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Effects of fuel volatility and operating conditions on fuel sprays in DISI engines: (1) Imaging investigation

机译:燃料挥发性与运行条件对燃料喷雾剂的影响:(1)成像调查

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Optimal design of modern direct-injection, spark-ignition engines depends heavily on the characteristics and distribution of the fuel spray. This study was designed to investigate changes in the spray properties due to fuel volatility and operating conditions using a firing optically-accessible engine with planar laser-induced fluorescence (PLIF) imaging. The results show that the spray structure changes not only with ambient gas density, which is often measured, but also with fuel temperature and volatility. As ambient pressure decreases and fuel temperature increases, the volatile ends of multi-component fuels evaporate quickly, disrupting the spray structure and producing a vapor core along the axis of the spray. Beyond a certain point, evaporation is rapid enough to expand the initial cone angle of the spray while causing a decrease in the overall spray width. The axial and radial penetration of these sprays was found to depend on the fuel temperature, the ambient density, and vapor generation.
机译:现代直喷式火花点火发动机的最佳设计依赖于燃料喷雾的特点和分布。本研究旨在观察使用具有平面的激光诱导荧光(PLIF)成像的击发光学访问的发动机时,由于燃料挥发性在喷雾特性的变化和操作条件。结果表明,喷雾结构不仅改变环境气体密度,通常测量,而且还具有燃料温度和挥发性。随着环境压力降低和燃料温度的增加,多组分燃料的挥发性末端快速蒸发,破坏喷雾结构并沿喷雾轴线产生蒸汽芯。除某个点之外,蒸发足以足够快,以扩展喷雾的初始锥角,同时导致整体喷射宽度降低。发现这些喷雾的轴向和径向渗透取决于燃料温度,环境密度和蒸汽产生。

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