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Effects of hydrogen addition on cycle-by-cycle variations in a lean burn natural gas spark-ignition engine

机译:稀燃天然气火花点火发动机中氢的添加对循环变化的影响

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An experimental study aimed at examining the effects of hydrogen addition on cycle-by-cycle variation (CCV) in an SI engine was conducted on a 6-cylinder throttle body injection natural gas (NG) engine. Two types of fuels, CNG and 80/20 (in volume) CNG/hydrogen mixtures, were used for comparison purposes. The results showed that coefficient of variation (CoV) in both maximum pressure (Pmax) and indicated mean effective pressure (IMEP) could be reduced by hydrogen addition and that positive effect would be more obvious as the engine was further leaned out. The duration of flame development and propagation as well as the CCVs in flame propagation duration could be simultaneously reduced by hydrogen addition, all of which are beneficial to improve combustion stability and thought to be reasons/or the reduction in CoV_(imep). Stability of combustion phasing that is crucial to the effectiveness of ignition timing optimization was also improved by hydrogen. Hydrogen addition was also proved to be good to the control of emission of NO_x and unburned HC. Hence it is concluded that hydrogen addition is an effective and applicable approach to keep down CCVs in lean burn spark-ignition engines.
机译:在六缸节气门喷射天然气(NG)发动机上进行了一项旨在研究氢气对SI发动机的逐周期变化(CCV)影响的实验研究。为了比较,使用了两种燃料,即CNG和80/20(体积)CNG /氢气混合物。结果表明,通过添加氢气可以降低最大压力(Pmax)和指示平均有效压力(IMEP)的变化系数(CoV),并且当发动机进一步倾斜时,积极作用会更加明显。火焰的产生和传播的持续时间以及火焰传播持续时间中的CCV可以通过添加氢气同时减少,所有这些都有利于提高燃烧稳定性,并被认为是CoV_(imep)降低的原因。氢也改善了对点火正时优化效率至关重要的燃烧定相稳定性。加氢还被证明对控制NO_x和未燃烧的HC的排放有好处。因此,可以得出结论,加氢是降低稀薄火花点火发动机CCV的有效方法。

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