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Experimental Investigation of Improving Homogeneous Charge Induced Ignition (HCII) Combustion at Medium and High Load by Reducing Compression Ratio

机译:通过降低压缩比改善培养基和高负荷在培养基和高负荷下改善均匀电荷诱导点火(HCII)燃烧的实验研究

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This research focuses on the potential of Homogeneous Charge Induced Ignition (HCII) combustion meeting the Euro V emission standard on a heavy-duty multi-cylinder engine using a simple after-treatment system. However, in our previous studies, it was found that the gasoline ratio was limited in HCII by the over-high compression ratio (CR). In this paper, the effects of reducing CR on the performances of HCII at medium and high loads were explored by experimental methods. It was found that by reducing CR from 18:1 to 16:1 the peak in-cylinder pressure and the peak pressure rise rate were effectively reduced and the gasoline ratio range could be obviously extended. Thus, the combustion and emission characteristics of HCII at medium and high loads were noticeably improved. Soot emissions can be significantly reduced because of the increase of premixed combustion ratio. The reduction could be over 50% especially at high load and high speed conditions. However, the effects of reducing the CR on NO_x, CO and THC emissions are not obvious. Then the HCII strategy was optimized through the whole operating range aiming at meeting the Euro V limitations. The optimization results showed that there was a great potential for HCII to meet the Euro V emission standard over the whole operating map only with a simple and cheap after-treatment system (diesel oxidation catalyst). The fuel consumption was also reduced with the dual fuel strategy. The results in this paper also have reference value for other dual fuel engines.
机译:本研究侧重于使用简单的后处理系统在重型多缸发动机上满足欧式V排放标准的均匀电荷诱导点火(HCII)燃烧的潜力。然而,在我们以前的研究中,发现汽油比通过过高的压缩比(Cr)在HCII中受到限制。本文通过实验方法探讨了减少CR对中高负荷性能的影响。发现,通过减少18:1至16:1的峰值缸内压力和峰值压力升高速率的峰值降低,并且可以明显延长汽油比范围。因此,明显改善了培养基和高负荷下HCII的燃烧和排放特性。由于预混燃烧比率的增加,烟灰排放可以显着降低。减少可超过50%,特别是在高负荷和高速条件下。然而,减少CR在NO_X上的影响,CO和THC排放并不明显。然后通过整个运营范围优化HCII策略,旨在满足欧元媒体局限性。优化结果表明,HCII的潜力很大,只需通过简单且廉价的后处理系统(柴油氧化催化剂)就符合整个操作地图的欧V排放标准。使用双重燃料策略也降低了燃料消耗。本文的结果也具有用于其他双燃料发动机的参考值。

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