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首页> 外文期刊>International Journal of Mechanical Sciences >Numerical simulation of turbulent flow in the suction chamber of a gearpump using deforming mesh and mesh replacement
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Numerical simulation of turbulent flow in the suction chamber of a gearpump using deforming mesh and mesh replacement

机译:变形网格和网格替换的齿轮泵吸入腔湍流数值模拟。

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摘要

The flow in the suction chamber of an external gearpump is numerically analysed. The evolution of the boundaries of the domain is very complex, and an arbitrary Lagrangian-Eulerian (ALE) formulation is used with mesh deformation and local remeshing. Nevertheless, a mesh replacement strategy is also adopted in order to avoid skewed meshes and allow for simulation of solid contact between gears. This process approximates a more realistic flow behaviour when the working pressure is larger than 10 bar, which is an important in fluid power systems where the pressure is usually greater than 100 bar. Aside from the laminar model, which fails as a result of the vortex configuration in the suction chamber, Standard k-ε, RNG k-ε, Realizable k-ε and Reynolds Stress Models (RSM) are tested. The numerical flow is compared with experimental data obtained with Time Resolved Particle Image Velocimetry. Although all of the models failed in some respect, the RSM and RNG k-ε were the best choice provided its behaviour close to the gearing zone and general shape of the vortex distribution.
机译:对外部齿轮泵的吸入腔中的流量进行了数值分析。域边界的演变非常复杂,并且使用任意Lagrangian-Eulerian(ALE)公式进行网格变形和局部重网格化。尽管如此,也采用了网格替换策略,以避免出现倾斜的网格并允许模拟齿轮之间的固体接触。当工作压力大于10 bar时,此过程近似更现实的流动行为,这在压力通常大于100 bar的流体动力系统中很重要。除了由于吸入室中的涡流配置而失效的层流模型之外,还测试了标准k-ε,RNGk-ε,可实现k-ε和雷诺应力模型(RSM)。将数值流与通过时间分辨粒子图像测速仪获得的实验数据进行比较。尽管所有模型在某些方面都失败了,但RSM和RNGk-ε是最佳选择,条件是其行为接近齿轮区域和涡旋分布的一般形状。

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