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Experimental investigation of the effect of spark plug gap on a hydrogen fueled SI engine

机译:火花塞间隙对氢气SI发动机影响的实验研究

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In this work, an experimental study on the performance and exhaust emissions of a commercial hydrogen fueled spark ignition engine (HFSIE) was performed at partially and full wide open throttle (50% and 100% WOT) positions. The engine is a four-stroke cycle six-cylinder, engine volume of 4.9 L, port fuel injection, hydrogen fueled SI engine with a bore of 102.1 mm, a stroke of 101.1 mm and a compression ratio of 13.5:1. The experiments were performed using 3 different spark plug gaps (SPG) (0.4, 0.6 and 0.8 mm), varied engine speeds of 1000-3000 rpm and two ignition timing values (10 and 15° CA BTDC) at 50% and 100% wide open throttle (WOT). SPG is a factor affecting the performance of the engine depending on the engine structure. Maximum power values were obtained at 0.6 mm SPG for both 50% and 100% WOT at ignition timing values of 10 and 15° CA BTDC. The maximum efficiency values were obtained with a 0.8 mm SPG at 50% WOT. At 100% WOT position, the maximum efficiency values were obtained with a 0.6 mm spark plug gap (SPG) at ignition timing values of 10 and 15° CA BTDC. A significant decrease in NO emission was observed using hydrogen for all WOT and SPGs.
机译:在这项工作中,在部分和全开节气门(WOT分别为50%和100%)时,对商用氢燃料火花点火发动机(HFSIE)的性能和废气排放进行了实验研究。该发动机为四冲程六缸发动机,发动机容积为4.9 L,进气道喷油,氢动力SI发动机,缸径为102.1 mm,冲程为101.1 mm,压缩比为13.5:1。使用3个不同的火花塞间隙(SPG)(0.4、0.6和0.8 mm),变化的发动机转速1000-3000 rpm和两个点火正时值(10和15°CA BTDC)在50%和100%宽下进行实验打开油门(WOT)。 SPG是取决于发动机结构而影响发动机性能的一个因素。当点火正时值为10和15°CA BTDC时,WOT为​​50%和100%时,在0.6 mm SPG时获得最大功率值。在50%WOT时使用0.8 mm SPG可获得最大效率值。在100%WOT位置,在点火正时值为10和15°CA BTDC时,使用0.6 mm火花塞间隙(SPG)可获得最大效率值。对于所有WOT和SPG,使用氢气观察到NO排放量均显着下降。

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