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Optical diagnostics of diesel spray injections and combustion in a high-pressure high-temperature cell

机译:高压高温电池中柴油喷雾喷射和燃烧的光学诊断

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We report on spatially and temporally resolved optical diagnostic measurements of propagation and combustion of diesel sprays introduced through a single-hole fuel injector into a constant volume, high-temperature, high-pressure cell. From shadowgraphy images in non-reacting environments of pure nitrogen, penetration lengths and dispersion angles were determined for non-vaporizing and vaporizing conditions, and found to be in reasonable agreement with standard models for liquid jet propagation and break-up. Quasi-simultaneous two-dimensional images were obtained of laser elastic light scattering, shadowgraphs and spectrally integrated flame emission in a reacting environment (cell temperature 850 K). In addition laser-induced incandescence was employed for the identification of soot-loaded regions. The simultaneously recorded spray images exhibit remarkable structural similarity and provide complementary information about the spray propagation and combustion process. The measurements also reveal the fuel vapor cloud extending well beyond the liquid core and close to the nozzle tip. Ignition takes place close to the tip of the spray within the mixing layer of fuel vapor and surrounding air. Soot is formed in the vapor core region at the tip of the liquid fuel jet. Our results support recently developed phenomenological model on diesel spray combustion.
机译:我们报告了通过单孔燃料喷射器引入到恒定体积,高温,高压电池中的柴油喷雾的传播和燃烧的时空分辨光学诊断测量结果。从纯氮气的非反应环境中的阴影摄影图像中,确定了非汽化和汽化条件的穿透长度和扩散角,发现与液体射流传播和破裂的标准模型合理地吻合。在反应环境(电池温度850 K)下,获得了激光弹性光散射,阴影图和光谱积分火焰发射的准同时二维图像。另外,激光诱导的白炽用于鉴定烟灰负载区域。同时记录的喷雾图像显示出显着的结构相似性,并提供有关喷雾传播和燃烧过程的补充信息。测量结果还表明,燃料蒸气云远远超出了液芯,并靠近喷嘴尖端。在燃料蒸气和周围空气的混合层内,靠近喷雾尖端的地方发生着火。在液体燃料射流的尖端的蒸气芯区域中形成烟灰。我们的结果支持最近开发的柴油喷雾燃烧现象学模型。

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