柴油机RCCI燃烧模式试验研究

F. Legrottaglie, E. Mattarelli, C. Rinaldini, T. Savioli, F. Scrignoli
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引用次数: 2

摘要

低温燃烧(LTC)的概念在最近的许多研究中被研究,旨在提高发动机效率和减少污染物排放。反应性控制压缩点火(RCCI)是最有前途的技术之一,它可以将低反应性燃料(如汽油、天然气、乙醇等)和高反应性燃料(如柴油)结合使用。前者注入进气歧管,在燃烧开始前产生均匀的混合气;后者被直接注入燃烧室。该技术可以很容易地应用于现有的柴油机,实现低反应性燃料的低压喷射系统。这项工作提出了一项初步实验研究的最重要结果,该研究是在一台轻型柴油发动机上进行的,为了在RCCI燃烧模式下运行而进行了修改。特别是,在中冷器和进气间安装了四个汽油喷射器,同时优化了两种燃料的喷射策略,并提高了增压压力。实验表明,在低负荷情况下,可以用汽油代替大部分柴油,保持甚至提高制动热效率。该结果是在没有EGR支持的情况下,通过对柴油喷射策略进行优化得到的。然而,在中等负载下,由于爆震的高风险,不可能实现柴油燃料的相关减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation on a diesel engine operated in RCCI combustion mode
Low Temperature Combustion (LTC) concepts have been investigated in many recent studies, aiming to improve engine efficiency and minimize pollutant emissions. One of the most promising techniques is represented by the Reactivity Controlled Compression Ignition (RCCI), that can be obtained combining a low reactivity fuel (such as gasoline, natural gas, ethanol, etc) and a high reactivity fuel (such as Diesel oil). The former is injected in the intake manifold, and it generates a homogeneous mixture before the start of combustion; the latter is injected directly into the combustion chamber. This technology can be easily applied to existent Diesel engines, implementing a low pressure injection system for the low-reactivity fuel. This work presents the most important results of a preliminary experimental study, conducted on a light duty Diesel engine, modified in order to operate in RCCI combustion mode. In particular, four gasoline injectors have been installed between the intercooler and the intake plenum, while the injection strategy of both fuels has been optimized, along with boost pressure. Experiments show that at low loads it is possible to substitute most of Diesel fuel with gasoline, maintaining or even improving brake thermal efficiency. This result was obtained by optimizing the Diesel fuel injection strategy, without the support of EGR. However, at medium loads, it was not possible to achieve relevant reductions of Diesel fuel, due to the high risk of knocking.
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