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首页> 外文期刊>SAE International Journal of Engines >Investigation into the Potentials of a Dedicated Multi-Point Injection System for a Production NG Single-Point Heavy-Duty Engine
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Investigation into the Potentials of a Dedicated Multi-Point Injection System for a Production NG Single-Point Heavy-Duty Engine

机译:对生产NG单点重型发动机专用多点注射系统的潜力调查

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CNG is at present retaining a growing interest as a factual alternative to traditional fuels for SI engines, thanks to its high potentials in reducing the engine-out emissions. Increasing thrust into the exploitation of NG in the transport field is in fact produced by the even more stringent emission regulations that are being introduced into the worldwide scenario. Moreover, the transport sector accounts for the 27% of the overall energy consumptions and up to the 13% in terms of global emissions. The present paper aims at deeply investigating into the potentials of a heavy-duty engine running on CNG and equipped with two different injection systems, an advanced single point (SP) one and a prototype multi-point (MP) one. The considered 7.8-liter engine was designed and produced to implement a SP strategy and hence modified to run with a dedicated MP system. A thorough comparison of the engine equipped with the two injection systems has been carried out at steady state as well as at transient operations. Better performances in terms of cycle-to-cycle variability were proved for the MP system despite poorer mixture homogeneity. A 0D-1D model has also been built and validated on the experimental data set to be hence exploited for investigating into different strategies both for the SP and for the MP layout. An extensive simulation has been carried out on the effects of the injection phasing on the SP system performance referring to the engine power output and to the air-to-fuel ratio homogeneity amongst the cylinders. Finally, as far as the MP injection system is concerned, the innovative fire-skipping or cylinder deactivation has been considered and deployed by means of the numerical model, assessing for an overall decrease in the fuel consumption of 12% at part load operations.
机译:由于其在减少发动机排放的高潜力,CNG目前仍将日益增长的感兴趣作为对SI发动机的传统燃料的事实替代。由于在全球场景中被引入的更严格的排放法规,因此产生了对运输领域中NG的开发的推动。此外,运输部门占全球排放方面总能耗的27%,高达13%。本文旨在深入调查CNG上运行的重型发动机的潜力,并配备了两个不同的注射系统,先进的单点(SP)和原型多点(MP)。设计并制作了所考虑的7.8升发动机以实现SP策略,从而修改以使用专用MP系统运行。在稳态以及瞬态操作中,已经进行了配备有两个喷射系统的发动机的彻底比较。尽管均匀性较差,但仍证明了MP系统的循环到周期变异性方面的更好表现。还在实验数据集中构建并验证了0D-1D模型,因此利用用于调查SP和MP布局的不同策略。在引发发动机功率输出和气缸中的空气 - 燃料比均匀的SP系统性能上的效果上进行了广泛的模拟。最后,就MP注射系统而言,通过数值模型考虑并部署了创新的射击或气缸停用,评估了部件负载操作的12%的总体减少。

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