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Flash boiling hollow-cone fuel spray from a piezoelectric fuel injector under low ambient pressure

机译:在低环境压力下闪蒸沸腾的空心锥燃料从压电燃料喷射器喷射

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摘要

This study investigates the spray characteristics under flash boiling conditions from an outwardly opening piezoelectric injector in an optically accessible constant volume chamber. Distinct spray structure is noticed under flash boiling spray regime and spray deforms from a hollow-cone structure to a diamond-like shape with a long central plume at the downstream of the spray. Liquid signals of the plume are much weaker than the original hollow-cone shape region. A higher ambient pressure leads to a shorter central plume. Spray penetration length is greatly enlarged due to the change in spray structure. Fuel injection pressure and fuel injection duration has little effect on spray front penetration length. Especially, the highest spray front penetration velocity observed at 0.01 bar is expected to approach to the local sound speed. Compared to isooctane fuel, commercial gasoline generates stronger flash boiling due to the wide boiling range, but the spray structures are quite similar.
机译:本研究研究了在光学可接近的恒定容积室中的向外打开的压电喷射器下的闪蒸沸腾条件下的喷射特性。 在闪蒸沸腾的喷雾状态下注意到不同的喷雾结构,并从中空锥结构喷射到金刚石形状,在喷雾的下游具有长中央羽流。 羽流的液体信号比原始空心锥形状区域要弱得多。 较高的环境压力导致较短的中央羽流。 由于喷雾结构的变化,喷雾穿透长度大大放大。 燃料喷射压力和燃料喷射持续时间对喷雾前穿透长度几乎没有影响。 特别是,预期在0.01巴时观察到的最高喷雾前穿透速度,以接近局部声速。 与异辛烷燃料相比,由于较宽的沸腾范围,商业汽油产生更强的闪光沸腾,但喷雾结构非常相似。

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