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Numerical Simulation of Transient Flow Inside Nozzle on Gasoline Direct Injection

机译:汽油直喷喷嘴内瞬态流动的数值模拟

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To achieve transient flow characteristics at exit of nozzle orifice on gasoline direct injection engine, two phase Euier-Euler schemes was used to simulate the internal flow of the swirl nozzle. Different flow characteristics were calculated in the simulation. Different kinds of nozzle configuration were studied. Cavitaion and swirl flow occured in the nozzles. Injection hole configuration matters more than area variation of swirl tangential slot to discharge coefficient of the studied nozzle. Discharge coefficient changes a little along the injection hole length. The area of the swirl tangrntial slot plays an important throttling action in nozzle internal flow. Smaller area of swirl tangential slot generates larger degree cavitation but smaller mean injection velocity. Turbulence kinetic energy changes with the time of cavitation and swirl field occurring and the nozzle configuration. Before the appearance of cavitation, smaller inclination angle of orifice can generate more turbulence kinetic energy. After that moment, turbulence kinetic energy varies with different configuration. Along injection hole length, turbulence kinetic energy obviously varies. These flow characteristics affect primary atomization and will be as input for next spray simulation. They are also applied to design reference for injection nozzle.
机译:为了在汽油直喷发动机的喷嘴孔出口处获得瞬态流动特性,采用了两相Euier-Euler方案来模拟旋流喷嘴的内部流动。在模拟中计算了不同的流动特性。研究了不同类型的喷嘴配置。喷嘴中发生了空化和涡流。注入孔的结构比旋流切向缝的面积变化对所研究的喷嘴的排放系数的影响更大。排放系数沿注入孔的长度略有变化。旋流切线槽的面积在喷嘴内部流动中起着重要的节流作用。旋流切向狭缝的面积较小,会产生较大程度的气蚀,但平均喷射速度较小。湍流动能随空化时间和旋流场的发生以及喷嘴的配置而变化。在出现气蚀之前,较小的孔口倾角会产生更多的湍动能。在那一刻之后,湍流动能随着不同的构型而变化。沿着注入孔的长度,湍流动能明显变化。这些流动特性会影响一次雾化,并将作为下一次喷涂模拟的输入。它们也可用于喷嘴的设计参考。

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