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Investigation on effect of equivalence ratio and engine speed on homogeneous charge compression ignition combustion using chemistry based CFD code

机译:基于化学的CFD代码研究当量比和发动机转速对均质充量压缩点火燃烧的影响

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摘要

\u3cp\u3eCombustion in a large-bore natural gas fuelled diesel engine operating under homogeneous charge compression ignition mode at various operating conditions is investigated in the present paper. Computational fluid dynamics model with integrated chemistry solver is utilized and methane is used as surrogate of natural gas fuel. Detailed chemical kinetics mechanism is used for simulation of methane combustion. The model results are validated using experimental data by Aceves, et al., conducted on the single cylinder Volvo TD100 engine operating at homogeneous charge compression ignition conditions. After verification of model predictions using in-cylinder pressure histories, the effect of varying equivalence ratio and engine speed on combustion parameters of the engine is studied. Results indicate that increasing engine speed provides shorter time for combustion at the same equivalence ratio such that at higher engine speeds, with constant equivalence ratio, combustion misfires. At lower engine speed, ignition delay is shortened and combustion advances. It was observed that increasing the equivalence ratio retards the combustion due to compressive heating effect in one of the test cases at lower initial pressure. Peak pressure magnitude is increased at higher equivalence ratios due to higher energy input.\u3c/p\u3e
机译:本文研究了在不同工况下均质充量压缩点火模式下运行的大口径天然气燃料柴油发动机中的燃烧。利用具有集成化学求解器的计算流体动力学模型,并使用甲烷作为天然气燃料的替代物。详细的化学动力学机制用于模拟甲烷燃烧。使用Aceves等人的实验数据验证了模型结果,该实验数据是在均质充气压缩点火条件下运行的单缸Volvo TD100发动机上进行的。在使用缸内压力历史记录验证了模型预测之后,研究了当量比和发动机转速变化对发动机燃烧参数的影响。结果表明,提高发动机转速可在相同当量比的情况下为燃烧提供更短的时间,从而在较高发动机速度下(具有恒定当量比的情况下)会导致燃烧失火。在较低的发动机转速下,点火延迟缩短,燃烧提前。观察到,在较低的初始压力下,在其中一种测试案例中,由于压缩热效应的增加,增加当量比会延迟燃烧。由于较高的能量输入,在较高的当量比下,峰值压力幅度会增加。\ u3c / p \ u3e

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