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NUMERICAL SIMULATION OF DIFFERENT TURBULENCE MODELS IN A COMPACT RETURN DIFFUSER

机译:紧凑型返回扩散器中不同湍流模型的数值模拟

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摘要

CFD have been became the main method to study the pump inner flow patterns. It is important to understand the differences and features of the different turbulence models. In this paper, the velocity flow fields in a compact return diffuser under multi-conditions are studied by CFD and PIV measurements. In the numerical simulation, three turbulence models are used to solve the steady flow filed using high-quality fine structured grids, which are including SST k-ω model, DES model and SST k-ω model with low-Re corrections. A special test rig is designed to carry out the 2D Particle Image Velocimetry (PIV) measurements, and the PIV results are used to validate the CFD results. The detailed comparison between different turbulence models and PIV results is performed. Velocity flow fields in the diffuser middle section are compared and analyzed under different flow rates. SST k-ω model with low-Re correction give a better results comparing to DES and SST k-ω model, especially have a good predication about the vortex core position under strong part-loading conditions.
机译:CFD已成为研究泵内流模式的主要方法。了解不同湍流模型的差异和特征非常重要。在本文中,通过CFD和PIV测量研究了多条件下紧凑型返回漫射器中的速度流场。在数值模拟中,使用三种湍流模型来解决使用高质量精细结构网格提交的稳态流,该网格包括具有低重新校正的SST K-Ω模型,DES模型和SST k-Ω模型。特殊的测试钻机设计用于执行2D粒子图像速度(PIV)测量,并且PIV结果用于验证CFD结果。执行不同的湍流模型和PIV结果之间的详细比较。比较扩散器中间部分中的速度流场并在不同流速下进行分析。具有低重新校正的SST k-Ω模型,与DES和SSTK-Ω模型相比,更好的结果,特别是在强大的部件加载条件下对涡旋核心位置具有良好的预测。

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