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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A comparison of performance and exhaust emissions with different valve lift profiles between gasoline and LPG fuels in a SI engine
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A comparison of performance and exhaust emissions with different valve lift profiles between gasoline and LPG fuels in a SI engine

机译:SI发动机中汽油和LPG燃料在不同气门升程曲线下的性能和废气排放的比较

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In this study, a single-cylinder, four-stroke, single overhead camshaft (SOHC), spark ignition (SI) gasoline engine was converted to run with liquefied petroleum gas (LPG) fuel. To improve the volumetric efficiency, the camshaft of the engine was re-designed using classical spline method for different valve lifts. The variations of engine brake torque, power, brake specific fuel consumption (BSFC), HC, CO, CO2 and NOx emissions and exhaust gas temperature were investigated with unleaded gasoline and LPG fuels for different valve lifts. The experiments were conducted at 1700-3200 rpm engine speeds range at wide open throttle (WOT) and lambda = 1. Engine torque and power decreased and BSFC increased with LPG fuel for the 7 mm valve lift. Brake engine torque decreased by 8.82% and BSFC increased by 7.25% with LPG fuel compared to gasoline for 7 mm valve lift at 2600 rpm engine speed. However, HC and CO emissions decreased, NOx emissions increased with the usage of LPG fuel. HC and CO emissions decreased by 18.24% and 5.3%, respectively, and NOx emissions increased by 7.67%, with LPG fuel at 2600 rpm engine speed. An improvement was observed on engine torque, BSFC, HC and CO emissions with the increase of the valve lift to 8 mm and LPG fuel. At the low engine speeds, engine performance and exhaust emissions deteriorated with the increase of valve lift for gasoline fuel, while improvements were found at middle and higher engine speeds. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,单缸,四冲程,单顶置凸轮轴(SOHC),火花点火(SI)汽油发动机被转换为使用液化石油气(LPG)燃料运行。为了提高容积效率,针对不同的气门升程,使用经典样条方法对发动机的凸轮轴进行了重新设计。使用无铅汽油和液化石油气燃料,针对不同的气门升程,研究了发动机制动扭矩,功率,制动比油耗(BSFC),HC,CO,CO2和NOx排放量以及废气温度的变化。实验是在全开节气门(WOT)和lambda = 1的情况下,在1700-3200 rpm的发动机转速范围内进行的。对于7 mm气门升程,LPG燃料的发动机扭矩和功率降低,BSFC升高。在发动机转速为2600 rpm时,与汽油相比,LPG燃料的制动发动机扭矩降低了8.82%,BSFC升高了7.25%。但是,随着液化石油气燃料的使用,HC和CO排放减少,NOx排放增加。在2600 rpm的发动机转速下使用LPG燃料时,HC和CO排放量分别减少了18.24%和5.3%,NOx排放量增加了7.67%。随着气门升程增加至8 mm和LPG燃料,发动机扭矩,BSFC,HC和CO排放得到了改善。在低发动机转速下,随着汽油燃料的气门升程的增加,发动机性能和废气排放变差,而在中,较高发动机转速下,发动机性能和排气排放得到改善。 (C)2016 Elsevier Ltd.保留所有权利。

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