通过加氢和重新设计喷油策略改善ISM 370柴油机的燃烧和排放特性

K. Shojae, M. Mahdavian
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引用次数: 0

摘要

氢燃料是最清洁的燃料。这种燃料可用作柴油机的添加剂。柴油机具有动力强、热效率高、燃料成本低等优点。近年来,人们对氢燃料在柴油机中的应用进行了广泛的研究。然而,使用气态氢燃料和改变喷射策略的同时效果需要进一步研究,特别是对于康明斯ISM370发动机。这项工作同时考虑了几乎所有的功能和发射参数。当向康明斯ISM 370柴油发动机(在不同的发动机下)注入6%的氢气(按体积计)时,该程序可以有效地达到平衡状态。此外,由于发动机使用的燃油化合物发生了变化,发动机的喷射正时和温度需要重新设计,以更好地工作。对于发动机的仿真,采用了CFD程序。为了验证模拟预测的平均压力和放热速率,并与实验数据进行了比较,结果吻合较好。结果表明,在不同的发动机转速下,使用气态氢能显著降低大部分废气排放,如NO、CO等。结果表明,在发动机中加入6%的H2,表明热效率提高了39%左右;在1600转/分转速下,NO、soot、CO和CO2排放量分别降低5%、75%、70%和30%。同时还发现,在2000转/分下4度BTDC是平衡废气排放和性能参数的最佳喷射时间。3种注射温度中,最佳注射温度为330 K
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Improving the combustion and emission characteristics of ISM 370 diesel engine by hydrogen addition and redesigning injection strategy
Hydrogen fuel is the cleanest fuel available. This fuel can be used as an additive in the diesel engine. Diesel engines have the advantages of strong power, high thermal efficiency and low fuel costs. There have been extensive studies on the use of hydrogen fuel in diesel engines in recent years. However, the simultaneous effect of using gaseous hydrogen fuel and changing injection strategy needs further investigation specially for the Cummins ISM370 engine. This work considers almost all functional and emission parameters, simultaneously. This procedure can be effective to achieve balanced conditions when 6% H2 (by volume) is injected into the Cummins ISM 370 diesel engine (under different engines). In addition, due to changing fuel compound used in engine, injection timing and temperature of engine should be redesigned to better operating. For simulation of engine, a CFD code was used. In order to validity and verify the simulation predicted mean pressure and the rate of heat release are compered to experimental data and results gave appropriate accordance. Results show that most of exhaust emissions such as NO, CO, etc. are dramatically reduced by using gaseous hydrogen under various engine speeds. It is determined that with addition of 6% H2 within the engine, indicated thermal efficiency is increased by around 39%; and NO, soot, CO and CO2 emissions are reduced by 5%, 75%, 70%, and 30%, respectively, under 1600 rpm speed. It is also found that the best injection timing that makes a balance between exhaust emissions and performance parameters is 4 deg BTDC under 2000 rpm. Moreover, the best injection temperature is 330 K among of three considered injection temperatures.3
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