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首页> 外文期刊>SAE International Journal of Engines >Large Eddy Simulation of an n-Heptane Spray Flame with Dynamic Adaptive Chemistry under Different Oxygen Concentrations
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Large Eddy Simulation of an n-Heptane Spray Flame with Dynamic Adaptive Chemistry under Different Oxygen Concentrations

机译:不同氧浓度下动态适应化学法对正庚烷喷雾火焰的大涡模拟

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摘要

Detailed chemical kinetics is essential for accurate prediction of combustion performance as well as emissions in practical combustion engines. However, implementation of that is challenging. In this work, dynamic adaptive chemistry (DAC) is integrated into large eddy simulations (LES) of an n-heptane spray flame in a constant volume chamber (CVC) with realistic application conditions. DAC accelerates the time integration of the governing ordinary differential equations (ODEs) for chemical kinetics through the use of locally (spatially and temporally) valid skeletal mechanisms. Instantaneous flame structures and global combustion characteristics such as ignition delay time, flame lift-off length (LOL) and emissions are investigated to assess the effect of DAC on LES-DAC results. The study reveals that in LES-DAC simulations, the auto-ignition time and LOL obtain a well agreement with experiment data under different oxygen concentrations. The produced time of NOx induced by the high temperature and a certain equivalent ratio is close to the inflection point (increasing timing) of CO2 variation.
机译:详细的化学动力学对于准确预测燃烧性能以及实际内燃机的排放至关重要。但是,实现这一目标具有挑战性。在这项工作中,将动态自适应化学(DAC)集成到具有实际应用条件的恒定体积腔(CVC)中的正庚烷喷雾火焰的大涡流模拟(LES)中。 DAC通过使用局部(空间和时间)有效的骨骼机制,加快了用于化学动力学的主导常微分方程(ODE)的时间积分。研究了瞬时火焰结构和整体燃烧特性,例如点火延迟时间,火焰剥离长度(LOL)和排放,以评估DAC对LES-DAC结果的影响。研究表明,在LES-DAC模拟中,在不同氧气浓度下,自动点火时间和LOL与实验数据完全吻合。高温和一定当量比引起的NOx产生时间接近CO2变化的拐点(增加时间)。

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