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ANALYSIS OF FLOW THROUGH A TWISTED VANED DIFFUSER

机译:扭曲叶片扩散器的流动分析

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This paper describes the computational results on the performance of a centrifugal compressor stage with twisted vaned diffuser by varying the speed of the impeller and direction of twist for the diffuser vane. The centrifugal compressor stage configuration consists of a 2-D impeller (no twist is provided for the impeller vanes) with various configurations of diffusers. Diffuser configurations considered are Vaneless Diffuser (VLD), Low Solidity Vaned Diffuser (LSVD) and Twisted Vaned Diffuser (TVD). The analysis was carried at four different rotational speeds with corresponding mass flow rates of the impeller. 9° twist is given to the diffuser vane from hub to shroud by providing rotation at the leading edge, keeping the profile at hub as reference in the direction of rotation of the impeller and opposite to the direction of rotation of the impeller. The off-design cases considered includes operation at 80%, 90%, 110% and 120% of the design mass flow rate. CFD results are validated with experimental results for stages with VLD and LSVD for certain chosen performance parameters such as head coefficient, stage input power and exit flow angle. The computational results indicate that variations in impeller speed will cause changes in all significant performance parameters like the total pressure rise, power coefficient and efficiency of the stage and static pressure recovery coefficient of the diffuser. Contour plots were generated from CFD results and analyzed for better understanding of effect of rotational speed of the impeller on the performance of the centrifugal compressor. As a result of this study, it can be concluded that twisted vaned diffuser improves the performance in comparison to low solidity vaned diffuser for all the chosen impeller rotational speeds. The performance of the compressor stage is superior when diffuser vane twist is provided in the direction opposite to the rotation of impeller.
机译:本文通过改变叶轮的速度和扩散叶片的扭曲方向,描述了带有扭曲叶片扩散器的离心压缩机级性能的计算结果。离心式压缩机级配置由带有各种扩散器配置的二维叶轮(叶轮叶片不提供扭转)组成。考虑的扩散器配置为无叶片扩散器(VLD),低密度叶片式扩散器(LSVD)和扭曲叶片式扩散器(TVD)。该分析是在具有叶轮的相应质量流率的四个不同转速下进行的。通过在前缘提供旋转,使扩散器叶片从轮毂到护罩产生9°的扭曲,将轮廓保持在轮毂处,以叶轮的旋转方向为基准,并与叶轮的旋转方向相反。考虑的非设计案例包括以设计质量流量的80%,90%,110%和120%运行。对于某些选定的性能参数(例如扬程系数,级输入功率和出口流量角),使用带有VLD和LSVD的级的实验结果验证了CFD结果。计算结果表明,叶轮速度的变化将导致所有重要的性能参数发生变化,例如总压力上升,级的功率系数和效率以及扩散器的静压恢复系数。根据CFD结果生成等高线图,并进行分析,以更好地了解叶轮转速对离心压缩机性能的影响。作为这项研究的结果,可以得出结论,在所有选定的叶轮转速下,与低强度叶片式扩散器相比,扭曲叶片式扩散器可提高性能。当在与叶轮旋转相反的方向上设置扩压器叶片扭转时,压缩机级的性能会更高。

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