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首页> 外文期刊>KSME International Journal >Numerical Calculation of Minimum Ignition Energy for Hydrogen and Methane Fuels
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Numerical Calculation of Minimum Ignition Energy for Hydrogen and Methane Fuels

机译:氢和甲烷燃料最小点火能量的数值计算

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摘要

Minimum ignition energies of hydrogen/air and methane/air mixtures have been investigated numerically by solving unsteady one-dimensional conservation equations with detailed chemical kinetic mechanisms. Initial kernel size needed for numerical calculation is a sensitive function of initial pressure of a mixture and should be estimated properly to obtain quantitative agreement with experimental results. A simple macroscopic model to determine minimum ignition energy has been proposed, where the initial kernel size is correlated with the quenching distance of a mixture and evaluated from the quenching distance determined from experiment, The simulation predicts minimum ignition energies of two sample mixtures successfully which are in a good agreement with the experimental data for the ranges of pressure and equivalence ratio.
机译:通过求解具有详细化学动力学机理的不稳定一维守恒方程,已对氢/空气和甲烷/空气混合物的最小点火能量进行了数值研究。数值计算所需的初始籽粒大小是混合物初始压力的敏感函数,应适当估算以获得与实验结果的定量一致性。提出了一种确定最小点火能量的简单宏观模型,其中初始核尺寸与混合物的淬火距离相关,并根据实验确定的淬火距离进行评估。该模拟成功预测了两种样品混合物的最小点火能量:与压力和当量比范围的实验数据非常吻合。

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