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Effects of intake-port throttling on combustion behaviour in diesel low temperature combustion (LTC)

机译:进气节气门对柴油低温燃烧(LTC)燃烧行为的影响

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摘要

This paper describes the effects of intake-port throttling on diesel low temperature combustion (LTC) at a low and medium load condition. These conditions were known for their characteristically high hydrocarbon (HC) emissions predominantly from over-mixed and under-mixed mixture zones respectively. The investigation was carried out to supplement current findings in literature with valuable information on the formation of HC emissions with increasing swirl levels generated by intake-port throttling. This was achieved through the use of cycle-resolved HC measurements in addition to cycle averaged emissions and in-cylinder pressure-derived metrics. While there was negligible overall effect at the moderately-dilute lowload conditions, increasing swirl has been shown to be beneficial to premixing efficacy under highly dilute conditions with extended ignition delay. This potential advantage was found to be nullified by the swirlinduced confinement of fuel and combustion products to the central region of the cylinder leading to poor late cycle burn rates and increased smoke emissions. HC emissions from the squish and head quench regions were reduced by an increase in swirl ratio.
机译:本文介绍了进气道节流对中低负荷工况下柴油低温燃烧(LTC)的影响。这些条件因其特征性的高碳氢化合物(HC)排放量(分别主要来自过度混合和混合不足的混合区)而闻名。进行调查是为了补充文献中的当前发现,提供有关随着进气口节流产生的涡流水平增加而形成HC排放的有价值的信息。这是通过使用周期解析的HC测量值以及周期平均排放量和缸内压力衍生指标来实现的。尽管在中度稀释的低负荷条件下总体效果可忽略不计,但已证明增加旋流对延长稀释时间,高度稀释条件下的预混合效果很有帮助。发现这种潜在的优势由于涡流引起的燃料和燃烧产物对气缸中心区域的限制而失效,从而导致较差的后期循环燃烧率和增加的烟尘排放。旋压比的增加减少了挤压和压头淬火区的HC排放。

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