首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Combustion analysis and cycle-by-cycle variations in spark ignition engine combustion part 2: a new parameter for completeness of combustion and its use in modelling cycle-by-cycle variations in combustion
【24h】

Combustion analysis and cycle-by-cycle variations in spark ignition engine combustion part 2: a new parameter for completeness of combustion and its use in modelling cycle-by-cycle variations in combustion

机译:火花点火发动机燃烧中的燃烧分析和逐周期变化,第2部分:燃烧完整性的新参数及其在模拟燃烧的逐周期变化中的应用

获取原文
获取原文并翻译 | 示例
           

摘要

This paper investigates a technique of calculating the completeness of combustion on a cycle-by-cycle basis. The technique introduces the normalized pressure rise due to the combustion parameter, ψ, to describe the completeness of combustion.This parameter is based 6n the Rassweiler-Withrow method of calculating the mass fraction burned and is derived from the pressure-crank angle record of the engine.Experimental data were obtained from a Rover K4 optical access engine and analysed with a combustion analysis package. A computer simulation was then used to model the data on a cycle-by-cycle basis, both with and without the completeness of combustionparameter. The paper discusses the conditions under which it is suitable to model mean engine cycles, compared with the need to model cycle-by-cycle variability, and comments on the situations in which each type of modelling would be most appropriate. The engine simulation model is also used to investigate cycle-by-cycle variability of NO emissions that have recently been obtained experimentally.The successful aspects of this investigation are that the cycle-by-cycle variability in the completeness of combustion can be determined by use of the parameterψ, that the inclusion of the completeness of combustion parameter improves the simulation'sability to model the experimental data both in a statistical sense (the coefficient of variation of the indicated mean effective pressure) and on a cycle-by-cycle basis and that cycle-by-cycle NO modelling results are found to compare well with experiment.
机译:本文研究了一种逐周期计算燃烧完成度的技术。该技术引入了归因于燃烧参数ψ的归一化压力升高来描述燃烧的完整性。该参数基于Rassweiler-Withrow方法计算燃烧的质量分数,该参数是根据燃烧过程的压力曲柄角记录导出的,基于6s实验数据是从罗孚K4光学访问引擎获得的,并使用燃烧分析软件包进行了分析。然后使用计算机仿真在燃烧参数是否完整的情况下,逐周期对数据建模。本文讨论了适合于对平均发动机循环进行建模的条件,以及对逐周期可变性进行建模的需求,并就每种类型的建模最合适的情况进行了评论。发动机仿真模型还用于研究最近通过实验获得的NO排放的逐周期变化性。该研究的成功方面是可以通过使用燃烧来确定燃烧完整性的逐周期变化性关于参数ψ,包括燃烧参数的完整性提高了模拟在统计意义(指示平均有效压力的变化系数)和逐周期基础上对实验数据建模的能力,并且发现逐周期NO建模结果可与实验很好地比较。

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