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Effects of injector spray angle on combustion and emissions characteristics of a natural gas (NG)-diesel dual fuel engine based on CFD coupled with reduced chemical kinetic model

机译:基于CFD和简化化学动力学模型的喷油嘴喷射角对天然气(NG)-柴油双燃料发动机燃烧和排放特性的影响

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In this research, the computational fluid dynamics (CFD) coupled with reduced chemical kinetic model was applied to study the combustion process and emissions characteristics of a NG-diesel dual fuel engine at various injector spray angles. The model was validated by measured data of in-cylinder pressure, heat release rate (HRR) and emissions (nitrogen oxide (NOx), hydrocarbons (HC), carbon monoxide (CO)) in the NG-diesel dual fuel engine. The validated CFD models were used to investigate the immediate process of combustion and emissions of NG-diesel dual fuel engine with the variation of spray angle. The results showed that the peak cylinder pressure increases as the spray angle increases from 60° to 140°, but slightly decreases if the spray angle continues to increase to 160°. Except for the condition of 1000 rpm and 50% load, the start of combustion (SOC), CA50, 10–50% combustion duration, CA90, 50–90% combustion duration and 10–90% combustion duration decrease as the spray angle increases from 60° to 120°, and keep minor fluctuations when the spray angle increases from 120° to 160°. The NOx emissions ascend when the spray angle increases from 60° to 140° and changes little if it continues to increase from 140° to 160°. Nevertheless, the unburned methane is almost unchangeable at 1000 rpm and 100% load. When the spray angle ranges between 120° and 160°, the CO emissions keep at a lower level. All these have provided visual data and theoretical guidance for improving the combustion and emissions performance of NG-diesel dual fuel engine.
机译:在这项研究中,将计算流体动力学(CFD)与简化的化学动力学模型相结合,以研究NG柴油双燃料发动机在不同喷射角下的燃烧过程和排放特性。该模型通过NG柴油双燃料发动机的缸内压力,放热率(HRR)和排放(氮氧化物(NOx),碳氢化合物(HC),一氧化碳(CO))的测量数据进行了验证。经过验证的CFD模型用于研究随喷雾角度变化而变化的NG柴油双燃料发动机的直接燃烧过程和排放。结果表明,当喷雾角度从60°增加到140°时,气缸峰值压力会增加,但是如果喷雾角度继续增加到160°,则峰值压力会略有降低。除了在1000 rpm和50%负载的条件下,燃烧开始(SOC),CA50、10–50%燃烧持续时间,CA90、50–90%燃烧持续时间和10–90%燃烧持续时间随着喷雾角度的增加而降低从60°到120°,并且当喷雾角度从120°增加到160°时保持较小的波动。当喷雾角从60°增加到140°时,NOx排放量增加,而如果继续从140°增加到160°,则NOx排放量变化不大。然而,未燃烧的甲烷在1000 rpm和100%负荷下几乎不变。当喷雾角度在120°至160°之间时,CO排放保持在较低水平。这些都为改善NG柴油双燃料发动机的燃烧和排放性能提供了可视化数据和理论指导。

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