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Some effects of spark plug electrode geometry and orientation on small-engine emissions

机译:火花塞电极几何形状与方向对小型发动机排放的影响

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In the design of small off-highway and utility engines for compliance with increasingly stringent emissions standards, one component which can potentially reduce engine exhaust-gas emissions without necessitating changes in other, more costly parts is the spark plug. From studies carried out in automobile engines, benefits have been reported when using different spark-plug electrode shapes or when aligning the plugs in the cylinder head in preferred directions. However, these benefits, observed in automotive overhead valve engines with well-mixed charges, have generally been modest and spark plugs of conventional shape remain the most widely used today. In the case of off-highway and utility engines, which operate at substantially higher air-fuel ratios, often with poorly-mixed charges, the potential for improving performance by changing spark-plug shape has not been explored. In this paper, we discuss the results of a series of experiments in which the emissions of a two-stroke chainsaw engine, a four-stroke side-valve engine, and a four-stroke overhead-valve engine are measured using conventional spark plugs and spark plugs with crown-shaped electrodes. In general, the use of a crown-shaped electrode resulted in improvements in brake-specific fuel consumption and reductions in hydrocarbon emission of the order of 5% to 10%, at the cost of emitting slightly more oxides of nitrogen. These trends are consistent with theories of ignition and combustion insomuch as the reported effects can be explained as a consequence of crown-shaped electrodes generating flame kernels which lead to faster burn rates, reduced heat losses and higher burned-gas temperatures.
机译:在设计小型非公路和公用事业发动机,遵守越来越严格的排放标准,一个组件可能会降低发动机废气排放而不需要其他昂贵的部分,更昂贵的部件是火花塞。根据汽车发动机的研究,在使用不同的火花塞电极形状或者当在优选的方向上对准缸盖中的塞子时,已经报道了益处。然而,在具有良好混合电荷的汽车架空阀发动机中观察到这些益处通常是常规和传统形状的火花塞仍然是今天最广泛的。在非公路和公用事业发动机的情况下,在较高的空燃比上运行,通常具有较差的电荷,因此尚未探讨通过改变火花塞形状提高性能的可能性。在本文中,我们讨论了一系列实验的结果,其中使用常规火花塞和四冲程侧阀发动机,四冲程侧阀发动机和四冲程架空阀发动机的排放火花塞带冠状电极。通常,使用冠状电极导致制动特定燃料消耗的改善,并在发光略微更多的氮气的成本下降低5%至10%的烃排放量为5%至10%。这些趋势与点火和燃烧胰岛素的理论一致,因为由于产生火焰核的冠状电极的结果可以解释报告的效果,这导致燃烧速率更快,减少热损失和更高的燃烧气温。

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