首页> 外文会议>ASME Internal Combustion Engine Division spring technical conference 2012.;Large bore engines ... >HIGH EFFICIENCY TWO-VALVE Dl DIESEL ENGINE FOR OFF-ROAD APPLICATION COMPLYING WITH UPCOMING EMISSION LIMITS
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HIGH EFFICIENCY TWO-VALVE Dl DIESEL ENGINE FOR OFF-ROAD APPLICATION COMPLYING WITH UPCOMING EMISSION LIMITS

机译:符合即将到来的排放限值的适用于越野应用的高效两气门Dl柴油机

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Nowadays, environmental concerns are posing a great challenge to Dl Diesel engines. Increasingly tightening emission limits require a higher attention on combustion efficiency. In this scenario, computational fluid-dynamics can prove its power guaranteeing a deeper understanding of mixture formation process and combustion. A high efficiency Diesel engine can be developed only mastering all the parameters that can affect the combustion and, therefore, NOx and soot emissions. In this work, the development of an engine in order to fulfill Tier 4i emission standard will be presented. Originally, the engine was a two-valve engine supplied with a DPF. Since no SCR aftertreat-ment is supplied, NOx emission target are achieved through external exhaust gas recirculation and retarding the start of injection. In order to fulfill Tier 4i emissions, the main concern is on soot emission and, thus, the combustion chamber has been re-designed, through CFD simulations, leading to a better interaction between the flow field, the fuel spray and the piston bowl geometry. Particularly, through intake phase simulations, performed with the CFD code Fire v2009 v3, different intake ducts, with different swirl ratio, have been simulated in order to provide a flow field as realistic as possible for the combustion simulations. Through combustion process simulations, performed with the CFD code Kiva, by varying different parameters the interac- tion between the swirl flow field, generated by the intake duct, the reverse squish motion, and motions aerodynamically generated by spray has been investigated leading to the definition of a new engine lay-out. The study shows how, given the need of retarded injection for limiting NOx emission, the decrease of swirl ratio, when combined with a proper piston bowl design, allows a significant decrease of soot emissions and the achievement of Tier 4i emission standard.
机译:如今,对环境的关注对Dl柴油发动机提出了巨大挑战。日益严格的排放限值要求对燃烧效率给予更多关注。在这种情况下,计算流体动力学可以证明其强大的功能,可确保对混合物形成过程和燃烧有更深入的了解。只有掌握所有会影响燃烧的参数,然后才能影响NOx和烟尘的排放,才能开发出高效的柴油发动机。在这项工作中,将介绍为满足Tier 4i排放标准而开发的发动机。最初,该发动机是配有DPF的两气门发动机。由于未提供SCR后处理,因此可通过外部废气再循环和延迟喷射开始来实现NOx排放目标。为了实现Tier 4i排放,主要关注的是烟尘排放,因此,通过CFD模拟对燃烧室进行了重新设计,从而使流场,燃油喷雾和活塞筒几何形状之间的相互作用更好。特别是,通过使用CFD代码Fire v2009 v3执行的进气阶段模拟,已经模拟了具有不同涡流比的不同进气管道,以便为燃烧模拟提供尽可能逼真的流场。通过使用CFD代码Kiva进行的燃烧过程模拟,通过改变不同的参数,研究了进气管产生的旋流流场,反向挤压运动和喷雾产生的空气动力学运动之间的相互作用,从而得出了如下定义:新的引擎布局。研究表明,考虑到需要延迟喷射以限制NOx排放,与适当的活塞碗设计结合使用时,降低涡流比可以显着减少烟灰排放并达到Tier 4i排放标准。

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