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Study on Aeration for Disengaged Wet Clutches Using a Two-Phase Flow Model

机译:基于两相流模型的分离式湿式离合器通气研究

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The existing computational models for disengaged wet clutches are deduced based on the single-phase flow theory. However, the complex gas-liquid two-phase flow is formed due to aeration at high rotational speeds. The objective of this study is to use a two-phase flow model to demonstrate the aeration process at different rotational speeds not only of the friction plate but also of the separator plate. A nongrooved, steady-state, two-phase flow computational fluid dynamics model is built using FLUENT, and it is validated by experimental data. The results reveal that air enters the clearance at a critical rotational speed, which causes the drag torque to sharply decrease. The aeration mode and flow pattern are obtained via simulations. The rotational speed of the separator plate has a significant effect on the aeration, including the speed magnitude and direction.
机译:基于单相流理论推导了现有的湿式离合器分离计算模型。然而,由于在高转速下的充气,形成了复杂的气液两相流。这项研究的目的是使用两相流模型来证明在不同转速下不仅是摩擦板而且是隔板的曝气过程。使用FLUENT建立了非开槽的稳态两相流计算流体动力学模型,并通过实验数据进行了验证。结果表明,空气以临界转速进入间隙,这导致阻力转矩急剧下降。通过模拟获得曝气模式和流动模式。隔板的转速对通气有很大影响,包括速度大小和方向。

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