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Diesel combustion and fuel spray analysis using an optical engine with pressure diagnostics, infrared thermography, and high-speed photography.

机译:使用具有压力诊断,红外热成像和高速摄影功能的光学引擎进行柴油燃烧和燃油喷雾分析。

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摘要

Infrared and high-speed images along with pressure information have been recorded and used to evaluate events inside an optically accessible Diesel engine. A 6-band a 14-hole nozzle are examined, each at two load conditions. The fuel spray and combustion characteristics are examined and discussed. It is determined from examination of the fuel spray that the 6-hole nozzle penetrates the combustion bowl more quickly but the 14-hole nozzle tends to distribute fuel more uniformly. Comparison of the images recorded from in-cylinder combustion experiments with pressure data demonstrated the differences in performance between the two nozzles. Infrared photography showed a start of combustion earlier than was seen in the high-speed pictures pressure data showed start of combustion earlier than was captured by either camera. High-speed photography showed a possible increase in soot production for the 6-hole nozzle as compared to the 14-hole nozzle. In-cylinder temperatures were estimated from infrared pictures. Overall, higher pressures and temperatures were produced with the 6-hole nozzle while the 14-hole nozzle showed less visible soot while yielding higher IMEP values for these operating conditions. This presentation describes the physics behind these observations, the experimental methods developed for this effort, and the performance of these two combustion systems.
机译:红外和高速图像以及压力信息已被记录下来,并用于评估光学柴油发动机内部的事件。检查6带14孔喷嘴,每个喷嘴在两个负载条件下。检查并讨论了燃油的喷雾和燃烧特性。通过检查燃油喷雾可以确定6孔喷嘴更快速地穿透燃烧室,但是14孔喷嘴倾向于更均匀地分配燃料。从缸内燃烧实验记录的图像与压力数据的比较表明,两个喷嘴之间的性能存在差异。红外摄影显示的燃烧开始时间早于高速图片中的压力数据显示燃烧开始的时间早于任一相机捕获的时间。高速摄影显示,与14孔喷嘴相比,6孔喷嘴的烟尘产量可能增加。缸内温度由红外图像估算。总体而言,使用6孔喷嘴产生更高的压力和温度,而14孔喷嘴显示出较少的可见烟ot,同时在这些操作条件下产生更高的IMEP值。本演示文稿介绍了这些观察结果背后的物理原理,为此目的开发的实验方法以及这两个燃烧系统的性能。

著录项

  • 作者

    Squibb, Cody William.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Engineering Automotive.Engineering Mechanical.
  • 学位 M.S.
  • 年度 2009
  • 页码 93 p.
  • 总页数 93
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:59

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