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INJECTION OF LIQUID KEROSENE INTO A HIGH-PRESSURE SUBSONIC AIR CROSSFLOW FROM NORMAL TEMPERATURE TO ELEVATED TEMPERATURE

机译:将液体煤油注入高压子源气流从常温到升高的温度

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In the present work, injection of liquid kerosene into a high-pressure subsonic air crossflow was investigated experimentally. Tests were conducted at air pressures up to 2.0 MPa and at air temperatures from normal temperature to elevated temperature. Liquid kerosene was injected at room temperature through a 0.5 mm diameter plain orifice. Schlieren imaging technique was used for jet structure visualization, from which the jet penetration trajectory was determined by the image processing. For the conditions tested, a correlation of jet penetration trajectory was developed, with momentum flux ratio, Weber number and crossflow temperature ratio as independent variables. Upper surface trajectories of kerosene spray under different test conditions were compared. Experimental and analytical results showed that the penetration trajectory of liquid kerosene under higher air temperature was greater than that under normal temperature, while momentum ratios were the same.
机译:在目前的工作中,通过实验研究了将液体煤油注入高压子传感器交叉流程。在高达2.0MPa的空气压力下进行测试,在常温下的空气温度下进行,以升高温度。将液体煤油在室温下注入0.5mm直径的平纹孔口。 Schlieren成像技术用于喷射结构可视化,从中通过图像处理确定喷射穿透轨迹。对于测试的条件,开发了射流渗透轨迹的相关性,动量通量比,韦伯数和跨流温度与独立变量。比较不同试验条件下煤油喷雾的上表面轨迹。实验和分析结果表明,液体温度下液体煤油的渗透轨迹大于常温下的渗透轨迹,而动量比率是相同的。

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