将温度和物质转化为混合级分空间并沿着火焰排列方向提取瞬时燧发燧石溶液来执行爆发式方程的预算分析。通过温度方程的转换来识别五个火焰对齐的预算术语和一个不稳定的术语。检查了三种条件,包括绝热案例,涉及天然气辐射的案例,以及涉及气体和烟灰辐射的情况。预算分析表明,在池的基础附近,优先扩散是不可忽略的。发现辐射在火的过渡区域中可在火的过渡区域中可观,导致由于辐射热损失,通过尽可能多达270k的火焰温度降低。发现火焰表面的曲率对火焰前部附近的温度动力学产生微小的影响。提取的火焰结构偏离从稳态绝热层燧发物模型预测的那些,特别是在CO,CO2和OH的型材中。执行时间尺度分析,表明该火焰的化学物质的稳态假设是合理的,尽管与化学相比,辐射速度得多,但需要考虑正确捕获温度演化。来自辐射吸收和发射的源术语在两者之间发出明显的非比例,其中吸收可以超过排放,从而用作燃料和氧化剂流的加热源。分析了用于辐射吸收的控制因子,基于该辐射吸收的控制因子,提出了非局部模型在池火中的吸收。对该模型的先验评估显示了与池火灾数据库的良好协议,展示了增强爆炸式制剂的可行性,以考虑辐射发射和吸收效应。 (c)2021燃烧研究所。由elsevier Inc.保留所有权利发布。

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