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Combustion optimization in the low-temperature combustion regime.

机译:低温燃烧状态下的燃烧优化。

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摘要

A muGA optimization code was applied experimentally to a HSDI single-cylinder diesel engine equipped with a common rail fuel injection system in order to reduce NOx, soot, and BSFC simultaneously. Four important control factors were used in this research to optimize engine emissions and fuel consumption, namely, start-of-injection (SOI) timing, intake boost pressure level, cooled exhaust gas recirculation (EGR) rate, and fuel injection pressure. The engine testing was done at two different operating conditions, which are 1757 rev/min and 45% load and 1550 rev/min, 25% load.; In order to investigate the characteristics of the optimum obtained during the optimization process, more fundamental research was done on the nature of the low-temperature combustion regime. Visualization tests using a transparent engine at the Sandia National Laboratory were performed. Based on these, combustion characteristics were examined by comparing with traditional heat release analysis. Finally, the factors that influence turbulent mixing rates, such as injection pressure, swirl ratio and post injection strategies were thoroughly explored through parametric study. Two different versions of the engine were used in the research, which are the optical engine for the visualization tests and combustion analysis, and an all-metal engine for emissions measurements. The representative operating condition considered for low-temperature combustion was 1500 rev/min, 3bar IMEP with 800 bar injection pressure and 50% EGR rate.
机译:muGA优化代码已通过实验应用于配备共轨燃油喷射系统的HSDI单缸柴油发动机,以同时减少NOx,烟灰和BSFC。这项研究中使用了四个重要的控制因素来优化发动机排放和燃料消耗,即喷射开始(SOI)正时,进气增压压力水平,冷却废气再循环(EGR)速率和燃料喷射压力。发动机测试是在两种不同的工况下完成的,分别是1757转/分钟和45%的负载,以及1550转/分钟,25%的负载。为了研究在优化过程中获得的最优特性,对低温燃烧状态的性质进行了更基础的研究。在桑迪亚国家实验室使用透明引擎进行了可视化测试。在此基础上,通过与传统的放热分析比较来检查燃烧特性。最后,通过参数研究彻底探讨了影响湍流混合速率的因素,例如注入压力,涡流比和注入后策略。该研究使用了两种不同版本的引擎,分别是用于可视化测试和燃烧分析的光学引擎,以及用于排放测量的全金属引擎。考虑用于低温燃烧的代表性操作条件为1500转/分钟,3 bar IMEP,注入压力为800 bar和EGR率为50%。

著录项

  • 作者

    Yun, Hanho.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 321 p.
  • 总页数 321
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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