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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effects of triangular and ramp injection rate-shapes on the performance and emissions of a kerosene-diesel fueled direct injection compression ignition engine: A numerical study
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Effects of triangular and ramp injection rate-shapes on the performance and emissions of a kerosene-diesel fueled direct injection compression ignition engine: A numerical study

机译:三角形和斜坡喷射率形状对煤油柴油直喷压缩点火发动机性能和排放的影响:数值研究

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摘要

Diesel engine technology has advanced significantly over the years, giving rise to engines with higher efficiencies and lower emissions. Different injection strategies like multiple injections are employed in order to improve performance and lower emissions. In this work, the effects of triangular and ramp rate-shapes on the combustion process and emissions formation of a direct injection diesel engine are numerically investigated. Two different fuels, which are kerosene and diesel, are used in this work. A reliable kerosene-diesel reaction mechanism is employed with the KIVA4-CHEMKIN code for the numerical simulations. It is found that injection rate-shaping has the capability of changing the start of combustion without changing the start and duration of injection. Moreover, injection rate-shaping controls combustion phasing as well as the duration of combustion. Furthermore, both injection rate-shaping and fuel thermo-physical properties are found to affect the combustion process as well as emissions formation significantly. (C) 2016 Elsevier Ltd. All rights reserved.
机译:多年来,柴油发动机技术取得了显着进步,从而使发动机具有更高的效率和更低的排放量。为了提高性能和降低排放,采用了多次注入之类的不同注入策略。在这项工作中,数值研究了三角形和斜率形状对直喷柴油机燃烧过程和排放形成的影响。这项工作使用了两种不同的燃料,即煤油和柴油。 KIVA4-CHEMKIN代码采用可靠的煤油-柴油反应机理进行数值模拟。发现喷射速率整形具有改变燃烧开始而不改变喷射开始和持续时间的能力。此外,喷射速率整形控制燃烧阶段以及燃烧持续时间。此外,发现喷射速率整形和燃料热物理性质均显着影响燃烧过程以及排放形成。 (C)2016 Elsevier Ltd.保留所有权利。

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