甲醇(M15)燃料BS-VI型轻型火花点火发动机的燃烧与性能评价

Ankur Kalwar, Rahul Kumar Singh, Ankit Gupta, Ranjeet Rajak, Gokul Gosakan, Avinash Kumar Agarwal
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摘要

摘要研究了甲醇-汽油混合物(M15)对商用轻型巴拉特Stage-VI (BS-VI) 2020火花点火(SI)发动机燃烧和性能的影响。M15和基准汽油(G100)发动机测试是在广泛的发动机负载和速度范围内进行的。对于M15运行,通过手动改变燃油量,确保每个发动机工作点的lambda值与基准汽油运行相匹配。M15在各工况点的燃烧特性与汽油非常相似。添加酒精可以提高辛烷值和火焰速度,从而改变发动机的燃烧特性,但在本研究中,M15燃料的燃烧特性几乎相同。这可能是由于混合了一小部分甲醇和发动机的高压缩比,这改善了燃烧动力学。M15的指示平均有效压力的方差系数略低于汽油,但在1000 rpm时除外,由于甲醇挥发性较低,在发动机转速较低时,M15的装药混合可能不足够。与基准汽油相比,使用M15燃料后,发动机的制动热效率提高了约1%,但由于M15的热值较低,制动油耗下降了约6%。从稍高的废气温度(EGT)观察到,更高的燃烧稳定性和可能更低的传热损失可能改善了M15发动机的性能。该研究表明,在商用轻型BS-VI SI发动机的相似lambda值下,M15燃料与基准汽油燃料具有相同的燃烧特性和更高的热效率。
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Combustion and Performance Evaluation of Methanol (M15)-Fueled BS-VI Compliant Light-Duty Spark-Ignition Engine
Abstract This study investigated the effect of the methanol–gasoline blend (M15) on the combustion and performance characteristics of a commercial light-duty Bharat Stage-VI (BS-VI) 2020 spark-ignition (SI) engine. The M15 and baseline gasoline (G100) engine tests were performed at a wide range of engine loads and speeds. For the M15 operation, it was ensured that the lambda values matched with the baseline gasoline operation at each engine operating point by changing fuel quantity manually. The combustion characteristics of M15 were quite similar to gasoline at all operating points. Alcohol addition improves octane number and flame speed, which changes the combustion characteristics of the engine, but in this study, the combustion characteristics of M15 fuel were almost identical. It may be due to blending a small fraction of methanol and the engine's high compression ratio, which improved the combustion kinetics. The coefficient of variance of indicated mean effective pressure was slightly lower for M15 than gasoline, except at 1000 rpm, where the charge mixing might not be adequate at low engine speed for M15 due to lower methanol volatility. Engine's brake thermal efficiency improved with M15 fueling by ∼1%, compared to baseline gasoline, though brake-specific fuel consumption deteriorated by ∼6% due to the lower calorific value of M15. Higher combustion stability and possibly lower heat transfer losses, as observed from slightly higher exhaust gas temperature (EGT), might have improved the engine's performance for M15. This study demonstrated that M15 fueling exhibited identical combustion characteristics and higher thermal efficiency than baseline gasoline fueling at similar lambda values in a commercial light-duty BS-VI SI engine.
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