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The Use of Split-Injection Technique and Ethanol Lean Combustion on a SIDI Engine Operation for Reducing the Fuel Consumption and Pollutant Emissions

机译:分流注射技术和乙醇瘦燃烧对SIDI发动机操作,降低燃料消耗和污染物排放

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The current energy and climate world condition presents the need for development of increasingly efficient and sustainable internal combustion engines. In order to meet these requirements, environmental regulatory agencies establish long-term goals of fuel consumption and pollutant gases emissions reduction, which in turn lead the engines to a constant evolution. Thus, this work exploits some recent technologies that tend to minimize the environmental impact of the world’s extensive automotive fleet. Among them, direct injection systems, especially with the use of biofuels, such as ethanol, allow the engine to operate under lean stratified conditions through split-injection. This strategy consists to split several times the fuel injection phase, so that an injection portion can be performed at the intake stroke and the other injection portion at the compression stroke. In this case, the fuel does not mix thoroughly to the intake air, which generates a heterogeneous mixture whose lambda factor varies along the combustion chamber. The results demonstrate that the use of the split-injection technique allied to lean combustion strategy on a downsized ethanol SIDI engine present significant increase of 15.9% at lambda 1.4 in overall efficiency compared to the homogeneous stoichiometric mixture condition, maintaining acceptable levels of cyclic variability. The pollutant emissions show the reduction of NO_X formation due to the lower gas temperature into the combustion chamber. The HC emission levels grow with the use of split-injection due to in-cylinder impingement. The excess of air provides a reduction on the CO_2 emission levels due to the fuel consumption reduction. In this way, the split-injection technique allied to lean combustion strategy show up as an effective tool in reducing the engine specific fuel consumption and pollutant emissions.
机译:目前的能源和气候条件下世界的礼物,需要越来越高效和可持续的内燃机的发展。为了满足这些要求,环境监管机构建立的燃料消耗和污染气体的排放量减少,进而导致发动机的不断演变的长期目标。因此,这项工作利用倾向于减少全球丰富的汽车车队的环保影响的一些最新技术。其中,直接喷射系统,尤其是与使用生物燃料,如乙醇,允许发动机通过分割喷射稀化分层条件下操作。这种策略包括分裂几次燃料喷射阶段,使得在注射部分可以在进气冲程和压缩冲程的其他注入部来进行。在这种情况下,燃料不充分混合到吸入空气,其产生的异质混合物,其拉姆达因子沿着燃烧室而变化。结果证明,使用结盟的稀薄燃烧策略上的小型化的乙醇SIDI发动机本显著的15.9%在拉姆达1.4在整体效率增加相比,均匀的化学计量混合物条件下的分割喷射技术中,维持可接受的环状变异性的水平。污染物排放展现NO_X形成的减少由于较低的气体温度到燃烧室。的HC排放水平与使用分割喷射的生长由于缸内冲击。过量空气的提供有关CO_2排放水平的降低归因于燃料消耗减少。通过这种方式,结盟的稀薄燃烧策略分段喷射技术显示为在降低发动机燃油消耗和污染物排放的有效工具。

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