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Investigation on Multiple Injection Strategies for Gasoline PPC Operation in a Newly Designed 2-Stroke HSDI Compression Ignition Engine

机译:新型2冲程HSDI压缩点火发动机汽油PPC的多种喷射策略研究。

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Partially Premixed Combustion (PPC) of fuels in the gasoline octane range has proven its potential to achieve simultaneous reduction in soot and NO_x emissions, combined with high indicated efficiencies; while still retaining proper control over combustion phasing with the injection event, contrary to fully premixed strategies. However, gasoline fuels with high octane number as the commonly available for the public provide a challenge to ensure reliable ignition especially in the low load range, while fuel blends with lower octane numbers present problems for extending the ignition delay in the high load range and avoid the onset of knocking-like combustion. Thus, choosing an appropriate fuel and injection strategy is critical to solve these issues, assuring successful PPC operation in the full engine map. In this framework, the objective of the present investigation consists of evaluating the use of multiple injection strategies for achieving stable PPC operation, attaining low NO_x and soot emissions together with high efficiencies. This research was carried out in a single-cylinder DOHC 2-stroke HSDI CI engine using 95 Research Octane Number (RON) gasoline fuel. Three different operating conditions in terms of indicated mean effective pressure (IMEP) and speed were investigated: 3.1 bar IMEP and 1250 rpm, 5.5 bar IMEP and 1500 rpm and 10.4 bar IMEP and 1500 rpm. Parametric variations of injection timings, at different rail pressures and different fuel split between injections were experimentally performed to analyze the effect of the injection strategy over the combustion process, exhaust emissions and efficiency levels. Experimental results confirm how using an appropriate injection strategy helps to achieve stable PPC operation in the selected operating conditions; with competitive combustion stability, lower NO_x and soot levels, and moderate CO and HC emissions with combustion efficiency over 96%, compared to Conventional Diesel Combustion (CDC). Finally, a detailed analysis of the local cylinder conditions was performed by means of 3D-CFD simulations in order to provide guidelines for further optimization of the gasoline PPC concept, when using multiple injection strategies in the 2-stroke engine under development.
机译:汽油辛烷值范围的燃料的部分预混燃烧(PPC)已证明其具有实现烟灰和NO_x排放量同时减少以及高指示效率的潜力;与完全预混策略相反,在喷射过程中仍保持对燃烧定相的适当控制。然而,高辛烷值的汽油燃料是公众普遍面临的挑战,尤其是在低负荷范围内,要确保可靠的点火是一个挑战,而辛烷值较低的燃料混合物则存在着延长高负荷范围内的点火延迟并避免点火的问题。爆震状燃烧的开始。因此,选择合适的燃油和喷射策略对于解决这些问题至关重要,以确保在整个发动机图中PPC成功运行。在此框架下,本研究的目的包括评估使用多种喷射策略以实现稳定的PPC操作,实现低NO_x和烟尘排放以及高效率。这项研究是使用95研究辛烷值(RON)汽油燃料在单缸DOHC 2冲程HSDI CI发动机中进行的。在指示平均有效压力(IMEP)和速度方面研究了三种不同的运行条件:3.1 bar IMEP和1250 rpm,5.5 bar IMEP和1500 rpm和10.4 bar IMEP和1500 rpm。实验性地进行了喷射正时的参数变化,在不同的轨压和喷射之间的不同燃料分配下,以分析喷射策略对燃烧过程,废气排放和效率水平的影响。实验结果证实了使用适当的喷射策略如何在选定的运行条件下帮助实现稳定的PPC运行;与常规柴油机燃烧(CDC)相比,具有出色的燃烧稳定性,较低的NO_x和烟灰水平以及适度的CO和HC排放,燃烧效率超过96%。最后,当在开发中的2冲程发动机中使用多种喷射策略时,通过3D-CFD模拟对本地气缸状况进行了详细分析,从而为进一步优化汽油PPC概念提供了指导。

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