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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effect of piston geometry on performance and emission characteristics of an LPG fuelled lean burn SI engine at full throttle condition
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Effect of piston geometry on performance and emission characteristics of an LPG fuelled lean burn SI engine at full throttle condition

机译:在全节气门条件下,活塞的几何形状对以LPG燃烧的稀薄燃烧SI发动机的性能和排放特性的影响

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This paper investigates the influence of piston squish area in LPG fuelled lean burn Spark Ignition (SI) engine on performance, emissions, combustion and cyclic variation at constant speed. The piston squish area is varied by 25%, 30%, 35% and 40% of total piston area. A single cylinder diesel engine is modified to operate as SI engine at a compression ratio of 10:1 at 1500 rpm. Tests are conducted at 100% throttle opening condition with different equivalence ratios under lean operation on different squish areas and results are analyzed. It is observed that the increase in squish area beyond 30% leads to instability in combustion towards lean equivalence limit. An appreciable increase in brake power and brake thermal efficiency is noticed in the equivalence ratios between 0.7 and 0.9 for 30% squish area piston. The HC emission level of 30% squish area piston is less compared to 25%, 35% and 40% squish area pistons. There is a noticeable increase in the NO emission in 30% and 25% squish area pistons compared to 35% and 40% squish area pistons. The investigations carried over suggest that 30% squish area piston is the most suitable for LPG fuelled lean burn SI engine. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了LPG燃料稀薄燃烧火花点火(SI)发动机的活塞挤压面积对恒速下性能,排放,燃烧和循环变化的影响。活塞挤压面积变化为总活塞面积的25%,30%,35%和40%。单缸柴油发动机经过修改,可以在1500 rpm的压缩比为10:1时作为SI发动机运行。在不同挤压面积的稀薄操作下,在不同的当量比的100%节气门开度条件下进行测试,并对结果进行分析。观察到挤压面积增加超过30%会导致燃烧向稀薄当量极限的不稳定。对于30%的挤压面积活塞,当量比在0.7和0.9之间时,制动功率和制动热效率明显提高。 30%挤压面积的活塞的HC排放水平低于25%,35%和40%挤压面积的活塞。相较于35%和40%挤压面积的活塞,NO 3排放显着增加了30%和25%挤压面积的活塞。进行的研究表明,30%的压缩面积活塞最适合LPG燃料的稀薄燃烧SI发动机。 (C)2016 Elsevier Ltd.保留所有权利。

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