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Multiple optical diagnostics on effects of fuel properties on spray flames under oxygen-enriched conditions

机译:多光学诊断对富氧条件下喷雾火焰燃料特性效果的影响

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摘要

Spray flames development in diesel engines is typically diffusion combustion process controlled by mixing rate, which may cause considerable NOx and soot emissions. Breakthroughs in the field of oxygen preparation technology make it possible to apply oxygen-enriched combustion of spray flames, which has the potential to improve the thermal efficiency of engines and reduce pollutant emissions. In this paper, multiple optical diagnostics were applied to investigate spray flames at oxygen-enriched conditions. The experiments were conducted in an optical constant volume vessel, simulating the in-cylinder conditions of diesel engines. High-speed imaging, two-color pyrometry, and OH* chemiluminescence were used to investigate flame structure, soot flame temperature and KL factor, and flame lift-off length, respectively. The main fuel properties were separated by contrasting different fuels, including diesel (D100), 70% diesel + 30% n-heptane (D70H30), 70% diesel + 30% iso-octane (D70O30), 70% diesel + 30% n-butanol (D70B30), all of which were mixed by volume. The oxygen concentration of the ambient gas was in the range of 21%-70%. Experimental results show that the oxygen concentration has significant influence on the shape, structure, temperature, and species distributions of spray flame, while the fuel properties including cetane number, latent heat of vaporization and oxygen content, have more effects on flame ignition and soot formation under relatively lower oxygen concentration. With the increase of oxygen concentration, the flame lift-off length (FLoL) experiences a fast decrease firstly and then goes down slightly until it remains basically unchanged. The overall trend of FLoL under high oxygen concentrations shows that the FLoL of D100 is the shortest while the FLoL of D70B30 is the longest, and FLoL values of D70H30 and D70O30 are almost under the same level. With the increase of oxygen concentration, the effects of fuel properties on the ignition and development of the spray flame are weakened, the natural luminosity of spray flame increases, the length and width of spray flame reduce in size. At higher oxygen concentrations, the differences in KL factors and soot flame area among all test fuels become smaller. Under the same concentration, pixel averaged flame temperature of D100 is slightly higher than that of the other three fuels, while D70B30 is the lowest. The temperature differences among four fuels are no more than 100 K.
机译:柴油发动机的喷雾火焰显影通常是通过混合速率控制的扩散燃烧过程,这可能导致相当大的NOx和烟灰排放。氧气制备技术领域的突破使得可以应用富氧喷雾火焰的氧化燃烧,这有可能提高发动机的热效率并减少污染物排放。在本文中,应用了多种光学诊断,用于研究富含氧气条件的喷雾火焰。实验在光常数容器中进行,模拟柴油发动机的缸内条件。高速成像,双色热测定和OH *化学发光用于研究火焰结构,烟灰温度和KL因子,以及火焰升降长度。通过对比不同的燃料,包括柴油(D100),70%柴油+ 30%正庚烷(D70H30),70%柴油+ 30%异辛烷(D70O30),70%柴油+ 30%n - 丁醇(D70B30),所有这些都由体积混合。环境气体的氧浓度为21%-70%。实验结果表明,氧浓度对喷雾火焰的形状,结构,温度和物种分布具有显着影响,而包括十六烷数,汽化潜热和氧含量的燃料性能对火焰点火和烟雾形成具有更多影响在相对较低的氧浓度下。随着氧浓度的增加,火焰升空长度(FLOL)首先经历快速减小,然后略微下降,直到它基本保持不变。高氧浓度下FLOL的总体趋势表明,D100的FLOL是最短的,而D70B30的FLOL是最长的,D70H30和D70O30的FLOL值几乎在相同的水平下。随着氧气浓度的增加,燃料性能对喷射火焰的点火和发育的影响被削弱,喷雾火焰的天然亮度增加,喷雾火焰的长度和宽度尺寸减小。在较高的氧气浓度下,所有测试燃料中的KL因子和烟雾区域的差异变小。在相同的浓度下,D100的像素平均火焰温度略高于其他三个燃料的火焰温度,而D70B30是最低的。四种燃料之间的温度差异不超过100 k。

著录项

  • 来源
    《Fuel》 |2021年第1期|120129.1-120129.12|共12页
  • 作者单位

    Tianjin Univ State Key Lab Engines Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Engines Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Engines Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Engines Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Engines Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Engines Tianjin 300072 Peoples R China;

    Tianjin Univ State Key Lab Engines Tianjin 300072 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oxygen-enriched combustion; Spray flame; Fuel properties; Constant volume vessel; Optical diagnostics;

    机译:富氧燃烧;喷雾火焰;燃料特性;恒定容器;光学诊断;

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