首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part J. Journal of engineering tribology >Numerical modelling of oil distribution and churning gear power losses of gearboxes by smoothed particle hydrodynamics
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Numerical modelling of oil distribution and churning gear power losses of gearboxes by smoothed particle hydrodynamics

机译:平滑粒子流体动力学齿轮箱油分布和搅拌齿轮动力损耗的数值模型

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摘要

Sufficient oil supply of all machine elements in gearboxes is usually required to avoid damage during operation. Quite frequently, transmissions are conservatively designed with an oversupply of oil to guarantee operational reliability. An oversupply of oil results in an unnecessarily high amount of oil being kept in motion, which in turn leads to excessive hydraulic gear power losses. In high-speed gearboxes in particular, churning losses can contribute greatly to the total power losses. Further detailed information on the oil distribution in gearboxes is needed in order to increase the efficiency and operational reliability of gearboxes. Computational Fluid Dynamics methods provide a flexible way of investigating oil behaviour in transmissions with almost no restrictions regarding geometry and operating conditions. Generally, there are two main methods of computational fluid dynamics simulation in gearboxes: the traditional finite-volume based method (Eulerian approach) and the mesh-free particle-based method (Lagrangian approach). In this work, a computational fluid dynamics model based on the particle-based smoothed particle hydrodynamics method is built to investigate the oil distribution and churning losses of a dip-lubricated single stage gearbox on an efficiency gear test rig. Results are shown and discussed for different rotational speeds and oil temperatures. The smoothed particle hydrodynamics method provides a high potential of predicting the oil distribution of modern dip-lubricated transmission systems. Comparisons with high-speed camera recordings show good agreement. However, the method shows a need for improvement in churning loss prediction.
机译:通常需要在齿轮箱中的所有机器元件的充分供水以避免在操作期间损坏。相当经常,传输保守地设计,供过于求供过于求,以保证运行可靠性。供过于一个不必要的高量油,又导致过度的液压齿轮动力损失。特别是在高速齿轮箱中,搅拌损失可以为总功率损耗做出大大贡献。需要进一步详细的有关齿轮箱油分布的详细信息,以提高齿轮箱的效率和操作可靠性。计算流体动力学方法提供了一种灵活的方式来研究传输中的油行为,几乎没有关于几何和操作条件的限制。通常,齿轮箱中有两种主要的计算流体动力学模拟方法:传统的有限体积基于型方法(欧拉纤维方法)和基于网眼粒子的方法(拉格朗日方法)。在这项工作中,基于基于颗粒的平滑粒子流体动力学方法的计算流体动力学模型,以研究液化齿轮试验台上倾角润滑单级变速箱的油分布和搅拌损耗。结果显示并讨论了不同的转速和油温。平滑的粒子流体动力学方法提供了预测现代浸润滑传输系统的油分布的高潜力。具有高速摄像头录制的比较显示良好的一致性。然而,该方法表明需要改进搅拌损失预测。

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