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Numerical investigation of diffuser solidity effect on turbulent airflow and performance of the turbocharger compressor

机译:扩压器固体对湍流和涡轮增压器性能影响的数值研究

摘要

Low solidity diffuser in centrifugal compressors can achieve both high efficiency and wide operating ranges which is of great importance for turbocharger compressor. Low solidity is achieved by using a low chord to pitch ratio. In this work, a CFD simulation is carried out to examine the effect of solidity on airflow field of a turbocharger centrifugal compressor which consists of a simple-splitter impeller and a vaned diffuser. By changing the number of diffuser vanes while keeping the number of impeller blades constant, the solidity value of the diffuser is varied. The characteristics of the compressor are evaluated for 6, 8, 10 and 12 stator vanes which correspond to solidity of: 0.78, 1.04, 1.29 and 1.55, respectively. The spatial distribution of the pressure, velocity and turbulent kinetic energy show that the diffuser solidity has significant effect on flow field and compressor performance map. The compressor with a 6 vanes diffuser has higher efficiency and operates at a wider range of flow rate relative to that obtained with larger vans number. However a non-uniform flow at the compressor exit was observed with relatively high turbulent kinetic energy.
机译:离心压缩机中的低密度扩散器可同时实现高效率和宽工作范围,这对于涡轮增压器压缩机而言非常重要。通过使用较低的弦距比可以实现较低的坚固性。在这项工作中,进行了CFD模拟,以检查固体对涡轮增压器离心压缩机的气流场的影响,该涡轮增压器离心压缩机由简单分流式叶轮和带叶片的扩压器组成。通过在保持叶轮叶片数量恒定的同时改变扩散器叶片的数量,来改变扩散器的坚固性值。对6、8、10和12个定子叶片的压缩机特性进行了评估,这些叶片分别对应的坚固度分别为:0.78、1.04、1.29和1.55。压力,速度和湍动能的空间分布表明,扩压器的坚固性对流场和压缩机性能图有重要影响。与具有较大叶片数量的压缩机相比,具有6叶片扩散器的压缩机具有更高的效率,并且在较宽的流量范围内运行。然而,在压缩机出口处观察到具有相对较高的湍动能的不均匀流动。

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