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首页> 外文期刊>Energy >Investigation of the effects of the steam injection method (SIM) on the performance and emission formation of a turbocharged and Miller cycle diesel engine (MCDE)
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Investigation of the effects of the steam injection method (SIM) on the performance and emission formation of a turbocharged and Miller cycle diesel engine (MCDE)

机译:研究蒸汽喷射方法(SIM)对涡轮增压和米勒循环柴油机(MCDE)的性能和排放形成的影响

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摘要

The steam injection method (SIM) has been widespread to abate NOx of internal combustion engines (ICEs). Another NOx reduction method known in the literature is the Miller cycle (MC) application. However, this method causes a reduction in the power output. The most known technique which improves the engine power and decreases emissions is the turbo charging (TC). Hence, these three methods can be combined to make up for the power loss and to decrease pollutant emissions at higher rates. In this study, the combination of the SIM, TC and MC methods (SIM-TC-MC) has been carried out for a direct injection (DI), naturally aspirated diesel engine. The results have been compared with standard condition (STD) in terms of the engine performance and CO, CO2, NO, HC. Optimal condition has been determined as 10 CA retardation, 20% steam ratio of the fuel mass and 1.1 TC pressure (C62-520-T1.1) in terms of the minimum NO formation. At this condition, NO, HC, CO and CO2 reduced by 48%, 35%, 64% and 8%; the increase rates in the brake power and brake thermal efficiency are 17% and 11, respectively. The results indicated that SIM-TC-MC may be implemented into a diesel engine to control NO and to obtain higher engine performance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:蒸汽喷射方法(SIM)已经广泛用于减少内燃机(ICE)的NOx。文献中已知的另一种NOx还原方法是Miller循环(MC)应用。但是,这种方法导致功率输出的降低。提高发动机功率并减少排放的最著名技术是涡轮增压(TC)。因此,可以将这三种方法结合起来以弥补功率损耗并以更高的速率减少污染物排放。在这项研究中,SIM,TC和MC方法(SIM-TC-MC)的组合已用于直接喷射(DI)自然吸气柴油发动机。在发动机性能和CO,CO2,NO,HC方面,将结果与标准条件(STD)进行了比较。最佳条件已确定为10 CA延迟,燃料质量的20%蒸汽比和1.1 TC压力(C62-520-T1.1)(以最小NO生成为基础)。在此条件下,NO,HC,CO和CO2减少了48%,35%,64%和8%;制动功率和制动热效率的增长率分别为17%和11。结果表明,SIM-TC-MC可以用于柴油发动机以控制NO并获得更高的发动机性能。 (C)2016 Elsevier Ltd.保留所有权利。

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