Simultaneous improvements of thermal efficiencies and smoke emissions in semi-premixed diesel combustion with dual-injectors and a spatially divided combustion chamber

IF 2.2 4区 工程技术 Q2 ENGINEERING, MECHANICAL International Journal of Engine Research Pub Date : 2024-06-21 DOI:10.1177/14680874241255985
Kazuki Inaba, Yoshimitsu Kobashi, Gen Shibata, Kazuhiro Hayashida, Hideyuki Ogawa
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Abstract

To simultaneously establish the high thermal efficiencies and the low smoke emissions in the semi-premixed diesel combustion with a twin peaked heat release consisting of the first-stage premixed combustion and the second-stage spray diffusive combustion, a combination of dual-injectors and a newly designed divided combustion chamber was proposed and the combustion characteristics were investigated. The divided chamber with a lip at the middle of the side wall can prevent the second fuel spray from entering the burned region of the premixture from the first-stage injection, realizing a suitable spatial distribution of spray flames and suppressing the soot formation. The dual-injectors can independently provide the fuel sprays into the upper and the lower layers of the divided chamber with the optional quantities and timings for the first and second injections, establishing the optimum combustion phasing. The distributions of the equivalence ratios and the soot formation characteristics in the divided chamber as well as in an ordinary re-entrant chamber as a reference were analysed with CFD simulations, showing that the soot formation is smaller in the divided chamber. The second-stage spray diffusive combustion is improved as well as the late afterburning and the combustion duration are reduced with the suppression of interference between the spray flames in the divided chamber. The cooling loss in the divided chamber is smaller due to the weaker gas motion and the lower heat transfer coefficient. The experiments also showed that the thermal efficiencies are better and the smoke emissions are lower in the divided chamber at medium loads. However, at higher loads, the smoke emissions increase due to the offset injector arrangement, and the CFD analysis showed that lower smoke emissions can be expected with optimization of the injector arrangement to locate the injector for the second fuel injection at the centre of cylinder.
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利用双喷射器和空间分割燃烧室同时改善半预混柴油燃烧的热效率和烟气排放
为了在由第一级预混合燃烧和第二级喷雾扩散燃烧组成的双峰放热半预混合柴油燃烧中同时实现高热效率和低烟排放,提出了一种双喷油器和新设计的分隔燃烧室的组合,并对其燃烧特性进行了研究。侧壁中间带有唇缘的分隔燃烧室可防止第二喷射燃料从第一级喷射进入预混物燃烧区,实现合适的喷射火焰空间分布,抑制烟尘形成。双喷射器可以按照第一和第二喷射的可选数量和时间,独立地向分隔腔的上层和下层提供燃料喷射,建立最佳的燃烧相位。通过 CFD 仿真分析了分隔室和普通再入式燃烧室的等效比分布和烟尘形成特征,结果表明分隔室的烟尘形成较少。由于抑制了分隔室中喷雾火焰之间的干扰,第二级喷雾扩散燃烧得到了改善,晚期后燃和燃烧持续时间也缩短了。由于气体运动较弱,传热系数较低,分隔室中的冷却损失较小。实验还表明,在中等负荷下,分隔室的热效率更高,烟雾排放量更低。CFD 分析表明,通过优化喷油器布置,将用于第二次喷油的喷油器置于气缸中心,可望降低烟雾排放。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
期刊最新文献
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