首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Laminar flamelet model prediction of NO^sub x^ formation in a turbulent bluff-body combustor
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Laminar flamelet model prediction of NO^sub x^ formation in a turbulent bluff-body combustor

机译:湍流钝体燃烧室中NO ^ sub x ^形成的层流小火焰模型预测

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摘要

A bluff-body combustor, with recirculation zone and simple boundary conditions, is ideal as a compromise for an industrial combustor for validating combustion models. This combustor, however, has proved to be very challenging to the combustion modellers in a number of previous studies. In the present study, an improved prediction has been reported through better representation of turbulence effect by Reynolds stress transport model and extended upstream computational domain. Thermo-chemical properties of the flame have been represented by a laminar flamelet model. A comparison among reduced chemical kinetic mechanism of Peters and detailed mechanisms of GRI 2.11, GRI 3.0, and San Diego has been studied under the laminar flamelet modelling framework. Computed results have been compared against the well-known experimental data of Sydney University bluff-body CH^sub 4^/H^sub 2^ flame. Results show that the laminar flamelet model yields very good agreement with measurements for temperature and major species with all the reaction mechanisms. The GRI 2.11 performs better than the other reaction mechanisms in predicting encouraging considering the simplified modelling formulation utilized for the kinetically controlled NO formation. [PUBLICATION ABSTRACT]
机译:具有回流区和简单边界条件的钝体燃烧室非常适合作为工业燃烧室验证燃烧模型的折衷方案。然而,在许多先前的研究中,已经证明该燃烧器对燃烧建模者是非常具有挑战性的。在本研究中,通过雷诺应力传递模型和扩展的上游计算域更好地表示湍流效应,已报告了改进的预测。火焰的热化学性质已经由层状小火焰模型表示。在层流小火焰建模框架下,研究了彼得斯还原化学动力学机理与GRI 2.11,GRI 3.0和圣地亚哥的详细机理之间的比较。将计算结果与悉尼大学钝体CH ^ sub 4 ^ / H ^ sub 2 ^火焰的著名实验数据进行了比较。结果表明,层流小火焰模型与所有反应机理的温度和主要物质的测量结果非常吻合。考虑到用于动力学控制NO形成的简化建模公式,GRI 2.11在预测鼓励性方面表现优于其他反应机制。 [出版物摘要]

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