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Numerical Simulation of a Naturally Aspirated Natural Gas/ Diesel RCCI Engine for Investigating the Effects of Injection Timing on the Combustion and Emissions

机译:用于研究注射时间对燃烧和排放影响的自然吸气天然气/柴油碾压发动机的数值模拟

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The start of injection (SOI) timing has a significant effect on increasing the homogeneity of the air-fuel mixture in an reactivity controlled compression ignition (RCCI) engine. In this paper, the impact of the SOI timing from 14 deg to 74 deg before top dead center (bTDC) and different inlet valve closing (TVC) temperatures on natural gas/diesel RCCI performance and emissions have been studied. Also, the simulations carried out by AVL FIRE which is coupled with chemical kinetics. The results showed that in the SOIs of 14 deg, 24 deg, and 34 deg bTDC, the fuel is sprayed into the piston bowl; however, in the SOI of 44 deg bTDC, the fuel collides the bowl rim edge, because of the downward movement of the piston. With the advancement of diesel SOI timing from 14 deg to 74 deg bTDC, two different combustion trends can be observed. However, this advancement leads to a lower CO emission, but it raises the CO_2 emission level. Although the pressure is a primary parameter for NO_x emission, the difference between the trends of NO_x and pressure plots indicates that different factors affect the NO_x production and also increase the IVC temperature, and raises the in-cylinder pressure, heat release rate, NO_x and CO_2 emissions, while it reduces the CO emission.
机译:注射的开始(SOI)定时对增加反应性控制压缩点火(RCCI)发动机中的空气燃料混合物的均匀性具有显着影响。在本文中,已经研究了SOI时序从14°时间到74°之前的撞击到顶部死亡中心(BTDC)和不同的入口阀关闭(TVC)温度上的天然气/柴油RCCI性能和排放。此外,通过AVL火灾和化学动力学进行的仿真进行。结果表明,在14℃的SOIS,24℃和34℃,将燃料喷涂到活塞碗中;然而,在44°BTDC的SOI中,由于活塞的向下移动,燃料碰撞碗边缘边缘。随着柴油SOI时序的推进从14°至74°BTDC,可以观察到两个不同的燃烧趋势。然而,这种进步导致了较低的共同发射,但它提高了CO_2排放水平。虽然压力是NO_X排放的主要参数,但NO_X和压力图的趋势之间的差异表明不同的因素影响NO_X的产生并增加IVC温度,并提高缸内压力,热释放率,NO_X和CO_2排放量,虽然它降低了CO排放。

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