论文标题
甲烷燃烧的骨骼反应模型
Skeletal Reaction Models for Methane Combustion
论文作者
论文摘要
采用局部敏感性分析技术来生成基础燃料化学模型(FFCM-1)的甲烷燃烧的新骨骼反应模型。热化学变量相对于反应速率的敏感性是通过强制性时间依赖(F-OTD)方法计算的。在这种方法中,包含所有局部灵敏度的大灵敏度矩阵被建模为两个低级时依赖性矩阵的产物。这些矩阵的演化方程是从系统的管理方程得出的。计算建模的灵敏度,以在大气和高压下具有不同初始温度和等效比的高压自动命中。然后分析这些敏感性以对最重要(敏感)物种进行排名。提出了一系列具有不同物种数量和准确性水平的骨骼模型,以重现FFCM-1结果。在预测点火延迟,层状火焰速度和火焰灭绝时,将生成模型的性能与FFCM-1进行比较。这种比较评估的结果表明,具有24种和更多物种的骨骼模型以极好的精度产生FFCM-1结果。
A local-sensitivity-analysis technique is employed to generate new skeletal reaction models for methane combustion from the foundational fuel chemistry model (FFCM-1). The sensitivities of the thermo-chemical variables with respect to the reaction rates are computed via the forced-optimally time dependent (f-OTD) methodology. In this methodology, the large sensitivity matrix containing all local sensitivities is modeled as a product of two low-rank time-dependent matrices. The evolution equations of these matrices are derived from the governing equations of the system. The modeled sensitivities are computed for the auto-ignition of methane at atmospheric and high pressures with different sets of initial temperatures, and equivalence ratios. These sensitivities are then analyzed to rank the most important (sensitive) species. A series of skeletal models with different number of species and levels of accuracy in reproducing the FFCM-1 results are suggested. The performances of the generated models are compared against FFCM-1 in predicting the ignition delay, the laminar flame speed, and the flame extinction. The results of this comparative assessment suggest the skeletal models with 24 and more species generate the FFCM-1 results with an excellent accuracy.