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Spray characteristics and engine emissions from hydraulically actuated high pressure injection systems for use in an HSDI diesel engine.

机译:用于HSDI柴油发动机的液压驱动高压喷射系统的喷雾特性和发动机排放物。

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摘要

An experimental and computational study for fuel spray fuel system, engine emissions and the correlation between them was carried out for small bore high-speed direct injection (HSDI) diesel engine. The goal of this work is to characterize two different injection systems for a small bore direct injection diesel engine and to connect the spray behavior with measured and modeled engine performance. The characteristics of transient high injection pressure diesel fuel sprays were investigated by sequential high-speed photographic images. Measurements of spray tip penetration length and spray angle were made based on the spray images, and the spray Sauter Mean Diameter (SMD) was calculated by using the light extinction technique. The multi-dimensional (KIVA-3V) code was validated and used to predict the NOx and soot emissions.; Two HSDI fuel injection systems have been constructed for spray visualization experiments: the first one is a hydraulic electronic unit injector system (HEUI) and the other is a common rail (CR) injector system. Experiments were conducted by using different nozzles under different operating conditions to investigate the effects of injection pressure, nozzle hole size, ambient density, and nozzle type on spray characteristics. Four nozzles were used: two valve covered orifice (VCO) type nozzles, with single and dual-guided needle, and two mini-sac nozzles. The mini-sac nozzles had 158 and 165 micron holes while the VCO had 160 and 174 micron hole diameters. To find the relationships between the spray characteristics and combustion emissions, the spray experiments for the dual-guided needle VCO nozzle used the same conditions as for a set of engine tests performed in a different project. All four nozzles were modeled using KIVA-3V code to explore the relationship between spray behavior and engine performance.; Based on the spray structure analysis, the single-guided VCO nozzle produced considerable hole-to-hole variation early in the injection event than the mini-sac nozzles. It was also discovered that the dual-guided VCO nozzle reduced the hole-to-hole variation but it did not vanished completely. The results showed that injection pressure and hole size are the dominant variables influencing the droplet size. KIVA modeling presented that, for these two systems investigated, the HEUI injection rate shape had NOx level lower than the CR injection rate. The modeling also showed at 45% load and 90 MPa injection pressure that decreasing the nozzle size only by less than 10% had a significant effect on the NOx output level.
机译:对小口径高速直接喷射(HSDI)柴油机进行了燃油喷雾燃料系统,发动机排放及其相互关系的实验和计算研究。这项工作的目的是为小口径直喷柴油机表征两种不同的喷射系统,并将喷雾性能与经测量和建模的发动机性能联系起来。通过连续高速摄影图像研究了瞬态高喷射压力柴油机喷雾的特性。根据喷雾图像测量喷雾嘴的穿透长度和喷雾角度,并使用消光技术计算喷雾的萨特平均直径(SMD)。验证了多维(KIVA-3V)代码,并将其用于预测NO x 和烟尘排放。已为喷雾可视化实验构建了两个HSDI燃料喷射系统:第一个是液压电子单元喷射器系统(HEUI),另一个是共轨(CR)喷射器系统。通过在不同的操作条件下使用不同的喷嘴进行实验,以研究喷射压力,喷嘴孔尺寸,环境密度和喷嘴类型对喷雾特性的影响。使用了四个喷嘴:两个带单引导针和双引导针的阀盖孔口(VCO)型喷嘴和两个微型囊式喷嘴。微型囊式喷嘴的孔径为158和165微米,而VCO的孔径为160和174微米。为了找到喷雾特性与燃烧排放之间的关系,双导针VCO喷嘴的喷雾实验使用的条件与在不同项目中进行的一组发动机测试的条件相同。所有四个喷嘴均使用KIVA-3V代码建模,以探索喷雾行为与发动机性能之间的关系。基于喷雾结构分析,单导向VCO喷嘴在喷射过程中比微型囊式喷嘴产生了较大的孔间差异。还发现双导向VCO喷嘴减少了孔与孔之间的差异,但并没有完全消失。结果表明,注射压力和孔尺寸是影响液滴尺寸的主要变量。 KIVA建模表明,对于所研究的这两个系统,HEUI注入速率形状的NO x 水平低于CR注入速率。该模型还表明,在45%的负载和90 MPa的注射压力下,仅将喷嘴尺寸减小不到10%会对NO x 输出水平产生显着影响。

著录项

  • 作者

    El-Hannouny, Essam M.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Mechanical.; Engineering Automotive.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;自动化技术及设备;
  • 关键词

  • 入库时间 2022-08-17 11:46:04

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