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Experimental study of the effects of spark timing and water injection on combustion and emissions of a heavy-duty natural gas engine

机译:火花时序和注水对重型天然气发动机燃烧和排放影响的实验研究

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摘要

The growing concern over global warming and stricter emissions regulations (EURO 6 standards) have led to natural gas engines being operated in stoichiometric combustion conditions with three-way catalytic (TWC) and exhaust gas recirculation (EGR) equipment. However, natural gas engines suffer from high thermal load, knock onset, and high turbine inlet temperatures at stoichiometric combustion conditions. Water injection is a promising approach to reduce thermal load and NOx emissions and suppress knock onset. In this study, the effects of water injection on the combustion and performance characteristics of a heavy-duty natural gas engine were experimentally studied. The experiments were conducted with four water to natural gas mass ratios (WNMRs) and various spark timings. The results showed that water injection decreased the burning velocity of natural gas, leading to a decrease in peak in-cylinder pressure, peak heat release rate, and combustion temperature. The flame development period (CA(0-10)) and the flame propagation period (CA(10-90)) increased with an increase in WNMR. Compared to pure natural gas, the brake thermal efficiency at the optimum spark timing increased from 27.8% to 28.2% at WNMR = 0.35. BSNOx emissions consistently decreased with an increase in WNMR, while BSTHC emissions and BSCO emissions increased slightly.
机译:对全球变暖和更严格的排放法规(欧元6标准)的日益关注导致了用三元催化(TWC)和废气再循环(EGR)设备在化学计量燃烧条件下运行的天然气发动机。然而,天然气发动机在化学计量燃烧条件下遭受高热负荷,爆震和高涡轮机入口温度。注水是一种有希望的方法来减少热载荷和NOx排放,抑制爆震发作。在本研究中,实验研究了注水对重型天然气发动机燃烧和性能特征的影响。实验用四个水与天然气质量比(WNMR)和各种火花定时进行。结果表明,注水降低了天然气的燃烧速度,导致峰值压力,峰值热释放率和燃烧温度降低。火焰开发时期(Ca(0-10))和火焰传播期(Ca(10-90))随着Wnmr的增加而增加。与纯天然气相比,最佳火花正时的制动热效率从WNMR = 0.35的27.8%增加到28.2%。 BSNOX排放始终如一地随着WNMR的增加而减少,而BSTHC排放和BSCO排放略有增加。

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