An augmented reduced mechanism for methane oxidation with comprehensive global parametric validation

C.J. Sung , C.K. Law , J.-Y. Chen
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引用次数: 176

Abstract

Using a computer algorithm for automatic generation of reduced chemistry, an augmented reduced mechanism, consisting of 16 species and 12 lumped reaction steps, has been developed for methane oxidation from GRI-Mech 1.2. Because the present mechanism consists of a larger number of non-steady-state intermediates than the conventional four- or five-step reduced mechanisms, it exhibits good to excellent performance in predicting a wide range of combustion phenomena under extensive thermodynamical parametric variations. Specifically, the phenomena tested include perfectly stirred reactor responses, autoignition and shock-tube ignition delay times, laminar flame propagation speeds, and ignition-extinction limits of counterflowing systems, whereas the thermodynamical parametric variations include those of temperature, pressure, and composition. It is recognized that, with the anticipated increase in computing capability in the foreseeable future, use of the present four- to five-step mechanisms will be unnecessarily limiting. Consequently, it is suggested that efforts should be expended toward development of augmented reduced mechanisms for more comprehensive description of combustion phenomena and for their potential implementation in the computational simulation of complex flows and systems.

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具有全面全局参数验证的甲烷氧化增强还原机制
利用计算机自动生成还原化学反应的算法,建立了由16个组分和12个集中反应步骤组成的GRI-Mech 1.2甲烷氧化扩增还原机制。由于该机制比传统的四步或五步还原机制包含更多的非稳态中间体,因此它在预测广泛的热力学参数变化下的大范围燃烧现象方面表现出良好到优异的性能。具体来说,测试的现象包括完全搅拌反应器响应、自燃和激波管点火延迟时间、层流火焰传播速度和逆流系统的点灭极限,而热力学参数变化包括温度、压力和成分。大家认识到,在可预见的将来,随着计算能力的预期增加,使用目前的四到五步机制将不必要地受到限制。因此,建议应努力发展增强的简化机制,以便更全面地描述燃烧现象,并在复杂流动和系统的计算模拟中实现它们的潜力。
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