...
首页> 外文期刊>International Journal of Engine Research >Combustion structure of free and wall-impinging diesel jets by simultaneous laser-induced fluorescence of formaldehyde, poly-aromatic hydrocarbons, and hydroxides
【24h】

Combustion structure of free and wall-impinging diesel jets by simultaneous laser-induced fluorescence of formaldehyde, poly-aromatic hydrocarbons, and hydroxides

机译:激光,甲醛,聚芳烃和氢氧化物的同时荧光激发自由和冲击壁式柴油机的燃烧结构

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The structure of combusting diesel jets in low-temperature conditions is studied using laser-induced fluorescence (LIF). A single-hole common rail diesel injector is used, which allows high injection pressures up to 120 MPa. Visualizations are performed in a high-pressure, high-temperature cell that is designed to reproduce the typical thermodynamic conditions in the combustion chamber of a diesel engine. Planar LIF of the hydroxide (OH) radicals (OH LIF) with excitation near 280 nm and LIF with excitation at 355 nm (355 LIF) are applied simultaneously. In addition, simultaneous 355 LIF imaging and spatially resolved single-shot spectral analysis are performed in order to identify spatially the contribution of formaldehyde and poly-aromatic hydrocarbon (PAH) fluorescence in the 355 LIF images. Also, the analysis of the pressure signal in the chamber and subsequent calculation of heat release rates are used to locate temporally each image within the different combustion stages. The combustion structure of a low-temperature freely propagating jet during those stages is then analysed in detail, using the information given by the simultaneous LIF techniques on the different reaction zones; this is then summarized by a conceptual model. Finally, the simultaneous LIF techniques are applied to a configuration where a jet impinges on a perpendicular wall. The results are used to analyse the effect of wall interaction on the combustion structure.
机译:使用激光诱导荧光(LIF)研究了在低温条件下燃烧柴油机的结构。使用了单孔共轨柴油喷射器,该喷射器允许高达120 MPa的高喷射压力。可视化是在高压高温单元中进行的,该单元被设计用来重现柴油机燃烧室中的典型热力学条件。同时施加在280 nm附近激发的氢氧根(OH)自由基(OH LIF)和L355在355 nm激发的平面LIF(355 LIF)。另外,同时进行355 LIF成像和空间分辨单次光谱分析,以便在空间上确定355 LIF图像中甲醛和聚芳烃(PAH)荧光的贡献。同样,对燃烧室中压力信号的分析以及随后的放热率计算用于在不同燃烧阶段暂时定位每个图像。然后,使用同时LIF技术在不同反应区上给出的信息,详细分析这些阶段中低温自由传播射流的燃烧结构。然后通过概念模型对其进行总结。最后,同时LIF技术应用于射流撞击垂直壁的配置。结果用于分析壁相互作用对燃烧结构的影响。

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