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Numerical simulations of oil flow inside a gearbox by Smoothed Particle Hydrodynamics (SPH) method

机译:平滑粒子流体动力学(SPH)法测速齿轮箱内油流量的数值模拟

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摘要

In this paper, numerical simulations of oil flow inside a gearbox are presented and compared to experimental particle image velocimetry (PIV) results. Instead of a traditional grid-based finite volume method, a mesh-free Smoothed Particle Hydrodynamics (SPH) method is employed. A multi-phase SPH formulation is utilized to resolve the complex multiphase fluid flow. A total of nine simulations are carried out for three oil levels and three Reynolds numbers, to investigate the flow field behavior and to compare with the experimental results. The aeration effect is first considered to qualitatively analyze the quantity and size of bubbles generated due to the rotation of the gears. Furthermore, the velocity field and velocity profile beneath the oil surface are comprehensively analyzed. Our simulation results exhibit physically consistent behavior of the oil flow and good agreement is achieved compared to the experimental results. Flow structures, splashing and recirculation areas are very well captured by the simulation. However, some discrepancies of the velocity field between the numerical and experimental results are also observed, and discussed.
机译:在本文中,呈现了齿轮箱内的油流量的数值模拟,并与实验颗粒图像速度(PIV)结果进行了比较。代替传统的基于网格的有限体积法,采用无丝光滑的粒子流体动力学(SPH)方法。利用多相SPH配方来解决复杂的多相流体流动。对于三种油位和三个雷诺数,总共九种模拟,以研究流场行为并与实验结果相比。首先认为曝气效应被认为是定性地分析由于齿轮的旋转而产生的气泡的量和尺寸。此外,综合分析了油表面下方的速度场和速度曲线。与实验结果相比,我们的仿真结果表现出物理一致的油流量行为和良好的协议。通过模拟非常好地捕获流动结构,溅起和再循环区域。然而,还观察到数值和实验结果之间的速度场的一些差异,并讨论。

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