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Study on Splash of Oil Droplets Colliding with Wall in Engine Crankcase

机译:发动机曲轴箱内油滴飞溅与壁碰撞的研究

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In the engine crankcase, the splash of oil droplets colliding with the wall has a significant impact on the formation of oil mist. In order to clarify the influencing factors of droplet impact splash, this paper establishes a calculation model of droplet impact wetting wall surface by using local mesh instantaneous refinement technology combined with volume of fluid (VOF) and wall wetting model, and verifies the reliability of the model through experiments. The results show that the thickness of oil film on the wall, the viscosity and surface tension of the oil all affect the splash behavior of oil colliding with wall. The larger the oil viscosity, the less secondary droplets produced by splashing, but the viscosity has no significant effect on the Sauter mean diameter (SMD) of secondary droplets. The bigger the surface tension of the oil, the less secondary droplets are produced, and the SMD of the secondary droplets will obviously increase. The thicker the oil film on the wall, the more secondary droplets with the larger average size produced by the splash.
机译:在发动机曲轴箱中,油滴飞溅与壁碰撞会对油雾的形成产生重大影响。为了弄清液滴冲击飞溅的影响因素,本文结合流体体积(VOF)和壁润湿模型,结合局部网格瞬时细化技术,建立了液滴冲击润湿壁面的计算模型,验证了液滴冲击润湿壁面的可靠性。通过实验进行建模。结果表明,壁上油膜的厚度,油的粘度和表面张力都影响油与壁碰撞的飞溅行为。油粘度越大,飞溅产生的次级液滴越少,但是粘度对次级液滴的索特平均直径(SMD)并没有显着影响。油的表面张力越大,产生的次级液滴就越少,并且次级液滴的SMD将明显增加。壁上的油膜越厚,飞溅产生的次级液滴越多,平均尺寸越大。

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