首页> 外文会议>International Conference on Engines Vehicles >Applying Advanced CFD Analysis Tools to Study Differences between Start-of-Main and Start-of-Post Injection Flow, Temperature and Chemistry Fields Due to Combustion of Main-Injected Fuel
【24h】

Applying Advanced CFD Analysis Tools to Study Differences between Start-of-Main and Start-of-Post Injection Flow, Temperature and Chemistry Fields Due to Combustion of Main-Injected Fuel

机译:应用高级CFD分析工具在主注入燃料的燃烧燃烧引起的主题起始和起初注射流动,温度和化学领域之间的差异

获取原文

摘要

This paper is part of a larger body of experimental and computational work devoted to studying the role of close-coupled post injections on soot reduction in a heavy-duty optical engine. It is a continuation of an earlier computational paper. The goals of the current work are to develop new CFD analysis tools and methods and apply them to gain a more in depth understanding of the different in-cylinder environments into which fuel from main- and post-injections are injected and to study how the in-cylinder flow, thermal and chemical fields are transformed between start of injection timings. The engine represented in this computational study is a single-cylinder, direct-injection, heavy-duty, low-swirl engine with optical components. It is based on the Cummins N14, has a cylindrical shaped piston bowl and an eight-hole injector that are both centered on the cylinder axis. The fuel used was n-heptane and the engine operating condition was light load at 1200 RPM. The in-cylinder processes investigated are typical and include fuel injection and the subsequent growth of a largely non-combusting fuel-rich vapor jet, pre-mixed burn followed by sharp reductions in fuel and oxygen concentrations, limited air entrainment that coincides with a transition from pre-mixed burn to mixing-controlled burn, and the end of main-injection, after which many in-cylinder processes tend back toward their pre-injection values. What distinguishes the work is the ability to use the newly developed tools and methods so that the aforementioned in-cylinder processes of interest can be linked in a quantifiable and visual way.
机译:本文是较大的实验和计算工作的一部分,致力于研究牢固耦合后注射对重型光学发动机的烟灰减少的作用。这是较早的计算纸的延续。当前工作的目标是开发新的CFD分析工具和方法,并应用它们更深入地了解不同的缸内环境,以注入来自主要和注射后的燃料并研究如何研究 - 在注射定时的开始之间改变曲线流动,热和化学领域。在该计算研究中表示的发动机是具有光学组件的单缸,直喷,重型,低旋流发动机。它基于康明斯N14,具有圆柱形的活塞碗和八个孔喷射器,其均以在圆柱轴上居中。所用的燃料是正庚烷,发动机操作条件为1200rpm的轻负载。研究的缸内工艺是典型的,包括燃料喷射和随后的富含燃料富含燃料蒸汽射流的随后生长,预混合燃烧,然后急剧地减少燃料和氧浓度,有限的空气夹带与过渡相一致从预先混合的燃烧到混合控制的烧伤,以及主喷射的结束,之后许多缸内过程倾向于它们的预注射值。什么区别了这项工作是使用新开发的工具和方法的能力,以便可以以可量化和可视的方式连接上述感兴趣的汽缸过程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号