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Enthalpy based approach to capture heat transfer effects in premixed combustion

机译:基于焓的方法来捕获预混燃烧中的传热效果

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Mitigating the risk of explosion by hot-surface ignition of a flammable mixture has motivated experimental and numerical studies to characterize this phenomenon. The current numerical approach involves the solution of the low Mach-number Navier-Stokes equations coupled with detailed chemistry of n-heptane using a flamelet approach. Previous work with flamelets characterized by total enthalpy has allowed the inclusion of heat transfer effects (conduction and radiation) on ignition, flame propagation, and flame extinction. Unfortunately, total enthalpy and the progress variable (extent of reaction), typically used for the chemistry tabulation, are not independent. The current work details the development of a novel technique based on modeling enthalpy variations through the use of unburned gas temperature. A transport equation for the unburned gas temperature which forms a key component of this technique is derived from an energy balance for a reacting flow problem. After verifying the technique for 1-D freely propagating adiabatic flames, the improved model is used to study 2-D flame propagation in the presence of a thermal plume initiated by a hot-surface. A comparison of the simulation results with experimental data shows that the enthalpy based approach successfully captures finite-rate chemical kinetics in a thermally stratified mixture.
机译:通过降低易燃混合物的热表面着火引起的爆炸危险,已促使进行实验和数值研究来表征这种现象。当前的数值方法涉及使用小火焰方法求解低马赫数的Navier-Stokes方程以及正庚烷的详细化学反应。以前以总焓为特征的小火焰的研究已经包括了对着火,火焰传播和火焰熄灭的传热作用(传导和辐射)。不幸的是,通常用于化学制表的总焓和进程变量(反应程度)不是独立的。当前的工作详细介绍了一种新技术的开发,该技术基于通过使用未燃烧气体温度对焓变进行建模。从反应流问题的能量平衡中得出了构成该技术关键组成部分的未燃烧气体温度的输运方程。在验证了用于一维自由传播绝热火焰的技术之后,使用改进的模型研究存在于由热表面引发的热羽流的情况下二维火焰的传播。仿真结果与实验数据的比较表明,基于焓的方法成功地捕获了热分层混合物中的有限速率化学动力学。

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