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An experimental study of high-pressure diesel spray characteristics.

机译:高压柴油机喷雾特性的实验研究。

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摘要

Using modern laser diagnostic technique to visualize and analyze the spray characteristics of the modern high-pressure diesel injection systems is the main theme of this study. The goal is to provide injection and spray characteristic information of the injection systems to enhance and optimize their applications to future internal combustion engine, meanwhile, to provide experimental data for correlating and validating with related models used in numerical calculation. The injection systems used in the study are Hydraulic Electronic Unit Injector, Electronic Unit Injector, and Common Rail systems. The scope of work includes characterization of high-pressure injection on test rig, macroscopic and microscopic characterization of non-evaporative sprays in pressurized chamber or atmosphere ambient, and direct visualization of spray and combustion processes using Optically Accessible Engine.; The effects of design parameters and operating conditions on injection characteristics, such as injector response time, needle lift, pressure, rate, and quantity have been identified and discussed. The near-field spray behavior is shown to be highly transient and strongly depends on injector design, nozzle configuration, needle lift and oscillation, and injection pressure. Significant hole-to-hole penetration variation and spray cone angle oscillation are observed on the sprays of the CR systems, which is closed related to its needle lift pattern. Increase of charge air density and temperature and application of pilot injection significantly reduce ignition delay and heat release of pre-mixed combustion. With high-pressure injection and swirl air, the ignition and start of combustion most likely occur at the downwind sides of sprays.
机译:使用现代激光诊断技术来可视化和分析现代高压柴油喷射系统的喷雾特性是本研究的主题。目的是提供喷射系统的喷射和喷雾特性信息,以增强和优化其在未来内燃机中的应用,同时,提供实验数据以与数值计算中使用的相关模型进行关联和验证。研究中使用的喷射系统是液压电子单元喷射器,电子单元喷射器和共轨系统。工作范围包括表征试验台上的高压喷射,表征加压室或大气环境中非蒸发性喷雾的宏观和微观特征,以及使用光学可访问引擎直接观察喷雾和燃烧过程。已经确定并讨论了设计参数和操作条件对喷射特性的影响,例如喷射器响应时间,针升力,压力,速率和数量。已证明近场喷雾行为是高度瞬态的,并且在很大程度上取决于喷射器的设计,喷嘴的配置,针的抬升和摆动以及喷射压力。在CR系统的喷雾器上观察到明显的孔间渗透变化和喷雾锥角振荡,这与针的抬升方式有关。增压空气密度和温度的增加以及引燃喷射的应用显着减少了预混燃烧的着火延迟和放热。对于高压喷射和旋流空气,着火和燃烧开始极有可能发生在喷雾的顺风侧。

著录项

  • 作者

    Wang, Tsung-Cheng.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Engineering Mechanical.; Engineering Automotive.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 208 p.
  • 总页数 208
  • 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

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